US532251A - Whiffletree - Google Patents
Whiffletree Download PDFInfo
- Publication number
- US532251A US532251A US532251DA US532251A US 532251 A US532251 A US 532251A US 532251D A US532251D A US 532251DA US 532251 A US532251 A US 532251A
- Authority
- US
- United States
- Prior art keywords
- doubletree
- blank
- neck
- steel
- singletree
- 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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- B—PERFORMING OPERATIONS; TRANSPORTING
- B62—LAND VEHICLES FOR TRAVELLING OTHERWISE THAN ON RAILS
- B62C—VEHICLES DRAWN BY ANIMALS
- B62C5/00—Draught assemblies
- B62C5/04—Swingletrees; Mountings thereof; Draught equalisers for a span of draught animals; Mountings for traces
Definitions
- This invention relates to whiftietrees; and it consists in the novel construction and combination of the parts hereinafter fully described and claimed.
- Figure l is a plan view of a doubletree.
- Fig. 2 is an end view of one of its end caps.
- Eig. 3 is a cross-section taken on the line :z: in Fig. l.
- Fig. 4 is a detail view of the steel blank from which the doubletree is formed.
- Fig. 5 is a plan view of a singletree.
- Fig. 6 is an end view of one of its end caps.
- Fig. 7 is a cross-section taken on line y y in Fig. 5.
- Fig. 8 is a detail view of the steel blank from which the singletree is formed.
- Fig. 9 is a plan View of a neck yoke.
- Fig. lO is a cross-section taken on the line ze in Fig. 9.
- Fig. 1l is a detail view of the steel blank from which the neck-yoke is formed.
- a high grade of sheet steel is used, of from one-sixteenth to three thirty-seconds of an inch in thickness.
- This steel plate is rolled and annealed so that the required temper to give it elasticity is attained, and so that the steel plate will bear reheating to a cherry red heat without losing its elasticity.
- the tempered sheet steel is then cut into blanks of the size and shape adapted to be formed into singletrees, doubletrees or neck-yokes as may be required.
- Fig. 4 shows the blankB for a doubletree, and the dotted lines indicate where the blank is subsequently bent.
- the doubletree A is preferably tapered from its center to its ends, and the blank is cut of irregular form so that the doubletree may be of the desired form.
- a lip 2 is formed at each end of the doubletree, for a purpose which will be more fully described hereinafter.
- C is the center clip of the doubletree provided on one side with a hole Vc for the draw bolt, and a loop c on the other side so that it can be attached to a plow or other implement.
- D are the strengthening bands, preferably provided with eyes d for the attachment of stay chains.
- E are the end caps provided with eyesefor the pins e of the clevises E4.
- the end caps also have holes 3 in their ends for receiving the said lips 2.
- the steel blank is heated to a cherry red heat so that its elasticity is not impaired, and while hot it is bent to the form of thetubular doubletree, the longitudinal edges of the blank being brought as near together as possible.
- the clip C, bands D and end caps E are then heated and shrunk onto the tubular doubletree, and are secured by yrivets where necessary.
- the said edges are brought into close contact, and the caps cover the open ends of the doubletree.
- the lips 2 which project through the holes 3 in the caps a're then riveted over thereby firmly securing the caps in position.
- the doubletree thus formed is very light and is possessed of great strength, not only because it is formed of steel,but because the steel is of a temper which renders it elastic, and will not permit it to bend under strains or break under shocks or blows.
- the singletree shown in Figs. 5 to 8 inclusive is made from a blank B in a similar manner to the doubletree, but the singletree A is bent oval in cross-section instead of rectangular.
- the center clip O and the bands D are made to conform to the section of the singletree, and the center clip O is provided with a ring 4 for engaging with the clevis E4 of the doubletree.
- the end caps E of the singletree are round to conform to the ends of the singletree, and the lips 2 and the holes 3 through which they pass are formed upon circular arcs. with hooks 5 instead of clevises.
- the neck-yoke shown in Figs. 9 to ll inclusive is also made from a blank B in a similar manner to the doubletree, but the neck-yoke A is bent round in cross-section throughout its length.
