AU2010202094A1 - Telescopic prop-up pole device - Google Patents
Telescopic prop-up pole device Download PDFInfo
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- AU2010202094A1 AU2010202094A1 AU2010202094A AU2010202094A AU2010202094A1 AU 2010202094 A1 AU2010202094 A1 AU 2010202094A1 AU 2010202094 A AU2010202094 A AU 2010202094A AU 2010202094 A AU2010202094 A AU 2010202094A AU 2010202094 A1 AU2010202094 A1 AU 2010202094A1
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- pole
- pressure
- contacting
- lever
- annular body
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- D—TEXTILES; PAPER
- D06—TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
- D06F—LAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
- D06F53/00—Clothes-lines; Supports therefor
- D06F53/04—Supports, e.g. poles, props for clothes-lines
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- Engineering & Computer Science (AREA)
- Textile Engineering (AREA)
- Mutual Connection Of Rods And Tubes (AREA)
- Walking Sticks, Umbrellas, And Fans (AREA)
Description
S&F Ref: 952560 AUSTRALIA PATENTS ACT 1990 COMPLETE SPECIFICATION FOR A STANDARD PATENT Name and Address Dreamware Inc., of Park West Bldg. 8F, 6-12-1, Nishi of Applicant : shinjuku, Shinjuku-ku, Tokyo, 160-023, Japan Actual Inventor(s): Cheol Joong Lee Address for Service: Spruson & Ferguson St Martins Tower Level 35 31 Market Street Sydney NSW 2000 (CCN 3710000177) Invention Title: Telescopic prop-up pole device The following statement is a full description of this invention, including the best method of performing it known to me/us: 5845c(2727452_1) 1 TELESCOPIC PROP-UP POLE DEVICE Technical Field The present invention relates to a telescopic prop-up pole device which is simple in telescoping adjustment of a length-adjusting pole and also excellent in durability. 5 Background Art With the telescopic pole device constituting the main part of a pole type hanger which is used for hanging clothes and the like, being installed between the floor and ceiling in an interior or other narrow space, a telescoping adjustment body is jointed and fixed to the upper end part of a lower pole with a larger bore that is to be erected from the io floor, for example; an upper pole with a bore smaller than that of the lower pole is drawably inserted inward from the upper end side of the lower pole while being passed through the telescoping adjustment body; and by means of the telescoping adjustment body, the upper pole is fixed or loosened, whereby the upper pole is fixed and jointed to the lower pole or made telescopable with respect to the lower pole. is As such a telescopic pole device, that with which the telescoping adjustment body is of turnbuckle structure, and with a turning operation thereof, the upper pole is fixed or loosened has been conventionally known, however, with such a telescoping adjustment body of turnbuckle structure, the screw tightening structure makes the fixing operation and loosening operation complex, and in addition, there can arise a problem on 20 durability that, with a number of times of operation, the function of the turnbuckle structure is impaired, resulting in occurrence of difficulty for practical use. In the patent document 1, there is proposed a telescopic pole device of screw fastened type with which an inner cylinder is drawably fitted into an external cylinder; to the end part of the external cylinder, a stopper tube is fixed; a stopper screw is screwed 25 into this stopper tube; and a stopper mechanism configured so as to seize the inner cylinder in a predetermined position is provided. With this telescopic pole device, the operation of tightening the stopper screw and that of loosening thereof are complex, and there can arise a problem on durability that, with a number of times of operation, the function of the screw structure is impaired, 30 resulting in occurrence of difficulty for practical use.
2 Patent document 1: Japanese Patent Laid-Open No. 2007-167454. Object of the Invention It is the object of the present invention to substantially overcome or at least ameliorate one or more of the disadvantages of the prior art, or to provide a useful 5 alternative. Summary of the Invention In a first aspect the present invention provides a telescopic prop-up pole device, comprising: a first pole; 10 a second pole a part of which is drawably inserted into this first pole in the lengthwise direction, while being protruded; and a telescoping adjustment body which is disposed over one end of said first pole and a part of the second pole extending outward from this one end, the telescoping adjustment body including: 15 an upper cylindrical body which is hollow and cylindrical; through which the second pole penetrates; and which has a lever loading part protruded on one side; a lower cylindrical body which is hollow and cylindrical; to which the upper end side of the first pole is integrally loaded to be supported thereby; on one side of which a lever supporting part which is jointed to the lever loading part is protruded; which is 20 provided with an inclined part on the top thereof; and the circumference part of which is integrally jointed to the bottom circumference part of said upper cylindrical body; a pole pressure-contacting/releasing part which has a pressure-contacting annular body with a protrusion on one side thereof, being disposed inclined on the inclined part of said lower cylindrical body, and a coil spring providing resilience to the lower cylindrical 25 body side for this pressure-contacting annular body; and an operation lever the pushing-up piece of which is engaged with the protrusion of said pressure-contacting annular body between said lever loading part and lever supporting part; and which, with a turning operation thereof, pushes up the protrusion on one side of said pressure-contacting annular body against the resilience of the coil spring 30 for bringing the pressure-contacting annular body into the horizontal state to eliminate the bulging of one side and the other side thereof toward the circumference side of the second pole and thereby to bring the pole pressure-contacting/releasing part into the second pole releasing state, while, with the turning operation thereof being canceled, bringing the 3 pressure-contacting annular body into an inclined state under the resilience of the coil spring to cause one side and the other side thereof to bulge toward the circumference side of the second pole and thereby to bring the pole pressure-contacting/releasing part into the second pole pressure-contacted state. 5 In a second aspect the present invention provides a telescopic prop-up pole device, comprising: a cylindrical or round-bar shaped first pole; a cylindrical or round-bar shaped second pole a part of which is drawably inserted into this first pole in the lengthwise direction, while being protruded; 10 a first butting body which is disposed at the protruding end of said first pole and a second butting body which is disposed at the protruding end of said second pole to be elasticly pressure-contacted with a butted surface; and a telescoping adjustment body which is disposed over one end of said first pole and a part of the second pole extending outward from this one end, the telescoping is adjustment body including: an upper cylindrical body which is hollow and cylindrical; through which the second pole penetrates; and which has a lever loading part protruded on one side; a lower cylindrical body which is hollow and cylindrical; to which the upper end side of the first pole is integrally loaded to be supported thereby; on one side of which a 20 lever supporting part which is jointed to the lever loading part is protruded; which is provided with an inclined part on the top thereof; and the circumference part of which is integrally jointed to the bottom circumference part of said upper cylindrical body; a pole pressure-contacting/releasing part which has a pressure-contacting annular body with a protrusion on one side thereof, being disposed inclined on the inclined part of 25 said lower cylindrical body, and a coil spring providing resilience to the lower cylindrical body side for this pressure-contacting annular body; and an operation lever the pushing-up piece of which is engaged with the protrusion of said pressure-contacting annular body between said lever loading part and lever supporting part; and which, with a turning operation thereof, pushes up the protrusion on 30 one side of said pressure-contacting annular body against the resilience of the coil spring for bringing the pressure-contacting annular body into the horizontal state to eliminate the bulging of one side and the other side thereof toward the circumference side of the second pole and thereby to bring the pole pressure-contacting/releasing part into the second pole releasing state, while, with the turning operation thereof being canceled, bringing the 35 pressure-contacting annular body into an inclined state under the resilience of the coil 4 spring to cause one side and the other side thereof to bulge toward the circumference side of the second pole and thereby to bring the pole pressure-contacting/releasing part into the second pole pressure-contacted state. In a third aspect the present invention provides a telescopic prop-up pole device, 5 comprising: a cylindrical or round-bar shaped first pole; a cylindrical or round-bar shaped second pole a part of which is drawably inserted into this first pole in the lengthwise direction, while being protruded; a first butting body which is disposed at the protruding end of said first pole and to a second butting body which is disposed at the protruding end of said second pole to be elasticly pressure-contacted with a butted surface; a telescoping adjustment body which is disposed over one end of said first pole and a part of the second pole extending outward from this one end, the telescoping adjustment body including: is an upper cylindrical body which is hollow and cylindrical; through which the second pole penetrates; and which has a lever loading part protruded on one side; a lower cylindrical body which is hollow and cylindrical; to which the upper end side of the first pole is integrally loaded to be supported thereby; on one side of which a lever supporting part which is jointed to the lever loading part is protruded; which is 20 provided with an inclined part on the top thereof; and the circumference part of which is integrally jointed to the bottom circumference part of said upper cylindrical body; a pole pressure-contacting/releasing part which has a pressure-contacting annular body with a protrusion on one side thereof, being disposed inclined on the inclined part of said lower cylindrical body, and a coil spring providing resilience to the lower cylindrical 25 body side for this pressure-contacting annular body; and an operation lever the pushing-up piece of which is engaged with the protrusion of said pressure-contacting annular body between said lever loading