Wall marking device with drying function
Technical Field
The invention relates to a folding device, in particular to a wall marking device with a drying function.
Background
In a construction site, it is sometimes necessary to determine to perform work at a fixed height on a wall, and in order to ensure that work is performed at a fixed height accurately, it is necessary to scribe straight lines on a wall surface in advance, and perform the subsequent work with the lines as references.
The existing wall marking technology is that a pull rope stained with ink is pulled continuously, marks are left on a wall, straight lines are obtained, however, the operation is likely to touch the condition that a large amount of moisture exists on the wall, the pull rope cannot leave the marks on the wall, the sponge is used for absorbing and wiping, the sponge is screwed manually, the moisture is extruded out, the operation is troublesome and labor-consuming, the two hands of a user are easily dirtied, one end of the pull rope is fixed on a specific object, the condition that no object can be bound can be touched, the operation is inconvenient, and the marking height cannot be adjusted according to requirements.
Therefore, the wall marking device with the drying function needs to be designed, the wall marking is realized through simple operation, the water on the wall is automatically absorbed and extruded out, the water on the wall is completely absorbed and wiped, one end of the pull rope is conveniently fixed, and the marking height is easily adjusted.
Disclosure of Invention
Aiming at the defects of the prior art, the invention provides the wall marking device which is simple in operation, can realize wall marking, automatically absorb and extrude water on the wall, ensure that the water on the wall is completely absorbed and wiped, conveniently fix one end of a pull rope and easily adjust the marking height and has a drying function.
The purpose of the invention can be achieved by adopting the following technical scheme:
in a first aspect, a wall marking device with drying function comprises: the roller wheels are rotatably connected to one side of the lower part of the shell, and the roller wheels are symmetrically and uniformly rotatably connected to the other side of the lower part of the shell; one side of the shell of the pay-off mechanism is provided with the pay-off mechanism; the pull rope is arranged on the pay-off mechanism; the ink soaking component is arranged on one side inside the shell.
Further, paying out machine constructs including: one side of the shell is connected with the mounting block; the two sides of the lower part of the mounting block are connected with the fixing plates, and the lower parts of the fixing plates are connected with the shell; the middle part of the mounting block is rotatably connected with a rotating shaft, the lower part of the rotating shaft is connected with a pull rope, the pull rope is wound on the rotating shaft, and one end of the pull rope penetrates through one side of the shell; the first clockwork spring is connected between the rotating shaft and the mounting block.
Further, the ink dipping component comprises: the ink box is connected with one side of the shell; the cover plate is rotatably connected to one side of the upper part of the ink box; the torsional spring is symmetrically connected between the cover plate and the ink box; the ink box comprises a first sponge, a first sponge is connected to the lower side inside the ink box, and a pull rope is connected with the ink box and the first sponge in a sliding mode.
Further, still including dry subassembly, dry subassembly includes: the two sides of the middle part in the shell are connected with supporting blocks; the inner sides of the supporting blocks are rotatably connected with the rotating shafts; the inner sides of the rotating shafts are connected with the fixed disc; the second sponge is connected between the fixed discs; the middle part of the rotating shaft at one side is connected with a friction wheel; and a second spring is connected between the rotating shaft at one side and the supporting block.
Further, still including extrusion subassembly, extrusion subassembly includes: one side of the middle part in the shell is connected with a supporting block; the inner side of the support block is rotatably connected with a rotating rod; the middle part of the rotating rod and one side of the roller transmission shaft at one side are both connected with belt wheels; the belt is connected between the belt wheels; a gear-lacking part is connected to one side of the rotating rod; one side of the rotating shaft of the first gear is connected with the first gear, and the first gear is matched with the gear lacking.
Further, still including supplementary subassembly, supplementary subassembly includes: the middle of one side of the inner lower part of the shell is connected with a supporting rod; the upper part of the support rod is connected with a connecting rod in a sliding way; the reset spring is connected between the connecting rod and the supporting rod and sleeved on the connecting rod; one side of the connecting rod is connected with a rack which is meshed with the first gear; one side of the connecting rod is connected with a third sponge; and one side of the lower part of the shell is connected with a stop lever, and the stop lever is matched with the third sponge.
Furthermore, still including flexible subassembly, flexible subassembly sets up in stay cord one side.
Further, the telescopic assembly comprises: one end of the pull rope is connected with the guide block; the middle part of the guide block is connected with a screw through threads; the lower side of the screw is rotatably connected with the fixed seat; the knob is connected with the upper side of the screw rod.
The invention has the advantages that: (1) according to the invention, the idler wheel rotates to finally drive the gear lacking to rotate, the gear lacking is matched with the first gear to drive the front side of the second sponge to rotate, and under the action of the friction wheel, the rear side of the second sponge cannot rotate, namely the second sponge is twisted, so that the effects of conveniently absorbing water on a wall and automatically extruding the water are achieved, and the marking is prevented from being influenced; (2) according to the invention, the rack, the connecting rod and the third sponge are driven to move leftwards through the rotation of the first gear, and the third sponge is extruded under the action of the stop lever to extrude moisture, so that the effects of comprehensively absorbing moisture on a wall and extruding the moisture are achieved; (3) according to the invention, the left end of the pull rope is fixed by stabilizing the fixing seat, and when the scribing height needs to be adjusted, the knob and the screw rod are rotated to drive the cutter block and the pull rope to move up and down, so that the effects of conveniently fixing one end of the pull rope to finish scribing and easily adjusting the scribing height are achieved.