- the center portion of the neck-yoke is cylindrical, and the ends ta-
- the end caps E are provided y per to the end caps E which are exactly the same as those on the singletree A except for being provided with rings 6 instead of hooks 5.
- the center clip C and the bands D are made to conform to the section of the neckyoke.
- the center clip preferably consists of two rings 7 coupled together by longitudinal bars 8 and 9.
- the barS is provided with two hooks 10 and holes ll in the bar under the points of the hooks.
- H is the ordinary ring which slips over the end of the vehicle pole, and h are two rings which engage with it.
- the holes 1l are made large enough to permit the rings h to be slipped into the hooks 10 before the clip is slid onto the neck-yoke.
- the lips 2 are preferably single, and are each formed upon one edge of the blank; but when the tubular ends are round, the lips 2 are preferably made in halves, one half on each edge of the blank, as clearly shown in the drawings.
- Whiftletrees constructed according to this invention are lighter than solid tubular whifetrees, because solid tubular whiflietrees cannot be made of such thin material either by casting or welding.
- the cast Whiftletree necessarily is thick, and a Welded Whitfietree cannot be formed of any thin tempered steel because its elasticity would be impaired by heating it to a welding heat.
- W'hiffletrees constructed according to this inventon have their meeting edges-tightly pressed together, thus giving them substantially the full strength due to their tubular form.
- a whiffietree formed of thin sheet steel, tubular in form, and provided with lips at its ends; in combination with clamping devices operating to press the meeting edges ofthe said sheet tightly together, and end caps provided with holes engaging with the said lips and closing the ends of the whiftletree, the ends of said lips being riveted over to secure the said caps in position, substantially as set forth.
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- Engineering & Computer Science (AREA)
- Transportation (AREA)
- Mechanical Engineering (AREA)
- Emergency Lowering Means (AREA)
Description
UNITED STATES PATENT OFFCE.
XVILLIAM Il. SHOLL AND JOHN SCHNEIDER, OF VALPARAISO, INDIANA.
SPECIFICATION forming part of Letters Patent N o. 532,251, dated January 8, 1895. Application led February 1894. Serial No. 501,225. (No model.)
To @ZZ whom, t may concern,.-
Be it known that we, W'ILLIAM H. SHOLL and JOHN SCHNEIDER, citizens of the United States, residing at Valparaiso, in the county of Porter and State of Indiana, have invented certain newand usefulIrnprovexnents in Whifetrees; and we do hereby declare the following to be a full, clear, and exact description of the invention, such as will enable others skilled in the art to which it appertains to make and use the same.
This invention relates to whiftietrees; and it consists in the novel construction and combination of the parts hereinafter fully described and claimed.
All the different kinds of whifdetrees, singletrees, doubletrees and neck-yokes can be constructed according to this invention.
In the drawings: Figure l is a plan view of a doubletree. Fig. 2 is an end view of one of its end caps. Eig. 3 is a cross-section taken on the line :z: in Fig. l. Fig. 4 is a detail view of the steel blank from which the doubletree is formed. Fig. 5 is a plan view of a singletree. Fig. 6 is an end view of one of its end caps. Fig. 7 is a cross-section taken on line y y in Fig. 5. Fig. 8 is a detail view of the steel blank from which the singletree is formed. Fig. 9 is a plan View of a neck yoke. Fig. lO is a cross-section taken on the line ze in Fig. 9. Fig. 1l is a detail view of the steel blank from which the neck-yoke is formed.
In carrying out this invention a high grade of sheet steel is used, of from one-sixteenth to three thirty-seconds of an inch in thickness. This steel plate is rolled and annealed so that the required temper to give it elasticity is attained, and so that the steel plate will bear reheating to a cherry red heat without losing its elasticity. The tempered sheet steel is then cut into blanks of the size and shape adapted to be formed into singletrees, doubletrees or neck-yokes as may be required.
Fig. 4 shows the blankB for a doubletree, and the dotted lines indicate where the blank is subsequently bent. The doubletree A is preferably tapered from its center to its ends, and the blank is cut of irregular form so that the doubletree may be of the desired form. A lip 2 is formed at each end of the doubletree, for a purpose which will be more fully described hereinafter.