part and lever supporting part; and which, with a turning operation thereof, pushes up the protrusion on one side of said pressure-contacting annular body against the resilience of the coil spring 30 for bringing the pressure-contacting annular body into the horizontal state to eliminate the bulging of one side and the other side thereof toward the circumference side of the second pole and thereby to bring the pole pressure-contacting/releasing part into the second pole releasing state, while, with the turning operation thereof being canceled, bringing the pressure-contacting annular body into an inclined state under the resilience of the coil 35 spring to cause one side and the other side thereof to bulge toward the circumference side 5 of the second pole and thereby to bring the pole pressure-contacting/releasing part into the second pole pressure-contacted state; and any desired number of hooks for hanging clothes and the like that are fitted to 5 said first pole or second pole. In a fourth aspect the present invention provides a telescopic prop-up pole device, comprising: a first pole; a second pole a part of which is drawably inserted into this first pole in the io lengthwise direction, while being protruded; and a telescoping adjustment body which is disposed over one end of said first pole and a part of the second pole extending outward from this one end, the telescoping adjustment body including: an upper cylindrical body which is hollow and cylindrical; through which the is second pole penetrates; and which has a lever loading part protruded on one side; a lower cylindrical body which is hollow and cylindrical; to which the upper end side of the first pole is integrally loaded to be supported thereby; on one side of which a lever supporting part which is jointed to the lever loading part is protruded; which is provided with an inclined part on the top thereof; and the circumference part of which is 20 integrally jointed to the bottom circumference part of said upper cylindrical body; a pole pressure-contacting/releasing part which has a pressure-contacting annular body with a protrusion on one side thereof, being disposed inclined on the inclined part of said lower cylindrical body, and a coil spring providing resilience to the lower cylindrical body side for this pressure-contacting annular body; and 25 an operation lever of pushbutton type the pushing-up piece of which at the tip thereof is engaged with the protrusion of said pressure-contacting annular body between said lever loading part and lever supporting part; which is slidably disposed, and provided with a pressing button on the rear end side thereof; and which, with the pressing operation of the pressing button, pushes up the protrusion on one side of said pressure-contacting 30 annular body against the resilience of the coil spring for bringing the pressure-contacting annular body into the horizontal state to eliminate the bulging of one side and the other side thereof toward the circumference side of the second pole and thereby to bring the pole pressure-contacting/releasing part into the second pole releasing state, while, the pressing operation thereof being canceled, bringing the pressure-contacting annular body 35 into an inclined state under the resilience of the coil spring to cause one side and the other 6 side thereof to bulge toward the circumference side of the second pole and thereby to bring the pole pressure-contacting/releasing part into the second pole pressure-contacted state. In a fifth aspect the present invention provides a telescopic prop-up pole device, 5 comprising: a cylindrical or round-bar shaped first pole; a cylindrical or round-bar shaped second pole a part of which is drawably inserted into this first pole in the lengthwise direction, while being protruded; a first butting body which is disposed at the protruding end of said first pole and 1o a second butting body which is disposed at the protruding end of said second pole to be elasticly pressure-contacted with a butted surface; and a telescoping adjustment body which is disposed over one end of said first pole and a part of the second pole extending outward from this one end, the telescoping adjustment body including: is an upper cylindrical body which is hollow and cylindrical; through which the second pole penetrates; and which has a lever loading part protruded on one side; a lower cylindrical body which is hollow and cylindrical; to which the upper end side of the first pole is integrally loaded to be supported thereby; on one side of which a lever supporting part which is jointed to the lever loading part is protruded; which is 20 provided with an inclined part on the top thereof; and the circumference part of which is integrally jointed to the bottom circumference part of said upper cylindrical body; a pole pressure-contacting/releasing part which has a pressure-contacting annular body with a protrusion on one side thereof, being disposed inclined on the inclined part of said lower cylindrical body, and a coil spring providing resilience to the lower cylindrical 25 body side for this pressure-contacting annular body; and an operation lever of pushbutton type the pushing-up piece of which at the tip thereof is engaged with the protrusion of said pressure-contacting annular body between said lever loading part and lever supporting part; which is slidably disposed, and provided with a pressing button on the rear end side thereof; and which, with the pressing operation 30 of the pressing button, pushes up the protrusion on one side of said pressure-contacting annular body against the resilience of the coil spring for bringing the pressure-contacting annular body into the horizontal state to eliminate the bulging of one side and the other side thereof toward the circumference side of the second pole and thereby to bring the pole pressure-contacting/releasing part into the second pole releasing state, while, with 35 the pressing operation thereof being canceled, bringing the pressure-contacting annular 7 body into an inclined state under the resilience of the coil spring to cause one side and the other side thereof to bulge toward the circumference side of the second pole and thereby to bring the pole pressure-contacting/releasing part into the second pole pressure contacted state. 5 In a sixth aspect the present invention provides a telescopic prop-up pole device, comprising: a cylindrical or round-bar shaped first pole; a cylindrical or round-bar shaped second pole a part of which is drawably inserted into this first pole in the lengthwise direction, while being protruded; 10 a first butting body which is disposed at the protruding end of said first pole and a second butting body which is disposed at the protruding end of said second pole to be elasticly pressure-contacted with a butted surface; a telescoping adjustment body which is disposed over one end of said first pole and a part of the second pole extending outward from this one end, the telescoping is adjustment body including: an upper cylindrical body which is hollow and cylindrical; through which the second pole penetrates; and which has a lever loading part protruded on one side; a lower cylindrical body which is hollow and cylindrical; to which the upper end side of the first pole is integrally loaded to be supported thereby; on one side of which a 20 lever supporting part which is jointed to the lever loading part is protruded; which is provided with an inclined part on the top thereof; and the circumference part of which is integrally jointed to the bottom circumference part of said upper cylindrical body; a pole pressure-contacting/releasing part which has a pressure-contacting annular body with a protrusion on one side thereof, being disposed inclined on the inclined part of 25 said lower cylindrical body, and a coil spring providing resilience to the lower cylindrical body side for this pressure-contacting annular body; and an operation lever of pushbutton type the pushing-up piece of which at the tip thereof is engaged with the protrusion of said pressure-contacting annular body between said lever loading part and lever supporting part; which is slidably disposed, and provided 30 with a pressing button on the rear end side thereof; and which, with a pressing operation of the pressing button, pushes up the protrusion on one side of said pressure-contacting annular body against the resilience of the coil spring for bringing the pressure-contacting annular body into the horizontal state to eliminate the bulging of one side and the other side thereof toward the circumference side of the second pole and thereby to bring the 35 pole pressure-contacting/releasing part into the second pole releasing state, while, with 8 the pressing operation thereof being canceled, bringing the pressure-contacting annular body into an inclined state under the resilience of the coil spring to cause one side and the other side thereof to bulge toward the circumference side of the second pole and thereby to bring the pole pressure-contacting/releasing part into the second pole pressure 5 contacted state; and any desired number of hooks for hanging clothes and the like that are fitted to said first pole or second pole. The present invention at least in a preferred embodiment provides a simple 10 telescoping adjustment of a length-adjusting pole, which is excellent in durability. The telescopic prop-up pole device according to at least a preferred embodiment of the present invention provides, as a most important feature thereof, comprising a first pole; a second pole a part of which is drawably inserted into this first pole in the lengthwise direction, while being protruded; a telescoping adjustment body which is is disposed over one end of the first pole and a part of the second pole extending outward from this one end, the telescoping adjustment body including an upper cylindrical body which is hollow and cylindrical; through which the second pole penetrates; and which has a lever loading part protruded on one side; a lower cylindrical body which is hollow and cylindrical; to which the upper end side of the first pole is integrally loaded to be 20 supported thereby; on one side of which a lever supporting part which is jointed to the lever loading part is protruded; which is provided with an inclined part on the top thereof; and the circumference part of which is integrally jointed to the bottom circumference part of the upper cylindrical body; a pole pressure-contacting/releasing part which has a pressure-contacting annular body with a protrusion on one side thereof, being disposed 25 inclined on the inclined part of the lower cylindrical body, and a coil spring providing resilience to the lower cylindrical body side for this pressure-contacting annular body; and an operation lever the pushing-up piece of which is engaged with the protrusion of the pressure-contacting annular body between the lever loading part and lever supporting part; and which, with a turning