US574257A - Bu ffer-platform for railroad-cars - Google Patents

Bu ffer-platform for railroad-cars Download PDF

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US574257A
US574257A US574257DA US574257A US 574257 A US574257 A US 574257A US 574257D A US574257D A US 574257DA US 574257 A US574257 A US 574257A
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platform
buffer
coupler
stem
railroad
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B61RAILWAYS
    • B61GCOUPLINGS; DRAUGHT AND BUFFING APPLIANCES
    • B61G9/00Draw-gear
    • B61G9/02Draw-gear and non-integral buffing appliances with combined action or acting on the same spring
    • B61G9/025Draw-gear and non-integral buffing appliances with combined action or acting on the same spring with only metal springs

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  • t may concern:
  • Our invention relates to certain new and useful improvements in bulfer-platforms for railroad-cars, and particularly to that class shown and described in Letters Patent No. 554,496, granted to Isaac G. Johnson & Oo., as the assignees of T. L. McKeen, and dated February 1l, 1896.
  • A represents the ordinary central longitudinal sills of the body or frame of a railroadcar as usually constructed, between which is located the central buffer-stem B.
  • O is the head or transverse beam, which constitutes the support of the ordinary platform D
  • E is the auxiliary or buffer platform.
  • F F are side bufferstems pivotally connected at their forward ends to the bufferplatform E, as clearly shown at Fig. 1.
  • the side or auxiliary buffer stems are formed or provided with a circular collar G and a shoulder H, and the rearwardly-projecting reduced portion of the stems pass through a bracket I, secured in any suitable manner to the car-frame, and are held in place by a washer F' and pin G', as clearly shown.
  • the front ends of these stems pass through suitable guide-cl1annels in the crossbeam O.
  • a heavy coil-spring J and a sm allerinterior and lighter coil-sprin g 5 5 K Surrounding the stems F and located between the brackets I and shoulder H and collar G are arranged a heavy coil-spring J and a sm allerinterior and lighter coil-sprin g 5 5 K, and between the front face of the collar G and the rear face of the beam C is arranged a light coil-spring M.
  • the central buffer-stem B is guided at its forward end through the main platform and 6o frame, as shown, orin any other suitable manner, and at about the center of its length it is reduced to form a shoulder to bear against the end of a duplex arm N, extending upwardly from a shoe O, as most clearly shown at Fig. 2, the rear reduced end of the stem being guided by a cross-beam P.
  • the shoe O is adapted to slide on the shank of the coupler Q. Itis made cylindrical and hollow to receive a heavy coil-spring R and an inte- 7o rior and lighter coil-spring S.
  • the interior front end of the shoe O is cast with a short projection T, (see Fig. 2,l adapted to enter the large spring R and to bear against the forward end of the interior spring S, and the rear ends of both of these springs bear against the face of a stop U, which is secured by a bolt V to the coupler Q.
  • the front face of the auxiliary or buffer platform E is composed of steel, malleable or 8o wrought, as may be most desirable, and its inner surface is made plain and adapted to contact with the straight face or end of the central stem B, so that 'the former can freely move across ⁇ the end of the said stem.
  • the 8 Y end of the stem if thought desirable, may/bo4 provided with an antifriction-roller.
  • the latter may 9o be formed or provided with buffer projections or blocks E to contact with the forward edge of the main platform D when the buffer-platform for any reason is unduly forced backward.
  • coupler Q forms no part of our invention, it is only necessary to say that it is made of the usual form and secured in position in the ordinary manner.
  • the buffer-platform slides under the floor zoo of the main platform, as clearly shown at Fig. 2.
  • central buffer-stem B is in no wise connected with nor does it in. any manner support the bu ffer-platform, but serves the purpose only of taking up the excessive shock of meeting platforms when coupling, and through the medium of the spring-shoe O and its connections forces the buiferplatform outward when the coupler Q is subjected to excessive pull or sudden jerks.
  • the buffer-platform E pivoted at each end to side buffer-stems F, con structed as described, the springs J, K, brackets I, and springs M interposed between the collars G and beam C, substantially as and for the purposes set forth.
  • the buffer-Steins F formed with a fixed collar G and shoulder II, in combination with the brackets I, exterior springJ and interior spring K, substantially as and for the pnl'- pose set forth.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Vibration Dampers (AREA)

