US512790A - Cotton-press - Google Patents

Cotton-press Download PDF

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US512790A
US512790A US512790DA US512790A US 512790 A US512790 A US 512790A US 512790D A US512790D A US 512790DA US 512790 A US512790 A US 512790A
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piston
rod
key
larger
smaller
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F15FLUID-PRESSURE ACTUATORS; HYDRAULICS OR PNEUMATICS IN GENERAL
    • F15BSYSTEMS ACTING BY MEANS OF FLUIDS IN GENERAL; FLUID-PRESSURE ACTUATORS, e.g. SERVOMOTORS; DETAILS OF FLUID-PRESSURE SYSTEMS, NOT OTHERWISE PROVIDED FOR
    • F15B11/00Servomotor systems without provision for follow-up action; Circuits therefor
    • F15B11/02Systems essentially incorporating special features for controlling the speed or actuating force of an output member
    • F15B11/028Systems essentially incorporating special features for controlling the speed or actuating force of an output member for controlling the actuating force
    • F15B11/036Systems essentially incorporating special features for controlling the speed or actuating force of an output member for controlling the actuating force by means of servomotors having a plurality of working chambers
    • F15B11/0365Tandem constructions

Definitions

  • This invention relates to mechanism for pressing cotton, wool, hemp, hay, or other,
  • the piston-rod is fixed to the smaller piston and slides freely through a packed opening in the larger piston; upon turning steam or compressed air into the smaller cylinder the smaller piston is forced upward, lifting the piston-rod and follower for about one-half the stroke of the latter or more, and thereupon encountering ⁇ and lifting the larger piston and being automatically locked thereto by locking devices, so that upon the emergence of the smaller piston from its cylinder, the steam, compressed air or other fluid, being thus admitted to the larger cylinder, acts upon the greater area of the larger piston and thereby forces it upward and, through the intervening locking devices, forces upward the piston-rod and follower with a power that is increased in proportion to the increase of area of the larger over the smaller piston, in order to afford the increased power for completing the compression of the mass of cotton or other material.
  • My present invention provides an improved construction whereby the employment of automatic locking devices inclosed within thel compound cylinders is superseded by the substitution of a locking device in the nature of akey mounted upon the exterior of the apparatus and operated either automatically or manually by the man who works the valves for controlling the movements of the pistons.
  • the larger piston has a tubular piston-rod passing out through a stuffing-boxin the end of the larger cylinder, and through the bore of which freely passes the main piston -rod receiving at one end the thrust of the smaller piston, and connected at the other end to the follower.
  • the smaller piston does not pass'out of its cylinder, and is not attached toits piston-rod.
  • Figure l of the accompanying drawings is a vertical section showing the preferred construction of my improved cottonl.press, the follower and pistons being in the lowest position.
  • Fig. 2 is a similar section showing the apparatus when the follower has reached nearly the limit of its upward stroke.
  • Figs. 3, 4 and 5 are fragmentary elevations of the piston-rod showing dierent constructions of the key-seat.
  • the main pistonrod B passes freely through the bore of the piston-rod D which has at its top a stuffing box p.
  • a head or key-seat G On top of the rod D is formed or mounted a head or key-seat G, formed according to the preferred construction with a socket g in which slides a locking bar or key H which is arranged horizontally.
  • a key-way h In the piston -rod B is formed a key-way h large enough to receive the key H, so that when the piston-rod is raised to bring this key-way into coincidence with the key, the latter may be thrust through it.
  • the socket g may be any suitable shelf or support forming proper guides for retaining the key.
  • the key is preferably aflat bar or plate arranged in a vertical plane, and the key-way 71, is preferably formed as a slot cut through the rod B, and of corresponding shape to the cross-section of the key, as shown in Fig. 3.
  • the key-way might however consist of a single notch formed in one side of the piston-rod as shown in Fig. 5, or two opposite notches as shown in Fig. 4, in which latter case two parallel keys would be employed in lieu of one.
  • the key might be entered by hand, it is preferably provided with a spring s which keeps its end pressing against the rod B, so that as soon as the key-way 7L rises into coincidence with the key the latter instantly shoots through it.
  • a pipe a For admitting steam, compressed air or other iiuid to the smaller cylinder F, a pipe a is provided controlled by a valve b, and for the admission of fluid to the larger cylinder E a pipe a is provided controlled by a valve b.
  • the pipes a a may both be connected with a main pipe cleading from the source of compressed fluid, and waste pipes CZ d may be provided for conducting away the spent fluid exhausted from the cylinders.
  • the valves b b are provided with handles e e extended up to such [height as to bring them within ready reach of the operator, that is to say, within the neighborhood of the key I-I.
  • the smaller piston C is not fastened to the lower end of the piston-rod B, but is constructed to receive the thrust thereof in any ⁇ suitable manner, being preferably provided with some sort of centering fitting by means of which the two parts when they come together shall be socketed the one in the other,
  • the fluid is permitted to escape .
  • the valve h' as a three-way valve to exhaust the fluid through the pipe Cl'; the piston D thus descends to the bottom of the cylinder, whereupon it comes to a stop, the end of the piston-rod B being thus brought again into engagement with the piston C.
  • the operator then slides out the key H, and then by turning the valve b he permits the liuid to escape from the smaller cylinder, so that the follower descends to the bottom of its stroke.