operation thereof, pushes up the protrusion on one side of 30 the pressure-contacting annular body against the resilience of the coil spring for bringing the pressure-contacting annular body into the horizontal state to eliminate the bulging of one side and the other side thereof toward the circumference side of the second pole and thereby to bring the pole pressure-contacting/releasing part into the second pole releasing state, while, with the turning operation thereof being canceled, bringing the pressure 35 contacting annular body into an inclined state under the resilience of the coil spring to 9 cause one side and the other side thereof to bulge toward the circumference side of the second pole and thereby to bring the pole pressure-contacting/releasing part into the second pole pressure-contacted state. According to the first aspect of the invention there can be realized and provided a 5 telescopic prop-up pole device with which, by making one-touch operation on the operation lever of turning type, the second pole can be brought into the state where it is telescopable with respect to the first pole to be adjusted to a desired length, while, simply by canceling the operation force on the operation piece, the second pole can be automatically brought into the state where it is fixed to the first pole; and telescoping io adjustment of the length-adjusting second pole is extremely simple; and which is excellent in durability, as compared to the telescopic prop-up pole device of screw tightening structure. According to the second aspect of the invention, because, in addition to the benefits of the first aspect of the invention, a second butting body which is elasticly is pressure-contacted with a butted surface is disposed at the protruding end of the second pole, there can be realized and provided a telescopic prop-up pole device with which the second pole side can be positively pressure-contacted with the butted surface. According to the third aspect of the invention, because, in addition to the benefits of the second aspect of the invention, any desired number of hooks for hanging clothes 20 and the like are fitted to the first pole or second pole, there can be realized and provided a telescopic prop-up pole device which can function as a telescopic prop-up pole hanger on which clothes and the like are hung. According to the fourth aspect of the invention, there can be realized and provided a telescopic prop-up pole device with which, by making one-touch pressing 25 operation on the operation lever of pushbutton type, the second pole can be brought into the state where it is telescopable with respect to the first pole to be adjusted to a desired length, while, simply by canceling the pressing force on the operation piece, the second pole can be automatically brought into the state where it is fixed to the first pole; and telescoping adjustment of the length-adjusting second pole is extremely simple; and 30 which is excellent in durability, as compared to the telescopic prop-up pole device of screw tightening structure.
10 According to the fifth aspect of the invention, because, in addition to the benefits of the fourth aspect of the invention, a second butting body which is elasticly pressure contacted with a butted surface is disposed at the protruding end of the second pole, there can be realized and provided a telescopic prop-up pole device with which the second pole s side can be positively pressure-contacted with the butted surface. According to the sixth aspect of the invention, because, in addition to the benefits of the second aspect of the invention, any desired number of hooks for hanging clothes and the like are fitted to the first pole or second pole, there can be realized and provided a telescopic prop-up pole device which can function as a telescopic prop-up pole io hanger on which clothes and the like are hung. Brief Description of the Drawings Fig. I is a schematic front view of a telescopic prop-up pole device according to an embodiment I of the present invention; Fig. 2 is an exploded perspective side view of a telescoping adjustment body in 15 the telescopic prop-up pole device according to the present embodiment 1; Fig. 3 is a schematic sectional view illustrating the second pole pressure contacted state brought about with the telescoping adjustment body in the telescopic prop up pole device according to the present embodiment 1; Fig. 4 is a schematic sectional view illustrating the second pole pressure-contact 20 released state brought about with the telescoping adjustment body in the telescopic prop up pole device according to the present embodiment 1; Fig. 5 is a schematic sectional view of a second butting body in the telescopic prop-up pole device according to the present embodiment 1; Fig. 6 is a front view of a telescoping adjustment body in a telescopic prop-up 25 pole device according to an embodiment 2 of the present invention; Fig. 7 is an exploded perspective side view of the telescoping adjustment body in the telescopic prop-up pole device according to the present embodiment 2; Fig. 8 is a schematic sectional view illustrating the second pole pressure contacted state brought about with the telescoping adjustment body in the telescopic prop 30 up pole device according to the present embodiment 2; Fig. 9 is a schematic sectional view illustrating the second pole pressure-contact released state brought about with the telescoping adjustment body in the telescopic prop up pole device according to the present embodiment 2; and 11 Fig. 10 is a schematic front view of a telescopic prop-up pole device according to an embodiment 3 of the present invention. Detailed Description of the Preferred Embodiments The present invention at least in a preferred embodiment provides a telescopic 5 prop-up pole device which is simple in telescoping adjustment of the length-adjusting pole, and excellent in durability, by a scheme comprising a cylindrical or round-bar shaped first pole; a cylindrical or round-bar shaped second pole a part of which is drawably inserted into this first pole in the lengthwise direction, while being protruded; a first butting body which is disposed at the protruding end of the first pole and a second 1o butting body which is disposed at the protruding end of the second pole to be elasticly pressure-contacted with a butted surface; and a telescoping adjustment body which is disposed over one end of the first pole and a part of the second pole extending outward from this one end, the telescoping adjustment body including an upper cylindrical body which is hollow and cylindrical; through which the second pole penetrates; and which has is a lever loading part protruded on one side; a lower cylindrical body which is hollow and cylindrical; to which the upper end side of the first pole is integrally loaded to be supported thereby; on one side of which a lever supporting part which is jointed to the lever loading part is protruded; which is provided with an inclined part on the top thereof; and the circumference part of which is integrally jointed to the bottom circumference part 20 of the upper cylindrical body; a pole pressure-contacting/releasing part which has a pressure-contacting annular body with a protrusion on one side thereof, being disposed inclined on the inclined part of the lower cylindrical body, and a coil spring providing resilience to the lower cylindrical body side for this pressure-contacting annular body; and an operation lever the pushing-up piece of which is engaged with the protrusion of 25 the pressure-contacting annular body between the lever loading part and lever supporting part; and which, with a turning operation thereof, pushes up the protrusion on one side of the pressure-contacting annular body against the resilience of the coil spring for bringing the pressure-contacting annular body into the horizontal state to eliminate the bulging of one side and the other side thereof toward the circumference side of the second pole and 30 thereby to bring the pole pressure-contacting/releasing part into the second pole releasing state, while, with the turning operation thereof being canceled, bringing the pressure contacting annular body into an inclined state under the resilience of the coil spring to cause one side and the other side thereof to bulge toward the circumference side of the 12 second pole and thereby to bring the pole pressure-contacting/releasing part into the second pole pressure-contacted state. Embodiment 1 Hereinbelow, a telescopic prop-up pole device I according to an embodiment I 5 of the present invention will be described. As shown in Fig. 1, the telescopic prop-up pole device I of the present embodiment I comprises a cylindrical or round-bar shaped first pole 2 made of, for example, synthetic resin or metal that is vertically erected on a floor 61, for example; a cylindrical or round-bar shaped second pole 4 a part of which is drawably inserted in the 1o lengthwise direction into the inside of this first pole 2, being protruded, and which is cylindrically formed, being made of, for example, synthetic resin or metal, and having an outside diameter slightly smaller than the inside diameter of the first pole 2; a telescoping adjustment body 6 for telescoping adjustment of this second pole 4 which is disposed over one end of the first pole 2 and a part of second pole 4 extending outward from this is one end; a first butting body 3 to which the lower end of the first pole 2 is removably loaded, and the bottom part of which is butted against a floor 61; and a second butting body 5 to which the upper end of the second pole 4 is removably loaded, and the upper end face of which is butted against the ceiling 62. As shown in Fig. 2, the telescoping adjustment body 6 includes an upper 20 cylindrical body 11 which is hollow and cylindrical, and through which the second pole 4 penetrates; a pole pressure-contacting/releasing part 21 which is disposed inside the upper cylindrical body 11 and on a lower cylindrical body 41 later described; an operation lever 31 which is mounted on the side part of the upper cylindrical body 11, and is operated to push up the pole pressure-contacting/releasing part 21; and a lower cylindrical body 41 25 which is hollow and cylindrical, being integrally jointed to the lower portion side of the upper cylindrical body 11 and to which the upper end side of the first pole 2 is integrally loaded to be supported thereby. The upper cylindrical body 11 allows the second pole 4 to be penetrated, and includes a lever loading part 12 which is in the shape of a substantially tapered square 30 cylinder, being integrally protruded from one side of this upper cylindrical body 11 toward the side, and opened downward and at the protruding end, being provided with a protruded piece 13 extending downward inside the opening portion of the protruding end. This protruded piece 13 is adapted to be fitted into a guide groove 33 formed at the upper end of the operation lever 31 as described later.