Description

(No Modem T. L. MGK'IEEN 8v A. H. RENSHAW.
BUFFER PLATFORM FUR RAILROAD GARS.
Unire@ STATES PATENT Ormes.
THOMAS L. MOKEEN AND ALFRED H. RENSHAVV, OF NEV YORK, N. Y., ASSIGNORSTO THE TROJAN CAR COUPLER COMPANY, OF TROY,
NEY YORK.
BUFFER-PLATFORM FOR RAlLROAD-CARS.
A SPECIFICATION forming part of Letters Patent No. 574,257', dated December 29, 1896- Application filed September 10,1896. lSerial No. 605,403. (No model.)
To 1f/ZZ whom, t may concern:
Be it known that we, THOMAS L. MCKEEN and ALFRED I-I. RENSHAW, citizens of the United States, residing at New York, in the county of New York and State of New York, have invented certain new and useful Improvements in Buffer-Platforms for Railroad- Oars; 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.
Our invention relates to certain new and useful improvements in bulfer-platforms for railroad-cars, and particularly to that class shown and described in Letters Patent No. 554,496, granted to Isaac G. Johnson & Oo., as the assignees of T. L. McKeen, and dated February 1l, 1896.
Our invention has substantially the sam general object in View as that described in the patent above referred to, but by di (ferent features of construction, which we will now proceed to describe, referring by letters to the accompanying drawings, in which- Figure l represents a plan view, partially in section, of our improved buffer-platform and platform proper. Fig. 2 is a central longitudinal section.
Similar letters of reference denote like parts in both views.
A represents the ordinary central longitudinal sills of the body or frame of a railroadcar as usually constructed, between which is located the central buffer-stem B.
O is the head or transverse beam, which constitutes the support of the ordinary platform D, and E is the auxiliary or buffer platform.
F F are side bufferstems pivotally connected at their forward ends to the bufferplatform E, as clearly shown at Fig. 1.
The side or auxiliary buffer stems are formed or provided with a circular collar G and a shoulder H, and the rearwardly-projecting reduced portion of the stems pass through a bracket I, secured in any suitable manner to the car-frame, and are held in place by a washer F' and pin G', as clearly shown. The front ends of these stems pass through suitable guide-cl1annels in the crossbeam O. Surrounding the stems F and located between the brackets I and shoulder H and collar G are arranged a heavy coil-spring J and a sm allerinterior and lighter coil-sprin g 5 5 K, and between the front face of the collar G and the rear face of the beam C is arranged a light coil-spring M.
The central buffer-stem B is guided at its forward end through the main platform and 6o frame, as shown, orin any other suitable manner, and at about the center of its length it is reduced to form a shoulder to bear against the end of a duplex arm N, extending upwardly from a shoe O, as most clearly shown at Fig. 2, the rear reduced end of the stem being guided by a cross-beam P. The shoe O is adapted to slide on the shank of the coupler Q. Itis made cylindrical and hollow to receive a heavy coil-spring R and an inte- 7o rior and lighter coil-spring S. The interior front end of the shoe O is cast with a short projection T, (see Fig. 2,l adapted to enter the large spring R and to bear against the forward end of the interior spring S, and the rear ends of both of these springs bear against the face of a stop U, which is secured by a bolt V to the coupler Q.
The front face of the auxiliary or buffer platform E is composed of steel, malleable or 8o wrought, as may be most desirable, and its inner surface is made plain and adapted to contact with the straight face or end of the central stem B, so that 'the former can freely move across` the end of the said stem. The 8 Y end of the stem, if thought desirable, may/bo4 provided with an antifriction-roller.
Above and below the point of contact between the end of the stem B and the interior face of the buffer-platform E the latter may 9o be formed or provided with buffer projections or blocks E to contact with the forward edge of the main platform D when the buffer-platform for any reason is unduly forced backward.
As the coupler Q forms no part of our invention, it is only necessary to say that it is made of the usual form and secured in position in the ordinary manner.
The buffer-platform slides under the floor zoo of the main platform, as clearly shown at Fig. 2.
Having described the construction and arrangement of the several parts, we will now describe the. action.
