US170688A - Improvement in tire-upsetters - Google Patents
Improvement in tire-upsetters Download PDFInfo
- Publication number
- US170688A US170688A US170688DA US170688A US 170688 A US170688 A US 170688A US 170688D A US170688D A US 170688DA US 170688 A US170688 A US 170688A
- Authority
- US
- United States
- Prior art keywords
- lever
- jaw
- anvil
- tire
- jaws
- 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
Links
- 238000010276 construction Methods 0.000 description 5
- 210000005069 ears Anatomy 0.000 description 2
- 239000002184 metal Substances 0.000 description 2
- 229910052751 metal Inorganic materials 0.000 description 2
- 229910001018 Cast iron Inorganic materials 0.000 description 1
- 238000005452 bending Methods 0.000 description 1
- 238000006073 displacement reaction Methods 0.000 description 1
- 230000000284 resting effect Effects 0.000 description 1
Images
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23D—PLANING; SLOTTING; SHEARING; BROACHING; SAWING; FILING; SCRAPING; LIKE OPERATIONS FOR WORKING METAL BY REMOVING MATERIAL, NOT OTHERWISE PROVIDED FOR
- B23D51/00—Sawing machines or sawing devices working with straight blades, characterised only by constructional features of particular parts; Carrying or attaching means for tools, covered by this subclass, which are connected to a carrier at both ends
- B23D51/04—Sawing machines or sawing devices working with straight blades, characterised only by constructional features of particular parts; Carrying or attaching means for tools, covered by this subclass, which are connected to a carrier at both ends of devices for feeding, positioning, clamping, or rotating work
Definitions
- This invention is in the nature of an improvement in the machinefor which Letters Patent numbered 148,385 were issued to me the 10th day of March, 187 4; and the invention consists in operating the clamping-jaws by means of three levers connected together, but Without a common fulcrum, so as to permit the clamping of articles of varying width; also, in the peculiar construction of the clamping-blocks; also, in an attachment for preventing the springing up of tires, &c., being upset; also, in the construction and arrangement of the lever or levers for actuating the moving or pressure jaw. Finally, the invention consists in the construction of the machine as a whole.
- the letter A represents a standard of suitable construction, to which may be bolted a cast-iron frame, B, formed with which is the anvil 0, having a somewhat concave face. Straps or bars D, of wrought or other metal, are bolted to the frame B at its lower end, and form bearings for the fulcrum-pin of a lever, E.
- This lever carries the moving jaw F,which is made with it, the two being cast in one piece.
- This lever I prefer to make with a brace, a, Fig. 7, in order to lessen the liability to fracouter edges of both the brace and lever, or on the edge of either, so as to increase the strength of the lever.
- a spring, G is interposed between the frame B and lever E, so as to keep the moving jaw extended.
- the upper end of the lever is made with a rounded projecting lip, I), over which fits a hook-shaped lip, c, on the 'operatinglever H.
- This lever is hung on a pivot secured in the outer ends of two bars, J ,which are bolted, at their other ends, loosely to the frame B, so that they may rise and fall with the lever H as it is moved in operating the jaw F.
- These bars are guided in their motion by a slotted plate or a fork, d, secured to ature in the hooks, and not on the ends-of the hooks, whereby there is less liability of bending the hooks, and the jaw is made to work smoothly.
- L L are steelfaced clamping-jaws, secured to pintles on the anvil and jaw F, respectively.
- These jaws are connected for operation by levers M ff.
- the main lever M is fulcrumless, and from near its center the lever or connecting-rod f extends to a handle on the jaw L.
- the lever f extends from the end of leverM to jaw L.
- On the end of lever M is a stop, g, for arresting the movement of the levers.
- Each of the jaws L L is provided with a handle for use as may be necessary.
- each jaw By connecting these jaws by thissystem of levers having no fixed fulcrum, each jaw can be independently operated, so that articles having different widths can be as securely clamped as those of uniform width throughout. It will, of course, be understood that when one jaw has taken hold of the article to be upset the other jaw will be also brought to bear upon it with the same amount of friction, but not necessarily in the same line.