13 In addition, in the lower portion of the upper cylindrical body 11, on the other side (the side diametrically opposite to the lever loading part 12) thereof, a laterally oriented trapezoidly-shaped protruding part 14 is protruded toward the side, being provided with a hole 14a for insertion of a locking screw 53 later described. 5 As shown in Fig. 2, the pole pressure-contacting/releasing part 21 includes a coil spring 22 presenting a circular shape having a predetermined resilience; an internal cylindrical body 23 which is substantially cylindrical, and through which the second pole 4 can penetrate; and a pressure-contacting annular body 24 through which the second pole 4 can penetrate, and which is made of metal, being formed in the shape of a ring, with this 10 pressure-contacting annular body 24 being disposed on the lower cylindrical body 41, the internal cylindrical body 23 being disposed on the pressure-contacting annular body 24, the lower end side of the coil spring 22 being butted against the circular supporting shoulder part 23a provided on the circumference of the internal cylindrical body 23, and further, as shown in Fig. 3, the upper end side of the coil spring 22 being butted against is the internal bottom part II a of the upper cylindrical body 11, thereby, the internal cylindrical body 23 and the pressure-contacting annular body 24 being provided with a resilience directed toward the side of the lower cylindrical body 41. The internal cylindrical body 23 is provided with the circular supporting shoulder part 23a on the circumference thereof, and on one side thereof with a pair of 20 protruded strips 23b having a predetermined spacing. In addition, the bottom of the internal cylindrical body 23 is formed to provide an inclined surface which provides the side of the pair of protruded strips 23b with a larger dimension, and the other side with a smaller dimension. The pressure-contacting annular body 24 is provided with a substantially square 25 protrusion 24a on one side of the circumference thereof that rises upward as it protrudes outward, such that, when the internal cylindrical body 23 is placed thereon, the protrusion 24a is fitted between the pair of protruded strips 23b of the internal cylindrical body 23. The lower cylindrical body 41 is integrally jointed to the upper cylindrical body 11, the second pole 4 being penetratable therethrough, and as shown in Fig. 3, is 30 configured such that the upper end of the first pole 2 is integrally fitted and fixed to the bore part thereof. In the circumferential part of the lower cylindrical body 41, on one side thereof, a lever supporting part 42 which is jointed to the lever loading part 12, being provided with a shape corresponding to this lever loading part 12, is integrally protruded, and at the 35 protruding end thereof, a guide opening 43 having a certain width is provided.
14 On one side of the circumference of the lower cylindrical body 41, a prism shaped protruded piece 45 in which a through-hole 44 for fixing the operation lever 31 is formed is protruded along the lengthwise direction thereof. Further, on the other side of the circumference of the lower cylindrical body 41, a support part 46 to which the s protruding part 14 of the upper cylindrical body 11 is jointed is provided. And, in a location above the support part 46 in the lower cylindrical body 41, a threaded hole 47 for the locking screw 53 is provided. The upper end of the lower cylindrical body 41 is adapted to provide an inclined part 48 which has a lower profile on the side of the lever supporting part 42, and a higher io one on the side of the support part 46. And, on this inclined part 48, the pressure contacting annular body 24, internal cylindrical body 23, and coil spring 22 are placed in this order. The operation lever 31 is engaged between the lever loading part 12 in the upper cylindrical body 11 and the lever supporting part 42 in the lower cylindrical body 41. 15 In the upper portion of the operation lever 31, a pushing-up piece 32 which is engaged with the bottom of the protrusion 24a of the pressure-contacting annular body 24 for raising one side of the pressure-contacting annular body 24, the tip thereof being pointed, and a guide groove 33 into which the protruded piece 13 is fitted from above are provided. 20 In addition, on the lower side of the guide groove 33, a thinner-wall part 34 which is displaced, while being guided by the guide opening 43 formed at the protruding end of the lever supporting part 42 is provided with an operation piece 35 hanging downward from this thinner-wall part 34. The inside of the operation piece 35 is formed to provide a recess part 25 substantially 0-shaped in the horizontal section, and has a pair of through-holes 36 for allowing a securing pin 51 with a holding part 52 expanded in the horizontal direction to penetrate therethrough. In addition, the operation piece 35 in the operation lever 31 is configured to be fitted to or removed from the protruded piece 45 provided on the lower cylindrical body 30 41. In other words, by fitting the operation lever 31 to the protruded piece 45, and aligning the pair of through-hole 36 with the through-hole 44 in the protruded piece 45 before inserting the securing pin 51, the operation lever 31 is fixed to the lower cylindrical body 41.
15 As shown in Fig. 5, the second butting body 5 is disk-shaped on the upper end side, including a butting base body 71 in which a later described support cylindrical body 72 in the shape of a cylinder is protruded downward; the support cylindrical body 72 which, being blocked on the upper end side, is fitted into the opening part of the butting 5 base body 71, and into which the upper end of the second pole is removably loaded; a support piece 73 which is provided inside of the butting base body 71; an urging spring 74 which is disposed between the support piece 73 and the upper end face of the support cylindrical body 72; and a butting auxiliary body 75 which is removably disposed on the side of the upper end face of the butting base body 71, being thin disk-shaped and made 10 of such a material as rubber. And, when the upper end of the second pole is loaded into the support cylindrical body 72 and the upper end face of the butting base body 71 is butted against the ceiling 62, the urging spring 74 causes the butting base body 71 to be pressure-contacted with the ceiling 62 by the resilience. At this time, the flexibility of the butting auxiliary body 75 is prevents the ceiling surface from being damaged. Next, the operation of the telescopic prop-up pole device I according to the present embodiment 1 will be described. As shown in Fig. 1, the telescopic prop-up pole device I according to the present embodiment 1 is vertically fixed and disposed between the floor 61 and the ceiling 62 in 20 the prop-up state by vertically erecting the first pole 2 on the floor 61 through the first butting body 3, for example, and causing the second butting body 5 disposed on the upper end of the second pole 4 telescopably jointed to the first pole 2 through the telescoping adjustment body 6 to be pressure-contacted with the ceiling 62. At this time, the telescoping adjustment body 6 is operated as follows. 25 The tip of the locking screw 53 is butted against the circumference of the second pole 4 through the hole 14a of the upper cylindrical body 11 and the threaded hole 47 of the lower cylindrical body 41, locking the second pole 4. In addition, as shown in Fig. 3, the pressure-contacting annular body 24 in the pole pressure-contacting/releasing part 21 is disposed on the inclined part 48 of the lower 30 cylindrical body 41 in an inclined state where one side being in a lower position and the other side being in a higher position, thereby, one side (the side of the pushing-up piece 32) and the other side in the bore part of the pressure-contacting annular body 24 being slightly bulged toward the circumference side of one side and the other side of the second pole 4 fitted into the first pole 2, respectively.