Then cars approach each other to be coupled ,the main jar against the buffer-plat forms is taken up by the central buffer-stem B, the shoulder at the central portion of which bears against the arm N of the shoe O, forcing the latter rearward against the contained springs R and S and against the stop U, the first effect being the compression of the lighter spring S by the action of the projection T of the shoe and the second and subsequent effect being the compression of the heavier spring R. The reaction of the springs causes the bufferplatforms to be forced outward and into proper Contact with each o1' her, and by reason of the fact that the shoe is adapted to slide on the coupler Q and that the springs R and S bear at their rear ends against the stop U, secured to said coupler, it is obvious that in heavy trains or where sudden jerks occur the forward movement of the coupler Q will necessarily force the shoe O and in turn the central stem B and buffer-platform forward also, and thus maintain the proper contact of such platforms. The side buffer-stems F F, by reason of their pivotal connection with the buffer-platform E, prevent the latter from going` too far forward and also enable either end to be forced inwardly, as may become necessary in rounding curves.
From the construction and arrangement of the stems and springs previously described it will be readily understood that when one end of the buffer-platform E has been forced inwardly the ii rst effect is to compress the light spring K and then the heavier one J, the reaction of which springs tends to restore the platform to its normal plane, and when they have ceased to act in this direction then the sprin gs M, confined between the collars Gon the stems and the rear face of the beam C,
accordingly as one or the other of said springs is compressed by the outward movement of the opposite end of the buffer-platform, will exert its force against the collar G and restore the platform to its proper position.
It will be seen that the central buffer-stem B is in no wise connected with nor does it in. any manner support the bu ffer-platform, but serves the purpose only of taking up the excessive shock of meeting platforms when coupling, and through the medium of the spring-shoe O and its connections forces the buiferplatform outward when the coupler Q is subjected to excessive pull or sudden jerks.
Vhatvwe claim as new, and desire to secure by Letters Patent, is-
l. In combination with the main platform D and coupler Q, the buffer-platform E pivoted at each end to side buffer-stems F, con structed as described, the springs J, K, brackets I, and springs M interposed between the collars G and beam C, substantially as and for the purposes set forth.
2. In combination with the main platform, auxiliary or buffer platform, side bufferstems, pivot-ed to the buffer-platform, and the coupler Q., a center buffer-stem free from the buffer-platform and havingits rear end passing through an arm 011 the shoe O, and having a shoulder bearing against the said arm, the hollow shoe O formed with the arm N and projection T, the springs R, S, and stop U on the coupler Q, substantially as and for the purpose set forth.
The buffer-Steins F formed with a fixed collar G and shoulder II, in combination with the brackets I, exterior springJ and interior spring K, substantially as and for the pnl'- pose set forth.
4. ln combination with the buifer-platform E and side stems F provided with fixed eollars G, and transverse beam C, the rightingsprings M interposed between and bearing against the collars G and the rea-r face of the beam C, whereby the stems F are restored to normal position, substantially as and for the purpose described.
In testimony whereof wc allix our signa tures in presence of two witnesses.
THOMAS L. MCKEEN. ALFRED II. RENSIIAW. Witnesses:
FRANK E. NORTON, EUGENE SEETZ.
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5579699A (en) * 1993-11-25 1996-12-03 Gec Alsthom Transport Sa Impact-absorber devices, impact-absorption method, and framework and vehicle including such impact-absorber devices

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5579699A (en) * 1993-11-25 1996-12-03 Gec Alsthom Transport Sa Impact-absorber devices, impact-absorption method, and framework and vehicle including such impact-absorber devices
US5660116A (en) * 1993-11-25 1997-08-26 Gec Alsthom Transport Sa Impact-absorber devices, impact-absorption method, and framework and vehicle including such impact-aborber devices
US5715757A (en) * 1993-11-25 1998-02-10 Gec Alsthom Transport Sa Impact-absorber devices, impact-absorption method, and framework and vehicle including such impact-absorber devices

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