US733181A - Flexible shafting. - Google Patents
Flexible shafting. Download PDFInfo
- Publication number
- US733181A US733181A US13361602A US1902133616A US733181A US 733181 A US733181 A US 733181A US 13361602 A US13361602 A US 13361602A US 1902133616 A US1902133616 A US 1902133616A US 733181 A US733181 A US 733181A
- Authority
- US
- United States
- Prior art keywords
- lugs
- flexible
- core
- sector
- sections
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Expired - Lifetime
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Classifications
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F16—ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
- F16C—SHAFTS; FLEXIBLE SHAFTS; ELEMENTS OR CRANKSHAFT MECHANISMS; ROTARY BODIES OTHER THAN GEARING ELEMENTS; BEARINGS
- F16C1/00—Flexible shafts; Mechanical means for transmitting movement in a flexible sheathing
- F16C1/02—Flexible shafts; Mechanical means for transmitting movement in a flexible sheathing for conveying rotary movements
- F16C1/04—Articulated shafts
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F16—ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
- F16C—SHAFTS; FLEXIBLE SHAFTS; ELEMENTS OR CRANKSHAFT MECHANISMS; ROTARY BODIES OTHER THAN GEARING ELEMENTS; BEARINGS
- F16C1/00—Flexible shafts; Mechanical means for transmitting movement in a flexible sheathing
- F16C1/02—Flexible shafts; Mechanical means for transmitting movement in a flexible sheathing for conveying rotary movements
- F16C1/06—Flexible shafts; Mechanical means for transmitting movement in a flexible sheathing for conveying rotary movements with guiding sheathing, tube or box
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F16—ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
- F16D—COUPLINGS FOR TRANSMITTING ROTATION; CLUTCHES; BRAKES
- F16D3/00—Yielding couplings, i.e. with means permitting movement between the connected parts during the drive
- F16D3/16—Universal joints in which flexibility is produced by means of pivots or sliding or rolling connecting parts
- F16D3/26—Hooke's joints or other joints with an equivalent intermediate member to which each coupling part is pivotally or slidably connected
- F16D3/38—Hooke's joints or other joints with an equivalent intermediate member to which each coupling part is pivotally or slidably connected with a single intermediate member with trunnions or bearings arranged on two axes perpendicular to one another
Definitions
- the invention relates to flexible shafts; and it consists in the novel construction and combinations of parts,as hereinafterset forth.
- the object of the invention is, mainly, to provide for flexible shafts a smooth-running flexible sectional core wherein the sections or links will keep themselves in true position at all times, thus avoiding irregular movements from the central line, which are apt to cause binding through the enlargement of the general diameter-of the core, producing thereby excessive heat and diminishing the effective power.
- the letter a designates one of the sections or link-pieces of the series which constitutes the flexible shaft or core.
- the sections being connected by the transverse pins 1) at their ends, constitute a flexible core, which core is introduced into a flexible casing or sleeve 0, said sleeve not being designed to turn in the working, which is accomplished by the rotation of the flexible core, to which the bit or other tool is attached.
- Each section or link a is similar to the next one and consists of a cylindrical body portion (Z of about one-third the length of the section. Opposite sector-form extension-lugs c project from each end of the body portion in such wise that there is at each end of such body portion a pair of such sector-form lugs having convex exterior faces g coincident with the cylindrical face of the body portion and radial side faces 71 approximating each other to give the sector form in cross-section.
- each lug is slightly rounded in at the end of the lug, or, in other words, the lugs are usually made slightly tapering from the body toward their ends, as indicated at 70, to provide for easy flexure and in order to avoid any angular presentation of the end of the lug outward when the core is flexed.
- the opposite sector-lugs are quadrants or of nearly quadrant extent, and the pair on one end of the section is located at right angles to the pair at the other end of the section with respect to the axis of the section.
- the sector-lugs at each end are centrally separated from each other by a passage, (iudicated at m,) and between the radial faces of the lugs are made quadrant intervals, whereby are provided the quadrant V-form seats 25, which engage the lugs of the adjacent links or sections.
- the lugs are provided at their ends with radial apertures o, in which are placed the transverse diametric pins 1), spanning the passages m of the sections and serving to hold the sections of the core together.
- the lugs are usually made slightly tapering from the body toward their ends to provide for easy flexure and to avoid angular projections when the core is flexed.