16 Further, the pressure-contacting annular body 24 is pressed downward in Fig. 3 by the coil spring 22 through the internal cylindrical body 23. As a result of this, one side and the other side in the bore part of the pressure contacting annular body 24 are pressure-contacted with the circumference of one side and 5 the other side of the second pole 4, respectively, thus the second pole 4 being in the state where it is fixed to the first pole 2 through the telescoping adjustment body 6. Next, the telescoping operation of the telescopic prop-up pole device I according to the present embodiment I will be described below. In order to adjust the protruding length of the second pole 4 with respect to the io first pole 2 in the telescopic prop-up pole device 1, the locking screw 53 is first turned to remove it, which is followed by operating the operation piece 35 of the operation lever 31 inwardly (in the direction of arrow 'a' in Fig. 3). Thereby, the pushing-up piece 32 of the operation lever 31 is displaced upward around a pivot of the protruded piece 13, whereby the protrusion 24a of the pressure is contacting annular body 24 is pushed up upward. As a result of this, as shown in Fig. 4, one side of the pressure-contacting annular body 24 and that of the internal cylindrical body 23 are pushed up upward against the resilience of the coil spring 22, resulting in the pressure-contacting annular body 24 being brought into a horizontal state (or a substantially horizontal state), with the state where 20 one side and the other side in the bore part of the pressure-contacting annular body 24 are protruded toward the side of the circumference of one side and the other side of the second pole 4 fitted into the first pole 2 being cancelled, whereby the second pole 4 becomes free to be vertically moved, i.e., the second pole 4 becomes telescopable with respect to the lower pole, which results in the protruding length of the second pole 4 with 25 respect to the first pole 2 being adjustable to a desired length. Further, after the second pole 4 being adjusted to an appropriate length, canceling the operation force applied to the operation piece 35 constituting the operation lever 31 will automatically lower the pressure-contacting annular body 24 by the resilience of the coil spring 22 to allow it to restore the state as shown in Fig. 3, with the 30 operation lever 31 also being returned to the position as shown in Fig. 3 under the action of the resilience of the coil spring 22. When the telescopic prop-up pole device I is to be packaged or transported, the operation piece 35 is displaced to a position as shown in Fig. 4, and the securing pin 51 is utilized to fix the operation lever 31 to the protruded piece 45 for keeping the second pole 35 4 telescopable with respect to the first pole 2. This is because, if the pressure-contacting 17 annular body 24 is left to be pressure-contacted with the circumference of the second pole 4, there is a possibility that the second pole 4 might be deformed by an external impact, resulting in the product having had a flaw, thus it is necessary that the second pole 4 be kept telescopable with respect to the first pole 2 for prevention of occurrence of a flaw. 5 With the telescopic prop-up pole device I according to the present embodiment 1, simply by making one-touch operation on the operation piece 35 of the operation lever 31 in the direction of arrow 'a', the second pole 4 can be brought into the state where it is telescopable with respect to the first pole 2, and the protruding length of the second pole 4 is adjustable to a desired length, and simply by canceling the operation force applied to io the operation piece 35 of the operation lever 31, the second pole 4 can be automatically brought into the state where it is fixed with respect to the first pole 2. Therefore, there can be realized and provided a telescopic prop-up pole device I with which the length adjustment of the second pole 4 and the fixing of the second pole 4 are extremely simple; the operability is good; and yet the durability is excellent because, is unlike the conventional telescopic prop-up pole device which uses a turnbuckle type or screw type telescoping adjustment body, a scheme which uses the operation lever 31 for pushing up the pressure-contacting annular body 24 or canceling the pushing up is adopted. In addition, because the second butting body 5 into which the upper end of the 20 second pole 4 is schemed to have a built-in urging spring 74 for pressure contact, with a butting auxiliary body 75 being provided which is flexibly butted against the ceiling 62, there can be realized and provided a telescopic prop-up pole device I with which the second pole 4 can be positively mounted to the ceiling 62 with the ceiling surface being prevented from being damaged. 25 Embodiment 2 Next, a telescopic prop-up pole device I A according to an embodiment 2 of the present invention will be described with reference to Fig. 6 to Fig. 9. For the telescopic prop-up pole device 1 A of the present embodiment 2, the same elements as those of the telescopic prop-up pole device I of the embodiment I as 30 described above will be provided with the same reference numerals or letters, with the detailed explanation thereof being omitted. As shown in Fig. 6 and Fig. 7, the basic configuration of the telescopic prop-up pole device IA of the present embodiment 2 is substantially the same as that of the telescopic prop-up pole device I of the embodiment 1. Specifically, the telescopic prop- 18 up pole device 1A of the present embodiment 2 is characterized in that, instead of the aforementioned operation lever 31 of turning operation type, an operation lever 81 of pushbutton type has been adopted, and the geometries of the lever loading part 12 of the upper cylindrical body 11, and the lever supporting part 42 of the lower cylindrical body s 41 have been changed to provide a lever loading part 12A and a lever supporting part 42A which slidably hold the operation lever 81 of pushbutton type in the direction of arrows 'b' and 'c' as shown in Fig. 8, and the other configuration is substantially the same as that of the telescopic prop-up pole device 1 of the embodiment 1. More specifically, the operation lever 81 in the present embodiment 2 is engaged 1o between the lever loading part 12A in the upper cylindrical body 11, and the lever supporting part 42A formed in the lower cylindrical body 41 such that it is slidable in the direction of arrows 'b' and 'c'. The operation lever 81 is configured to include a pushing-up piece 82 which, being located at the distal end thereof, is engaged with the bottom of a protrusion 24a of is the pressure-contacting annular body 24, the tip thereof being pointed, for pushing up one side of the pressure-contacting annular body 24; a sliding body 83 which, being located adjacent to the pushing-up piece 82, slides in the direction of arrows 'b' and 'c' inside the lever loading part 12A and lever supporting part 42A; and further, a pressing button 84 which, being located on the rear end side of the sliding body 83, is protruded from the 20 protruding ends of the lever loading part 12A and lever supporting part 42A. The operation of the telescopic prop-up pole device IA of the present embodiment 2 that has adopted such an operation lever 81 of pushbutton type will be described with reference also to Fig. 8 and Fig. 9. When the telescopic prop-up pole device IA which has adopted the operation 25 lever 81 according to the present embodiment 2 is vertically fixed and disposed in the prop-up state between the floor 61 and ceiling 62, the tip of the locking screw 53 is butted against the circumference of the second pole 4 through the hole 14a of the upper cylindrical body 11 and the threaded hole 47 of the lower cylindrical body 41, locking the second pole 4, in the same manner as shown in Fig. 1. 30 At this time, the telescoping adjustment body 6 and the operation lever 81 are operated as follows. As shown in Fig. 8, the pressure-contacting annular body 24 in the pole pressure-contacting/releasing part 21 is disposed on the inclined part 48 of the lower cylindrical body 41 in an inclined state where one side being in a lower position and the other side being in a higher position, thereby, one side (the side of the pushing-up piece 35 82) and the other side in the bore part of the pressure-contacting annular body 24 being 19 slightly bulged toward the circumference side of one side and the other side of the second pole 4 fitted into the first pole 2, respectively. Further, the pressure-contacting annular body 24 is pressed downward in Fig. 8 by the coil spring 22 through the internal cylindrical body 23. 5 As a result of this, one side and the other side in the bore part of the pressure contacting annular body 24 are pressure-contacted with the circumference of one side and the other side of the second pole 4, respectively, thus the second pole 4 being in the state where it is fixed to the first pole 2 through the telescoping adjustment body 6. In addition, the tip of the pushing-up piece 82 of the operation lever 81 is io engaged with the bottom of the protrusion 24a of the pressure-contacting annular body 24, and the pressing button 84 is in the state where it is protruded sideward from the protruding ends of the lever loading part 12A and lever supporting part 42A. Next, in order to adjust the protruding length of the second pole 4 with respect to the first pole 2 in the telescopic prop-up pole device 1 A, the locking screw 53 is first is turned to remove it, which is followed by pushing in the pressing button 84 in the direction of arrow 'b' against the resilience of the coil spring 22. Thereby, the pushing-up piece 82 of the operation lever 81 pushes upward the protrusion 24a of the pressure-contacting annular body 24, and thus as shown in Fig. 9, one side of the pressure-contacting annular body 24 and that of the internal cylindrical 20 body 23 are pushed up upward against the resilience of the coil spring 22, resulting in the pressure-contacting annular body 24 being brought into a horizontal state (or a substantially horizontal state), with the state where one side and the other side in the bore part of the pressure-contacting annular body 24 are protruded toward the side of the circumference of one side and the other side of the second pole 4 fitted into the first pole 25 2 being cancelled, whereby the second pole 4 becomes free to be vertically moved, i.e., the second pole 4 becomes telescopable with respect to the lower pole, which results in the protruding length of the second pole 4 with respect to the first pole 2 being adjustable to a desired length. Further, after the second pole 4 being adjusted to an appropriate length, 30 canceling the pressing force applied to the pressing button 84 will automatically lower the pressure-contacting annular body 24 by the resilience of the coil spring 22 to allow it to restore the state as shown in Fig. 8, with the operation lever 31 also being displaced in the direction of arrow 'c' to be returned to the position as shown in Fig. 8 under the action of the resilience of the coil spring 22.