Drawings
Fig. 1 is a schematic perspective view of a first embodiment of the present invention.
Fig. 2 is a schematic perspective view of a second embodiment of the present invention.
Fig. 3 is a third perspective view of the present invention.
Fig. 4 is a schematic perspective view of the pay-off mechanism of the present invention.
Fig. 5 is a schematic perspective view of the ink immersion mechanism of the present invention.
Fig. 6 is a schematic perspective view of the drying assembly of the present invention.
FIG. 7 is a perspective view of the extrusion assembly of the present invention.
Fig. 8 is a perspective view of the auxiliary assembly of the present invention.
Fig. 9 is a perspective view of the telescopic assembly of the present invention.
Part names and serial numbers in the figure: 1_ housing, 2_ roller, 3_ rope, 4_ pay-off mechanism, 40_ mounting block, 41_ fixing plate, 42_ rotating shaft, 43_ first clockwork spring, 5_ ink immersion component, 50_ ink box, 51_ cover plate, 52_ torsion spring, 53_ first sponge, 6_ drying component, 60_ supporting block, 61_ rotating shaft, 62_ fixing plate, 63_ second sponge, 64_ friction wheel, 65_ second clockwork spring, 7_ extrusion component, 70_ belt wheel, 71_ belt, 72_ support block, 73_ rotating rod, 74_ missing gear, 75_ first gear, 8_ auxiliary component, 80_ supporting rod, 81_ rack, 82_ connecting rod, 83_ third sponge, 84_ return spring, 85_ stop rod, 9_ telescopic component, 90_ fixing seat, 91_ knob, 92_ screw rod, 93_ guide block.
Detailed Description
The technical scheme of the invention is further explained by combining the attached drawings.
Example 1
As shown in fig. 1-5, the embodiment discloses a wall marking device with drying function, including shell 1, gyro wheel 2, stay cord 3, paying out machine 4 and soak black subassembly 5, shell 1 lower part left side rotary type is connected with gyro wheel 2, and shell 1 lower part right side front and back symmetry is equal rotary type and is connected with gyro wheel 2, and shell 1 right side is equipped with paying out machine 4, is equipped with stay cord 3 on the paying out machine 4, and the inside left side of shell 1 is equipped with soaks black subassembly 5.
Paying out machine constructs 4 including installation piece 40, fixed plate 41, axis of rotation 42 and first clockwork spring 43, 1 right side of shell is connected with installation piece 40, fixed plate 41 is all connected to the left and right sides in installation piece 40 lower part, fixed plate 41 lower part all is connected with shell 1, installation piece 40 middle part rotary type is connected with axis of rotation 42, axis of rotation 42 sub-unit connection is connected with stay cord 3, stay cord 3 winding is on axis of rotation 42, the shell 1 left side is passed to 3 left ends of stay cord, be connected with first clockwork spring 43 between axis of rotation 42 and the installation piece 40.
The ink immersion component 5 comprises an ink box 50, a cover plate 51, a torsion spring 52 and a first sponge 53, the ink box 50 is connected to the left side of the shell 1, the cover plate 51 is rotatably connected to the right side of the upper portion of the ink box 50, the torsion springs 52 are symmetrically connected between the cover plate 51 and the ink box 50 in a front-back mode, the first sponge 53 is connected to the lower side of the inner portion of the ink box 50, and the pull rope 3 is connected with the ink box 50 and the first sponge 53 in a sliding mode.
When a user needs to mark a wall, firstly, the cover plate 51 is opened by clockwise rotation, the torsion spring 52 deforms, ink can fall into the ink box 50, the first sponge 53 absorbs the ink, the cover plate 51 is loosened, the cover plate 51 is pushed to rotate anticlockwise to cover the ink box 50 under the action of the torsion spring 52, the device is moved to the wall, after the left end of the pull rope 3 is fixed on a specific object, the pushing device moves rightwards, the roller 2 rotates, the pull rope 3 is continuously pulled out to drive the rotating shaft 42 to rotate, the first spring 43 deforms, the pull rope 3 slides through the first sponge 53 to be stained with the ink, then the pull rope 3 moves to contact the wall, marks are left on the wall, marking is completed, after the marking on the wall is completed, the left end of the pull rope 3 is loosened from the specific object, and the rotating shaft 42 is pushed to reversely rotate under the action of the first spring 43, thereby pulling the pull rope 3 to move rightwards and rolling the pull rope 3 on the rotating shaft 42, and the moving device is far away from the wall, thereby achieving the effect of conveniently marking the wall.