- the flexible-shaft link consisting of the cylindrical body portion, having at each end, opposite sector-form quadrant-lugs at right angles with the similar lugs of the opposite end, said lugs being centrallyseparated, and transverse connection-pins spanning such separations, substantially as specified.
- a flexible core consisting of a-series of links having cylindrical body portions and terminal sector-form quadrant-lugs, engaging each other by the radial inner faces of and connecting the sections, substantially as I0 said quadrant-lugs, and transverse diametric specified.
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- Engineering & Computer Science (AREA)
- General Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Health & Medical Sciences (AREA)
- Oral & Maxillofacial Surgery (AREA)
- Tires In General (AREA)
Description
PATBHTED JULY 7, 1903.
W. D. FORSYTH. FLEXIBLE SHAFTING.
APPLICATION FILED D110. 2, 1902.
m: naRms PETERS 5a., Pnorom'nu. wAs-mms'rom D. c.
UNITED STATES Patented July 7, 1903.
PATENT OFFICE.
FLEXIBLE SHAFTlNG.
SPECIFICATION forming part of Letters Patent N 0. 733,181, dated July '7, 1903. Application filed December 2, 1902. Serial No. 133,616. (No model) To wZZ whom it may concern:
Be it known that I, lVILBER D. FORSYTH, a citizen of the United States, and a resident of Pittsburg, in the county of Allegheny and State of Pennsylvania, have made a certain new and useful Invention in Flexible Shafting; and I declare the following to be a full, clear, and exact description of the same, such as will enable others skilled in the art to which it appertains to make and use the invention, reference beiughad totheaccompanyingdrawings, and to letters of reference marked thereon, which form a part of this specification.
The invention relates to flexible shafts; and it consists in the novel construction and combinations of parts,as hereinafterset forth.
The object of the invention is, mainly, to provide for flexible shafts a smooth-running flexible sectional core wherein the sections or links will keep themselves in true position at all times, thus avoiding irregular movements from the central line, which are apt to cause binding through the enlargement of the general diameter-of the core, producing thereby excessive heat and diminishing the effective power.
In the accompanying drawings the letter a designates one of the sections or link-pieces of the series which constitutes the flexible shaft or core. As usually employed the sections, being connected by the transverse pins 1) at their ends, constitute a flexible core, which core is introduced into a flexible casing or sleeve 0, said sleeve not being designed to turn in the working, which is accomplished by the rotation of the flexible core, to which the bit or other tool is attached.
Each section or link a is similar to the next one and consists of a cylindrical body portion (Z of about one-third the length of the section. Opposite sector-form extension-lugs c project from each end of the body portion in such wise that there is at each end of such body portion a pair of such sector-form lugs having convex exterior faces g coincident with the cylindrical face of the body portion and radial side faces 71 approximating each other to give the sector form in cross-section. The exterior curved face of each lug is slightly rounded in at the end of the lug, or, in other words, the lugs are usually made slightly tapering from the body toward their ends, as indicated at 70, to provide for easy flexure and in order to avoid any angular presentation of the end of the lug outward when the core is flexed. The opposite sector-lugs are quadrants or of nearly quadrant extent, and the pair on one end of the section is located at right angles to the pair at the other end of the section with respect to the axis of the section.
The sector-lugs at each end are centrally separated from each other by a passage, (iudicated at m,) and between the radial faces of the lugs are made quadrant intervals, whereby are provided the quadrant V-form seats 25, which engage the lugs of the adjacent links or sections. The lugs are provided at their ends with radial apertures o, in which are placed the transverse diametric pins 1), spanning the passages m of the sections and serving to hold the sections of the core together. The lugs are usually made slightly tapering from the body toward their ends to provide for easy flexure and to avoid angular projections when the core is flexed. Sufficient play is given between the crossed connecting-pins to allow for a fiexure of any required radius. This core is designed to be very strong, because its sector-form lugs have their greatest mass at their outer portions, where there is most leverage, and as their engaging sides are radial they present them? selves in suitable position for transmitting pressure of rotation without slip. The sector form also allows freedom of flexure in the planes of the quadrant radial faces, as well as in the planes of the pins and intermediate planes.
Having described this invention, what I claim, and desire to secure by Letters Patent, 1s
1. The flexible-shaft link consisting of the cylindrical body portion, having at each end, opposite sector-form quadrant-lugs at right angles with the similar lugs of the opposite end, said lugs being centrallyseparated, and transverse connection-pins spanning such separations, substantially as specified.