20 With the telescopic prop-up pole device IA according to the present embodiment 2, simply by making one-touch operation on the pressing pushbutton 84 of the operation lever 81 of pushbutton type in the direction of arrow 'b', the second pole 4 can be brought into the state where it is telescopable with respect to the first pole 2, and the protruding 5 length of the second pole 4 is adjustable to a desired length, and simply by canceling the pressing force applied to the pressing pushbutton 84, the second pole 4 can be automatically brought into the state where it is fixed with respect to the first pole 2. Therefore, there can be realized and provided a telescopic prop-up pole device IA with which the length adjustment of the second pole 4 and the fixing of the second io pole 4 are extremely simple; the operability is good; and yet the durability is excellent because, unlike the conventional telescopic prop-up pole device which uses a turnbuckle type or screw type telescoping adjustment body, a scheme which uses the operation lever 81 for pushing up the pressure-contacting annular body 24 or canceling the pushing up is adopted. is In addition, as is the case with the embodiment 1, there can be realized and provided a telescopic prop-up pole device 1A with which the second pole 4 can be positively mounted to the ceiling 62 through the second butting body 5 with the ceiling surface being prevented from being damaged. Embodiment 3 20 Next, a telescopic prop-up pole device I B according to an embodiment 3 of the present invention will be described with reference to Fig. 10. The telescopic prop-up pole device I B according to the present embodiment 3 is characterized in that it utilizes the telescopic prop-up pole device 1 of the embodiment 1, and further to the second pole 4 (or the first pole 2), a desired number (two in an example 25 as shown in Fig. 10) of hooks 91 for hanging clothes such as a shirt, a towel, a hat, and the like, are fitted in a desired location thereof. The other configuration of the telescopic prop-up pole device I B is the same as that of the embodiment 1. According to the telescopic prop-up pole device I B of the present embodiment 3, as is the case with the aforedescribed embodiments, there can be realized and provided a 30 telescopic prop-up pole device I B with which the operability is good; yet the durability is excellent because, unlike the conventional telescopic prop-up pole device which uses a turnbuckle type or screw type telescoping adjustment body; and further, the second pole 4 can be positively mounted to the ceiling 62 through the second butting body 5 with the ceiling surface being prevented from being damaged.
21 In addition, by adding a hook 91, there can be provided a telescopic prop-up pole device I B which can function as a telescopic prop-up pole hanger for hanging clothes and the like. In addition, as the telescopic prop-up pole device 1B according to the present s embodiment 3, the telescopic prop-up pole device IA in the embodiment 2 can duly be used, with a hook 91 being fitted to the second pole 4 (or the first pole 2) in a desired location thereof, and also in this case, the same function and effects can be provided. Industrial Applicability The telescopic prop-up pole device 1, 1 A of the present invention can also find io application in addition to the aforementioned application, being used as a horizontal type telescopic prop-up pole hanger by mounting it in a horizontal position between walls in the room, between a wall in the room and a partition wall, or the like, for hanging shirts, clothes, dresses and the like, with clothes hangers arranged horizontally. Description of Symbols 15 1: Telescopic prop-up pole device IA: Telescopic prop-up pole device IB: Telescopic prop-up pole device 2: First pole 3: First butting body 20 4: Second pole 5: Second butting body 6: Telescoping adjustment body 11: Upper cylindrical body I l A: Internal bottom part 25 12: Lever loading part 12A: Lever loading part 13: Protruded piece 14: Protruding part 14a: Hole 30 21: Pole pressure-contacting/releasing part 22: Coil spring 23: Internal cylindrical body 23a: Supporting shoulder part 22 23b: Protruded strip 24: Pressure-contacting annular body 24a: Protrusion 31: Operation lever 5 32: Pushing-up piece 33: Guide groove 34: Thinner-wall part 35: Operation piece 36: Through-hole to 41: Lower cylindrical body 42: Lever supporting part 42A: Lever supporting part 43: Guide opening 44: Through-hole is 45: Protruded piece 46: Support part 47: Threaded hole 48: Inclined part 51: Securing pin 20 52: Holding part 53: Locking screw 61: Floor 62: Ceiling 71: Butting base body 25 72: Support cylindrical body 73: Support piece 74: Urging spring 75: Butting auxiliary body 81: Operation lever 30 82: Pushing-up piece 83: Sliding body 84: Pressing button 91: Hook
Claims (7)
1. A telescopic prop-up pole device, comprising: a first pole; a second pole a part of which is drawably inserted into this first pole in the 5 lengthwise direction, while being protruded; and a telescoping adjustment body which is disposed over one end of said first pole and a part of the second pole extending outward from this one end, the telescoping adjustment body including: an upper cylindrical body which is hollow and cylindrical; through which the io second pole penetrates; and which has a lever loading part protruded on one side; a lower cylindrical body which is hollow and cylindrical; to which the upper end side of the first pole is integrally loaded to be supported thereby; on one side of which a lever supporting part which is jointed to the lever loading part is protruded; which is provided with an inclined part on the top thereof; and the circumference part of which is is integrally jointed to the bottom circumference part of said upper cylindrical body; a pole pressure-contacting/releasing part which has a pressure-contacting annular body with a protrusion on one side thereof, being disposed inclined on the inclined part of said lower cylindrical body, and a coil spring providing resilience to the lower cylindrical body side for this pressure-contacting annular body; and 20 an operation lever the pushing-up piece of which is engaged with the protrusion of said pressure-contacting annular body between said lever loading part and lever supporting part; and which, with a turning operation thereof, pushes up the protrusion on one side of said pressure-contacting annular body against the resilience of the coil spring for bringing the pressure-contacting annular body into the horizontal state to eliminate the 25 bulging of one side and the other side thereof toward the circumference side of the second pole and thereby to bring the pole pressure-contacting/releasing part into the second pole releasing state, while, with the turning operation thereof being canceled, bringing the pressure-contacting annular body into an inclined state under the resilience of the coil spring to cause one side and the other side thereof to bulge toward the circumference side 30 of the second pole and thereby to bring the pole pressure-contacting/releasing part into the second pole pressure-contacted state.