C is the center clip of the doubletree provided on one side with a hole Vc for the draw bolt, and a loop c on the other side so that it can be attached to a plow or other implement.
D are the strengthening bands, preferably provided with eyes d for the attachment of stay chains.
E are the end caps provided with eyesefor the pins e of the clevises E4. The end caps also have holes 3 in their ends for receiving the said lips 2.
The steel blank is heated to a cherry red heat so that its elasticity is not impaired, and while hot it is bent to the form of thetubular doubletree, the longitudinal edges of the blank being brought as near together as possible.
The clip C, bands D and end caps E are then heated and shrunk onto the tubular doubletree, and are secured by yrivets where necessary. The said edges are brought into close contact, and the caps cover the open ends of the doubletree. The lips 2 which project through the holes 3 in the caps a're then riveted over thereby firmly securing the caps in position.
The doubletree thus formed is very light and is possessed of great strength, not only because it is formed of steel,but because the steel is of a temper which renders it elastic, and will not permit it to bend under strains or break under shocks or blows.
The singletree shown in Figs. 5 to 8 inclusive, is made from a blank B in a similar manner to the doubletree, but the singletree A is bent oval in cross-section instead of rectangular. The center clip O and the bands D are made to conform to the section of the singletree, and the center clip O is provided with a ring 4 for engaging with the clevis E4 of the doubletree. The end caps E of the singletree are round to conform to the ends of the singletree, and the lips 2 and the holes 3 through which they pass are formed upon circular arcs. with hooks 5 instead of clevises.
The neck-yoke shown in Figs. 9 to ll inclusive, is also made from a blank B in a similar manner to the doubletree, but the neck-yoke A is bent round in cross-section throughout its length. The center portion of the neck-yoke is cylindrical, and the ends ta- The end caps E are provided y per to the end caps E which are exactly the same as those on the singletree A except for being provided with rings 6 instead of hooks 5.
The center clip C and the bands D are made to conform to the section of the neckyoke. The center clip preferably consists of two rings 7 coupled together by longitudinal bars 8 and 9. The barS is provided with two hooks 10 and holes ll in the bar under the points of the hooks. H is the ordinary ring which slips over the end of the vehicle pole, and h are two rings which engage with it. The holes 1l are made large enough to permit the rings h to be slipped into the hooks 10 before the clip is slid onto the neck-yoke. After the center clip has been secured on the neck-yoke, the plate of the neck-yoke retains the rings h in position and prevents them from becoming uncoupled from the hooks.
When the devices are made with tubular rectangular ends, the lips 2 are preferably single, and are each formed upon one edge of the blank; but when the tubular ends are round, the lips 2 are preferably made in halves, one half on each edge of the blank, as clearly shown in the drawings.
Whiftletrees constructed according to this invention are lighter than solid tubular whifetrees, because solid tubular whiflietrees cannot be made of such thin material either by casting or welding. The cast Whiftletree necessarily is thick, and a Welded Whitfietree cannot be formed of any thin tempered steel because its elasticity would be impaired by heating it to a welding heat. W'hiffletrees constructed according to this inventon have their meeting edges-tightly pressed together, thus giving them substantially the full strength due to their tubular form.
1. A whiffietree, formed of thin sheet steel, tubular in form, and provided with lips at its ends; in combination with clamping devices operating to press the meeting edges ofthe said sheet tightly together, and end caps provided with holes engaging with the said lips and closing the ends of the whiftletree, the ends of said lips being riveted over to secure the said caps in position, substantially as set forth.
' tained in the said. hooks by the Whii'iietree,
substantially asset forth.
In testimonywhereof we affix our signatures in presence of two witnesses.
WILLIAM H. SHOLL. JOHN SCHNEIDER.
Witnesses:
D. E. KELLY, C. J. KERN.
Publications (1)
| Publication Number | Publication Date |
|---|---|
| US532251A true US532251A (en) | 1895-01-08 |
Family
ID=2601022
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| US532251D Expired - Lifetime US532251A (en) | Whiffletree |
Country Status (1)
| Country | Link |
|---|---|
| US (1) | US532251A (en) |
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0
- US US532251D patent/US532251A/en not_active Expired - Lifetime
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