- I make backs h h, and the edges of said ears I form with dovetail grooves 11 t, with a portion cut out of one groove in each car, at t".
- These grooves receive dovetailed projections on the clamping-blocksj k.
- the blocks j are fillingblocks, and may have only one dovetail projection, and blocks la have serrated faces, and both projections are dovetailed, the cuts 01 being made so that said projections may be fitted in the grooves, slid back, and thus held in place.
- These blocks are made straight on them from springing up.
- I employ a spring-lever, N. See Fig.
- 'lhis lever has a curved bearing-face, l, for contact with the tire, and is held in a recess in the frame B by means of a pintle, n, and pin 0, the pin 0 being removable, so that said lever may be readily detached when necessary.
- the upper end of the lever N rests in an opening in a projection, 0, of the anvil, and against this projection a spring, m, on an arm of the lever rests, so as to keep the lever raised, as in Fig. 1.
- the lever N may be operated by a rod, 12, and treadle r, or a bar or hand-lever, P, Fig. 6, may be employed by resting its point t in a hole in the frame B, and insertin g the hook sin the eye in said levers end,
- I employ a plate, S, set in the anvil by pins and easily removable. This plate is curved to conform to the anvil.
- the bed of the anvil may be leveled by inserting in pin-holes'therein a flat-faced plate, T, Fig. 5, the bottom thereof being curved to fit the anvil.
Landscapes
- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Clamps And Clips (AREA)
Description
- ence indicate like parts in the several figures,
ture; and I also prefer to make a web on the UNITED STATES AEN'I OFFICE.
MATTHIAS soHoU, or FREEHOLD, NEW JERSEY.
IMPROVEMENT IN TIRE-UPSETTERS.
Specification forming part of Letters Patent No. [70,688, dated December 7, 1875; application filed October 30, 1875.
To all whom it may concern:
Be it known that I, MATTHIAS ScHoU, of Freehold, in the county of Monmouth and State of New Jersey, have invented certain new and useful Improvements in Machines for Upsetting Tires &c., whereof the following is a full, clear, and exact description.
This invention is in the nature of an improvement in the machinefor which Letters Patent numbered 148,385 were issued to me the 10th day of March, 187 4; and the invention consists in operating the clamping-jaws by means of three levers connected together, but Without a common fulcrum, so as to permit the clamping of articles of varying width; also, in the peculiar construction of the clamping-blocks; also, in an attachment for preventing the springing up of tires, &c., being upset; also, in the construction and arrangement of the lever or levers for actuating the moving or pressure jaw. Finally, the invention consists in the construction of the machine as a whole.
In the accompanying drawings illustrating my invention, in which similar letters of refer- Figure l is a side elevation; Fig. 2, a top or plan View Figs. 3, 4, 5, 6, 7, and 8, views showing details of construction hereinafter fully specified.
The letter A represents a standard of suitable construction, to which may be bolted a cast-iron frame, B, formed with which is the anvil 0, having a somewhat concave face. Straps or bars D, of wrought or other metal, are bolted to the frame B at its lower end, and form bearings for the fulcrum-pin of a lever, E. This lever carries the moving jaw F,which is made with it, the two being cast in one piece. This lever I prefer to make with a brace, a, Fig. 7, in order to lessen the liability to fracouter edges of both the brace and lever, or on the edge of either, so as to increase the strength of the lever. A spring, G, is interposed between the frame B and lever E, so as to keep the moving jaw extended. The upper end of the lever is made with a rounded projecting lip, I), over which fits a hook-shaped lip, c, on the 'operatinglever H. This lever is hung on a pivot secured in the outer ends of two bars, J ,which are bolted, at their other ends, loosely to the frame B, so that they may rise and fall with the lever H as it is moved in operating the jaw F. These bars are guided in their motion by a slotted plate or a fork, d, secured to ature in the hooks, and not on the ends-of the hooks, whereby there is less liability of bending the hooks, and the jaw is made to work smoothly. These bars K may be confined to the jaw by suitable pins, to prevent displacement. L L are steelfaced clamping-jaws, secured to pintles on the anvil and jaw F, respectively. These jaws are connected for operation by levers M ff. The main lever M is fulcrumless, and from near its center the lever or connecting-rod f extends to a handle on the jaw L. The lever f extends from the end of leverM to jaw L. On the end of lever M is a stop, g, for arresting the movement of the levers. Each of the jaws L L is provided with a handle for use as may be necessary.