2. A telescopic prop-up pole device, comprising: a cylindrical or round-bar shaped first pole; a cylindrical or round-bar shaped second pole a part of which is drawably 35 inserted into this first pole in the lengthwise direction, while being protruded; 24 a first butting body which is disposed at the protruding end of said first pole and a second butting body which is disposed at the protruding end of said second pole to be elasticly pressure-contacted with a butted surface; and a telescoping adjustment body which is disposed over one end of said first pole 5 and a part of the second pole extending outward from this one end, the telescoping adjustment body including: an upper cylindrical body which is hollow and cylindrical; through which the second pole penetrates; and which has a lever loading part protruded on one side; a lower cylindrical body which is hollow and cylindrical; to which the upper end io side of the first pole is integrally loaded to be supported thereby; on one side of which a lever supporting part which is jointed to the lever loading part is protruded; which is provided with an inclined part on the top thereof; and the circumference part of which is integrally jointed to the bottom circumference part of said upper cylindrical body; a pole pressure-contacting/releasing part which has a pressure-contacting annular is body with a protrusion on one side thereof, being disposed inclined on the inclined part of said lower cylindrical body, and a coil spring providing resilience to the lower cylindrical body side for this pressure-contacting annular body; and an operation lever the pushing-up piece of which is engaged with the protrusion of said pressure-contacting annular body between said lever loading part and lever 20 supporting part; and which, with a turning operation thereof, pushes up the protrusion on one side of said pressure-contacting annular body against the resilience of the coil spring for bringing the pressure-contacting annular body into the horizontal state to eliminate the bulging of one side and the other side thereof toward the circumference side of the second pole and thereby to bring the pole pressure-contacting/releasing part into the second pole 25 releasing state, while, with the turning operation thereof being canceled, bringing the pressure-contacting annular body into an inclined state under the resilience of the coil spring to cause one side and the other side thereof to bulge toward the circumference side of the second pole and thereby to bring the pole pressure-contacting/releasing part into the second pole pressure-contacted state. 30
3. A telescopic prop-up pole device, comprising: a cylindrical or round-bar shaped first pole; a cylindrical or round-bar shaped second pole a part of which is drawably inserted into this first pole in the lengthwise direction, while being protruded; 25 a first butting body which is disposed at the protruding end of said first pole and a second butting body which is disposed at the protruding end of said second pole to be elasticly pressure-contacted with a butted surface; a telescoping adjustment body which is disposed over one end of said first pole s and a part of the second pole extending outward from this one end, the telescoping adjustment body including: an upper cylindrical body which is hollow and cylindrical; through which the second pole penetrates; and which has a lever loading part protruded on one side; a lower cylindrical body which is hollow and cylindrical; to which the upper end io side of the first pole is integrally loaded to be supported thereby; on one side of which a lever supporting part which is jointed to the lever loading part is protruded; which is provided with an inclined part on the top thereof; and the circumference part of which is integrally jointed to the bottom circumference part of said upper cylindrical body; a pole pressure-contacting/releasing part which has a pressure-contacting annular 15 body with a protrusion on one side thereof, being disposed inclined on the inclined part of said lower cylindrical body, and a coil spring providing resilience to the lower cylindrical body side for this pressure-contacting annular body; and an operation lever the pushing-up piece of which is engaged with the protrusion of said pressure-contacting annular body between said lever loading part and lever 20 supporting part; and which, with a turning operation thereof, pushes up the protrusion on one side of said pressure-contacting annular body against the resilience of the coil spring for bringing the pressure-contacting annular body into the horizontal state to eliminate the bulging of one side and the other side thereof toward the circumference side of the second pole and thereby to bring the pole pressure-contacting/releasing part into the second pole 25 releasing state, while, with the turning operation thereof being canceled, bringing the pressure-contacting annular body into an inclined state under the resilience of the coil spring to cause one side and the other side thereof to bulge toward the circumference side of the second pole and thereby to bring the pole pressure-contacting/releasing part into the second pole pressure-contacted state; 30 and any desired number of hooks for hanging clothes and the like that are fitted to said first pole or second pole.
4. A telescopic prop-up pole device, comprising: a first pole; 26 a second pole a part of which is drawably inserted into this first pole in the lengthwise direction, while being protruded; and a telescoping adjustment body which is disposed over one end of said first pole and a part of the second pole extending outward from this one end, the telescoping 5 adjustment body including: an upper cylindrical body which is hollow and cylindrical; through which the second pole penetrates; and which has a lever loading part protruded on one side; a lower cylindrical body which is hollow and cylindrical; to which the upper end side of the first pole is integrally loaded to be supported thereby; on one side of which a io lever supporting part which is jointed to the lever loading part is protruded; which is provided with an inclined part on the top thereof; and the circumference part of which is integrally jointed to the bottom circumference part of said upper cylindrical body; a pole pressure-contacting/releasing part which has a pressure-contacting annular body with a protrusion on one side thereof, being disposed inclined on the inclined part of is said lower cylindrical body, and a coil spring providing resilience to the lower cylindrical body side for this pressure-contacting annular body; and an operation lever of pushbutton type the pushing-up piece of which at the tip thereof is engaged with the protrusion of said pressure-contacting annular body between said lever loading part and lever supporting part; which is slidably disposed, and provided 20 with a pressing button on the rear end side thereof; and which, with the pressing operation of the pressing button, pushes up the protrusion on one side of said pressure-contacting annular body against the resilience of the coil spring for bringing the pressure-contacting annular body into the horizontal state to eliminate the bulging of one side and the other side thereof toward the circumference side of the second pole and thereby to bring the 25 pole pressure-contacting/releasing part into the second pole releasing state, while, the pressing operation thereof being canceled, bringing the pressure-contacting annular body into an inclined state under the resilience of the coil spring to cause one side and the other side thereof to bulge toward the circumference side of the second pole and thereby to bring the pole pressure-contacting/releasing part into the second pole pressure-contacted 30 state.
5. A telescopic prop-up pole device, comprising: a cylindrical or round-bar shaped first pole; a cylindrical or round-bar shaped second pole a part of which is drawably inserted into this first pole in the lengthwise direction, while being protruded; 27 a first butting body which is disposed at the protruding end of said first pole and a second butting body which is disposed at the protruding end of said second pole to be elasticly pressure-contacted with a butted surface; and a telescoping adjustment body which is disposed over one end of said first pole s and a part of the second pole extending outward from this one end, the telescoping adjustment body including: an upper cylindrical body which is hollow and cylindrical; through which the second pole penetrates; and which has a lever loading part protruded on one side; a lower cylindrical body which is hollow and cylindrical; to which the upper end 1o side of the first pole is integrally loaded to be supported thereby; on one side of which a lever supporting part which is jointed to the lever loading part is protruded; which is provided with an inclined part on the top thereof; and the circumference part of which is integrally jointed to the bottom circumference part of said upper cylindrical body; a pole pressure-contacting/releasing part which has a pressure-contacting annular 15 body with a protrusion on one side thereof, being disposed inclined on the inclined part of said lower cylindrical body, and a coil spring providing resilience to the lower cylindrical body side for this pressure-contacting annular body; and an operation lever of pushbutton type the pushing-up piece of which at the tip thereof is engaged with the protrusion of said pressure-contacting annular body between 20 said lever loading part and lever supporting part; which is slidably disposed, and provided with a pressing button on the rear end side thereof; and which, with the pressing operation of the pressing button, pushes up the protrusion on one side of said pressure-contacting annular body against the resilience of the coil spring for bringing the pressure-contacting annular body into the horizontal state to eliminate the bulging of one side and the other 25 side thereof toward the circumference side of the second pole and thereby to bring the pole pressure-contacting/releasing part into the second pole releasing state, while, with the pressing operation thereof being canceled, bringing the pressure-contacting annular body into an inclined state under the resilience of the coil spring to cause one side and the other side thereof to bulge toward the circumference side of the second pole and thereby 30 to bring the pole pressure-contacting/releasing part into the second pole pressure contacted state.