2. A flexible core consisting of a-series of links having cylindrical body portions and terminal sector-form quadrant-lugs, engaging each other by the radial inner faces of and connecting the sections, substantially as I0 said quadrant-lugs, and transverse diametric specified.
connecting-pins, substantially as specified. In testimony whereof I afiix my signature 3. The combination with a flexible-shaft in presence of two Witnesses. 5 casing of the series of cylindrical sections having the sector-form opposite end lugs pro- WILBER 1 FORSYTH' vided with inward-rounded ends, and cen- Witnesses: trally separated, and the transverse diametric A. FRASER LEGGATE,
pins passing through the ends of said lugs, S. J. CROSS.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
US13361602A US733181A (en) | 1902-12-02 | 1902-12-02 | Flexible shafting. |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
US13361602A US733181A (en) | 1902-12-02 | 1902-12-02 | Flexible shafting. |
Publications (1)
Publication Number | Publication Date |
---|---|
US733181A true US733181A (en) | 1903-07-07 |
Family
ID=2801689
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
US13361602A Expired - Lifetime US733181A (en) | 1902-12-02 | 1902-12-02 | Flexible shafting. |
Country Status (1)
Country | Link |
---|---|
US (1) | US733181A (en) |
Cited By (10)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US2460524A (en) * | 1943-12-28 | 1949-02-01 | Louis H Morin | Pintle chain |
US2973223A (en) * | 1957-10-28 | 1961-02-28 | Garvin L Whatley | Protector for flexible member linking two relatively movable members |
US3224222A (en) * | 1963-01-09 | 1965-12-21 | Sr Lawrence F Palmer | Universal joint |
US4896555A (en) * | 1988-10-21 | 1990-01-30 | The Babcock & Wilcox Company | Serpentine tube inspection positioning spine |
US4914974A (en) * | 1988-10-21 | 1990-04-10 | The Babcock & Wilcox Company | Serpentine tube inspection positioning spine |
US4914975A (en) * | 1988-10-21 | 1990-04-10 | The Babcock & Wilcox Company | Serpentine tube inspection positioning spine |
US4914973A (en) * | 1988-10-21 | 1990-04-10 | The Babcock & Wilcox Company | Serpentine tube inspection positioning spine |
US20060051918A1 (en) * | 2004-08-27 | 2006-03-09 | Busch Brett W | Methods of forming a plurality of capacitors |
US8402734B1 (en) * | 2011-09-29 | 2013-03-26 | The United States Of America As Represented By The Secretary Of The Navy | Linkage assembly |
US20220403893A1 (en) * | 2021-06-22 | 2022-12-22 | JSI Equipment Solutions LLC | Flexible coupling for a drive train |
-
1902
- 1902-12-02 US US13361602A patent/US733181A/en not_active Expired - Lifetime
Cited By (11)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US2460524A (en) * | 1943-12-28 | 1949-02-01 | Louis H Morin | Pintle chain |
US2973223A (en) * | 1957-10-28 | 1961-02-28 | Garvin L Whatley | Protector for flexible member linking two relatively movable members |
US3224222A (en) * | 1963-01-09 | 1965-12-21 | Sr Lawrence F Palmer | Universal joint |
US4896555A (en) * | 1988-10-21 | 1990-01-30 | The Babcock & Wilcox Company | Serpentine tube inspection positioning spine |
US4914974A (en) * | 1988-10-21 | 1990-04-10 | The Babcock & Wilcox Company | Serpentine tube inspection positioning spine |
US4914975A (en) * | 1988-10-21 | 1990-04-10 | The Babcock & Wilcox Company | Serpentine tube inspection positioning spine |
US4914973A (en) * | 1988-10-21 | 1990-04-10 | The Babcock & Wilcox Company | Serpentine tube inspection positioning spine |
US20060051918A1 (en) * | 2004-08-27 | 2006-03-09 | Busch Brett W | Methods of forming a plurality of capacitors |
US8402734B1 (en) * | 2011-09-29 | 2013-03-26 | The United States Of America As Represented By The Secretary Of The Navy | Linkage assembly |
US20130081372A1 (en) * | 2011-09-29 | 2013-04-04 | Nathan Johnnie | Linkage assembly |
US20220403893A1 (en) * | 2021-06-22 | 2022-12-22 | JSI Equipment Solutions LLC | Flexible coupling for a drive train |
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