By connecting these jaws by thissystem of levers having no fixed fulcrum, each jaw can be independently operated, so that articles having different widths can be as securely clamped as those of uniform width throughout. It will, of course, be understood that when one jaw has taken hold of the article to be upset the other jaw will be also brought to bear upon it with the same amount of friction, but not necessarily in the same line.
Instead of caps on the ears of the anvil and jaw F, I make backs h h, and the edges of said ears I form with dovetail grooves 11 t, with a portion cut out of one groove in each car, at t". These grooves receive dovetailed projections on the clamping-blocksj k. The blocks j are fillingblocks, and may have only one dovetail projection, and blocks la have serrated faces, and both projections are dovetailed, the cuts 01 being made so that said projections may be fitted in the grooves, slid back, and thus held in place. These blocks are made straight on them from springing up. For this purpose I employ a spring-lever, N. See Fig. 4:, where it is shown detached.) 'lhis lever has a curved bearing-face, l, for contact with the tire, and is held in a recess in the frame B by means of a pintle, n, and pin 0, the pin 0 being removable, so that said lever may be readily detached when necessary. The upper end of the lever N rests in an opening in a projection, 0, of the anvil, and against this projection a spring, m, on an arm of the lever rests, so as to keep the lever raised, as in Fig. 1. The lever N may be operated by a rod, 12, and treadle r, or a bar or hand-lever, P, Fig. 6, may be employed by resting its point t in a hole in the frame B, and insertin g the hook sin the eye in said levers end,
and applying properly the necessary force.
In order to prevent the heated metal, when being upset, from extending between the jaw and anvil-an evil of frequent occurrence-I employ a plate, R, secured by a pin in a recess in the anvil, and working in -a groove in the moving jaw, whereby the space between the jaw and anvil is constantly bridged.
To prevent lateral spreading of the article being upset, I employ a plate, S, set in the anvil by pins and easily removable. This plate is curved to conform to the anvil.
If a straight article is to be operated upon, the bed of the anvil may be leveled by inserting in pin-holes'therein a flat-faced plate, T, Fig. 5, the bottom thereof being curved to fit the anvil.
' In Fig. 8 I have shown'means for adjusting the clamping-jaws. On the pintle I place a bushing, 21, through which the hole is made diagonally, the base of said bushing being inclined or wedge-shaped. As shown in Fig. 8, this bushing is so turned and keyed to the pin tle as to bring the jaw in a horizontal plane, whereby the jaw can get a firmer hold on a straight article. By turning the bushing onehalf a revolution thejaw is inclined as in Fig. 1'. Having thus described my invention, what I claim as new, and desire to secure by Letters Patent, is-
1. The independent fulcrumless lever or bar M, stop g, and levers or bars ff, in combiq nation with the clamping-jaws L L, substanpintles on bushings 41, having holes diagonally through them, and provided with wedgeshaped bases, substantially as and for the purpose described.
6. The combination of the frame B, anvil 0, lever E, jaw F, the operating-lever and hangings, clamping-jaws and levers M f f, blocks k, and plate R, substantially as shown and described.
To the above specification of my invention I have signed my name this 30th day of October, 1875.
l M. SOHOU.
Witnesses:
A. O. BRADLEY, WM. H. FINGKEL.
Publications (1)
| Publication Number | Publication Date |
|---|---|
| US170688A true US170688A (en) | 1875-12-07 |
Family
ID=2240095
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| US170688D Expired - Lifetime US170688A (en) | Improvement in tire-upsetters |
Country Status (1)
| Country | Link |
|---|---|
| US (1) | US170688A (en) |
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0
- US US170688D patent/US170688A/en not_active Expired - Lifetime
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