6. A telescopic prop-up pole device, comprising: a cylindrical or round-bar shaped first pole; a cylindrical or round-bar shaped second pole a part of which is drawably 35 inserted into this first pole in the lengthwise direction, while being protruded; 28 a first butting body which is disposed at the protruding end of said first pole and a second butting body which is disposed at the protruding end of said second pole to be elasticly pressure-contacted with a butted surface; a telescoping adjustment body which is disposed over one end of said first pole 5 and a part of the second pole extending outward from this one end, the telescoping adjustment body including: an upper cylindrical body which is hollow and cylindrical; through which the second pole penetrates; and which has a lever loading part protruded on one side; a lower cylindrical body which is hollow and cylindrical; to which the upper end 1o side of the first pole is integrally loaded to be supported thereby; on one side of which a lever supporting part which is jointed to the lever loading part is protruded; which is provided with an inclined part on the top thereof; and the circumference part of which is integrally jointed to the bottom circumference part of said upper cylindrical body; a pole pressure-contacting/releasing part which has a pressure-contacting annular is body with a protrusion on one side thereof, being disposed inclined on the inclined part of said lower cylindrical body, and a coil spring providing resilience to the lower cylindrical body side for this pressure-contacting annular body; and an operation lever of pushbutton type the pushing-up piece of which at the tip thereof is engaged with the protrusion of said pressure-contacting annular body between 20 said lever loading part and lever supporting part; which is slidably disposed, and provided with a pressing button on the rear end side thereof; and which, with a pressing operation of the pressing button, pushes up the protrusion on one side of said pressure-contacting annular body against the resilience of the coil spring for bringing the pressure-contacting annular body into the horizontal state to eliminate the bulging of one side and the other 25 side thereof toward the circumference side of the second pole and thereby to bring the pole pressure-contacting/releasing part into the second pole releasing state, while, with the pressing operation thereof being canceled, bringing the pressure-contacting annular body into an inclined state under the resilience of the coil spring to cause one side and the other side thereof to bulge toward the circumference side of the second pole and thereby 30 to bring the pole pressure-contacting/releasing part into the second pole pressure contacted state; and any desired number of hooks for hanging clothes and the like that are fitted to said first pole or second pole. 29
7. A telescopic prop-up pole device substantially as hereinbefore described with reference to Figures 1 to 10 of the accompanying drawings. Dated 21 May, 2010 Dreamware Inc. 5 Patent Attorneys for the Applicant/Nominated Person SPRUSON & FERGUSON
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP2009003797U JP3152857U (en) | 2009-06-05 | 2009-06-05 | Telescopic tension pole device |
JP2009-003797 | 2009-06-05 |
Publications (1)
Publication Number | Publication Date |
---|---|
AU2010202094A1 true AU2010202094A1 (en) | 2010-12-23 |
Family
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
AU2010202094A Abandoned AU2010202094A1 (en) | 2009-06-05 | 2010-05-24 | Telescopic prop-up pole device |
Country Status (6)
Country | Link |
---|---|
US (1) | US20100308196A1 (en) |
JP (1) | JP3152857U (en) |
CN (1) | CN201794870U (en) |
AU (1) | AU2010202094A1 (en) |
SG (1) | SG166755A1 (en) |
TW (1) | TWM398385U (en) |
Families Citing this family (14)
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US8113479B1 (en) * | 2008-12-16 | 2012-02-14 | O'connell Timothy E | Telescoping stabilization system comprising a reinforced telescoping member |
US20120068036A1 (en) * | 2010-09-17 | 2012-03-22 | Cerezo Lotina Jose Luis | Pressure-applying telescopic spacer |
US8544392B2 (en) * | 2011-02-04 | 2013-10-01 | Jack Wynn Fields | Releasable engagement apparatus |
CN102384138A (en) * | 2011-10-20 | 2012-03-21 | 珠海宜心家居有限公司 | Article hanging device |
US20140263915A1 (en) * | 2013-03-12 | 2014-09-18 | Robert Henry Bernacki | Rapid Deploy Manually Operated Extendible Strut |
CN105605052A (en) * | 2016-04-01 | 2016-05-25 | 江阴市友邦家居用品有限公司 | Laundry rack telescopic link spring lock |
US11345052B1 (en) * | 2017-10-06 | 2022-05-31 | Amazon Technologies, Inc. | Extensible mast device |
US11098493B2 (en) * | 2019-07-12 | 2021-08-24 | Charles J. Mackarvich | Compression post with retainer clip |
US11208819B2 (en) * | 2019-07-12 | 2021-12-28 | Charles J. Mackarvich | Compression post with visual indication system |
CN110454473B (en) * | 2019-07-30 | 2024-04-09 | 深圳市量道科技有限公司 | Carbon fiber telescopic centering rod |
CN112998409A (en) * | 2021-03-11 | 2021-06-22 | 东北师范大学人文学院 | Lifting type display rack for art teaching and control method thereof |
CN113727576B (en) * | 2021-07-22 | 2023-04-21 | 苏州浪潮智能科技有限公司 | Telescopic press nail capable of being positioned |
CN114412233B (en) * | 2022-02-21 | 2023-11-17 | 山西天与建设集团有限公司 | Auxiliary supporting device for building construction |
CN117306513B (en) * | 2023-09-26 | 2024-04-09 | 广州公路工程集团有限公司 | Non-directional supporting method and device for road bridge emergency construction |
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US1581463A (en) * | 1924-02-14 | 1926-04-20 | Walter C Moors | Clothes-drying rack |
CA1054477A (en) * | 1976-07-09 | 1979-05-15 | William E. Victor | Arctic tent pole |
US5056753A (en) * | 1989-03-07 | 1991-10-15 | Lunau Kevin R | Safety support structure |
US5154449A (en) * | 1991-02-27 | 1992-10-13 | Suei Long Peter L | Extensible rod |
US5924469A (en) * | 1996-10-29 | 1999-07-20 | Zipwall, Llc | Partition mount |
US5826847A (en) * | 1997-06-30 | 1998-10-27 | Warner; Stanley H. | Telescoping pole with quick length adjustment |
US6481912B2 (en) * | 2001-03-29 | 2002-11-19 | Lung Ching Shih | Prop connecting ring |
US6467741B1 (en) * | 2001-03-30 | 2002-10-22 | Lung Ching Shih | Steel prop capable of bearing bidirectional applied force |
US6820842B1 (en) * | 2003-05-01 | 2004-11-23 | Louis Chuang | Telescopic support |
US7717382B2 (en) * | 2006-05-02 | 2010-05-18 | Zipwall, Llc | Accessory mounting systems and mounting methods thereof |
CA2698537A1 (en) * | 2006-09-06 | 2008-03-13 | Vittorio Spera | Modular shoring assembly with length adjustable support |
US20080185111A1 (en) * | 2007-02-02 | 2008-08-07 | Z-Pro International, Inc. | Partition apparatus and system |
US7806381B2 (en) * | 2007-08-21 | 2010-10-05 | Hale Products, Inc. | Stabilization and support strut with secure deployment features |
US7584932B2 (en) * | 2007-10-23 | 2009-09-08 | Lung Ching Shih | Construction prop |
US8196877B2 (en) * | 2008-05-12 | 2012-06-12 | William Gridley | Flexpole support apparatus |
US8117787B2 (en) * | 2008-08-15 | 2012-02-21 | Sei-Won Lee | Construction support |
-
2009
- 2009-06-05 JP JP2009003797U patent/JP3152857U/en not_active Expired - Lifetime
-
2010
- 2010-05-24 AU AU2010202094A patent/AU2010202094A1/en not_active Abandoned
- 2010-05-24 SG SG201003608-5A patent/SG166755A1/en unknown
- 2010-06-01 US US12/791,245 patent/US20100308196A1/en not_active Abandoned
- 2010-06-04 TW TW099210664U patent/TWM398385U/en not_active IP Right Cessation
- 2010-06-04 CN CN201020223188.3U patent/CN201794870U/en not_active Expired - Lifetime
Also Published As
Publication number | Publication date |
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SG166755A1 (en) | 2010-12-29 |
US20100308196A1 (en) | 2010-12-09 |
TWM398385U (en) | 2011-02-21 |
JP3152857U (en) | 2009-08-13 |
CN201794870U (en) | 2011-04-13 |
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