Example 2
As shown in fig. 1 to 3 and 6 to 9, in some embodiments, the drying device 6 further includes a drying assembly 6, the drying assembly 6 includes support blocks 60, a rotating shaft 61, a fixed disc 62, a second sponge 63, a friction wheel 64 and a second spring 65, the support blocks 60 are connected to the front side and the rear side of the middle portion in the housing 1, the rotating shaft 61 is rotatably connected to the inner sides of the support blocks 60, the fixed disc 62 is connected to the inner side of the rotating shaft 61, the second sponge 63 is connected between the fixed discs 62, the friction wheel 64 is connected to the middle portion of the rear rotating shaft 61, and the second spring 65 is connected between the front rotating shaft 61 and the support blocks 60.
Still including extrusion subassembly 7, extrusion subassembly 7 is including band pulley 70, belt 71, prop up piece 72, bull stick 73, lack gear 74 and first gear 75, the middle part front side is connected with a piece 72 in shell 1, prop up the inboard rotary type of piece 72 and be connected with bull stick 73, bull stick 73 middle part and the 2 transmission shaft front sides of right side gyro wheel all are connected with band pulley 70, be connected with belt 71 between the band pulley 70, bull stick 73 rear side is connected and is lacked gear 74 in addition, rotation axis 61 front side is connected with first gear 75, first gear 75 and lacked gear 74 mutually support.
When the roller 2 rotates, the driving belt wheel 70 and the belt 71 rotate, so as to drive the rotating rod 73 and the gear-lacking wheel 74 to rotate, when the gear-lacking wheel 74 rotates to be not meshed with the first gear 75, the second sponge 63 is driven to move rightwards as it is, so as to absorb and wipe off water stains on the wall, when the gear-lacking wheel 74 rotates to be meshed with the first gear 75, the first gear 75 is driven to rotate, the front side rotating shaft 61, the fixed disc 62 and the front side of the second sponge 63 are driven to rotate, the second spring 65 deforms, and when the friction wheel 64 moves on the wall, under the action of friction force, the friction wheel 64, the rear side rotating shaft 61, the fixed disc 62 and the rear side of the second sponge 63 cannot rotate, namely, a state of twisting the second sponge 63 is formed, moisture in the second sponge 63 is squeezed out, then the gear-lacking wheel 74 rotates again to be not meshed with the first gear 75, and the first gear 75 stops rotating, under the effect of second clockwork spring 65, promote the front side rotation axis 61, fixed disk 62 and the reverse rotation of second sponge 63 front side, resume to original state, so reciprocal, reach the effect that conveniently absorbs moisture on the wall and extrude moisture automatically, avoid influencing the marking off.
Still including auxiliary assembly 8, auxiliary assembly 8 is including bracing piece 80, rack 81, connecting rod 82, third sponge 83, reset spring 84 and pin 85, lower part front side intermediate junction has bracing piece 80 in shell 1, bracing piece 80 upper portion slidingtype is connected with connecting rod 82, be connected with reset spring 84 between connecting rod 82 and the bracing piece 80, reset spring 84 overlaps on connecting rod 82, connecting rod 82 right side is connected with rack 81, rack 81 and first gear 75 intermeshing, connecting rod 82 left part rear side is connected with third sponge 83, shell 1 lower part left side is connected with pin 85, pin 85 and third sponge 83 mutually support.
When the device integrally moves rightwards, the third sponge 83 is driven to move rightwards to absorb moisture on the wall surface, when the first gear 75 rotates, the rack 81 is driven to move leftwards, the connecting rod 82 is driven to move leftwards, the reset spring 84 is compressed to drive the third sponge 83 to move leftwards, under the action of the stop lever 85, the third sponge 83 is extruded, moisture in the third sponge 83 is extruded, when the first gear 75 stops rotating, the connecting rod 82, the third sponge 83 and the rack 81 are pushed to move rightwards under the action of the reset spring 84 to restore to the original state, and the effect of comprehensively absorbing moisture on the wall and extruding is guaranteed.
Still including flexible subassembly 9, flexible subassembly 9 is connected with guide block 93 including fixing base 90, knob 91, screw rod 92 and guide block 93, 3 left ends of stay cord, and guide block 93 middle part has screw rod 92 through threaded connection, and screw rod 92 downside rotary type is connected with fixing base 90, and the screw rod 92 upside is connected with knob 91.
Fix fixing base 90, be about to 3 left ends of stay cord fixed, can the thrust unit move rightwards, pull out stay cord 3, accomplish and rule, need adjust the height of ruling, rotate knob 91, drive screw rod 92 and rotate to drive guide block 93 and stay cord 3 and reciprocate, make stay cord 3 for the height that the wall was rule can be adjusted, reach the effect of conveniently fixing 3 one ends of stay cord and accomplish to rule and easily adjust the height of ruling.
The above examples are only intended to illustrate the technical solution of the present invention, but not to limit it; although the present invention has been described in detail with reference to the foregoing embodiments, it will be understood by those of ordinary skill in the art that: the technical solutions described in the foregoing embodiments may still be modified, or some technical features may be equivalently replaced; and such modifications or substitutions do not depart from the spirit and scope of the corresponding technical solutions of the embodiments of the present invention.