Description

(No Model.)
J. A. BAGHMAN.
onTToN PRESS. .U
No. 512,790. Patented Jan. 1,6, 18u94.
FIG. 2v.
i 'ya INVENTOR; 0 .wcmz/n,
WITNESSES:
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UNITED STATES PATENT (QEEICE.
JOSEPH A. BACHMAN, OF AUSTIN, TEXAS.
COTTON-PRESS.
SPECIFIICATION forming part of Letters Patent No. 512,790, dated anuary 16,1894.
Application filed May 25, 1893. Serial No. 475,437. (No model.)
- citizen of the United States,residing at Austin,
in the county of Travis and State of Texas, have invented certain new and useful Improvements in Cotton-Presses, of which the following is a specification. f
This invention relates to mechanism for pressing cotton, wool, hemp, hay, or other,
comparatively loose or open substance requirlng to be compressed for purposes of baling or storage. It is well known that in pressing such substances the first portion of the movement of the follower against the material to be compressed encounters but little resistance because of the loose or open condition of the material and consequently requires but little power; that as the movement progresses and the material being compressed becomes more compact, its resistance to the follower increases and the power becomes greater; and that consequently during the final portion of the movement of the follower when the material is being compressed to the greatest density the maximum power is required. To accomplish the required work without a wasteful expenditure of power during the initial portion of the stroke when but little power is needed, several different expedients have heretofore been devised. That to which my present invention most nearly relates and upon which it is most nearly a direct improvement, is the construction of cotton press embodied in my Letters Patent No. 451,846, dated May 5,1891. In that patent compound cylinders and pistons are provided, the two cylinders being united so as to be adapted for one steam or compressed air supply, and the smaller and larger pistons working in the respective cylinders being adapted to exert their power successively through a single piston-rod to the follower or platen of the press. In my said patent the piston-rod is fixed to the smaller piston and slides freely through a packed opening in the larger piston; upon turning steam or compressed air into the smaller cylinder the smaller piston is forced upward, lifting the piston-rod and follower for about one-half the stroke of the latter or more, and thereupon encountering `and lifting the larger piston and being automatically locked thereto by locking devices, so that upon the emergence of the smaller piston from its cylinder, the steam, compressed air or other fluid, being thus admitted to the larger cylinder, acts upon the greater area of the larger piston and thereby forces it upward and, through the intervening locking devices, forces upward the piston-rod and follower with a power that is increased in proportion to the increase of area of the larger over the smaller piston, in order to afford the increased power for completing the compression of the mass of cotton or other material.
My present invention provides an improved construction whereby the employment of automatic locking devices inclosed within thel compound cylinders is superseded by the substitution of a locking device in the nature of akey mounted upon the exterior of the apparatus and operated either automatically or manually by the man who works the valves for controlling the movements of the pistons. The larger piston has a tubular piston-rod passing out through a stuffing-boxin the end of the larger cylinder, and through the bore of which freely passes the main piston -rod receiving at one end the thrust of the smaller piston, and connected at the other end to the follower. In the preferred construction the smaller piston does not pass'out of its cylinder, and is not attached toits piston-rod.
Figure l of the accompanying drawings is a vertical section showing the preferred construction of my improved cottonl.press, the follower and pistons being in the lowest position. Fig. 2 is a similar section showing the apparatus when the follower has reached nearly the limit of its upward stroke.` Figs. 3, 4 and 5 are fragmentary elevations of the piston-rod showing dierent constructions of the key-seat.
In the drawings, the fixed top or bed of the press against which the follower compresses the cotton or other material is not shown, nor is the well or box through which the follower works, the construction of these parts being well understood and forming no .part of my invention.
Let Adesignate thefollower or followerblock, or platen of the press, whichis attached to the upper end of the piston-rod B, which preferably is mounted to move vertically. To the lower end of the rod B is connected the lool smaller piston C, and above it is the larger piston D. These pistons work in compound cylinders E, F, the cylinder E being the larger in which works the piston D, while the cylinder F is the smaller in which works the piston C. The two cylinders are connected together so that communication is established from one to the other, although this is not strictly essential to my present invention. The larger piston D is formed with or attached to a tubular piston-rod D', which eX- tends up through a stuffing-box n at the top of the larger cylinder E. The main pistonrod B passes freely through the bore of the piston-rod D which has at its top a stuffing box p. On top of the rod D is formed or mounted a head or key-seat G, formed according to the preferred construction with a socket g in which slides a locking bar or key H which is arranged horizontally. In the piston -rod B is formed a key-way h large enough to receive the key H, so that when the piston-rod is raised to bring this key-way into coincidence with the key, the latter may be thrust through it. The socket g may be any suitable shelf or support forming proper guides for retaining the key. It is preferably constructed to inclose the key as shown, and the key is formed at its opposite ends with projections` t' and j forming stops for limiting its motion. The key is preferably aflat bar or plate arranged in a vertical plane, and the key-way 71, is preferably formed as a slot cut through the rod B, and of corresponding shape to the cross-section of the key, as shown in Fig. 3. The key-way might however consist of a single notch formed in one side of the piston-rod as shown in Fig. 5, or two opposite notches as shown in Fig. 4, in which latter case two parallel keys would be employed in lieu of one. Although the key might be entered by hand, it is preferably provided with a spring s which keeps its end pressing against the rod B, so that as soon as the key-way 7L rises into coincidence with the key the latter instantly shoots through it.
For admitting steam, compressed air or other iiuid to the smaller cylinder F, a pipe a is provided controlled by a valve b, and for the admission of fluid to the larger cylinder E a pipe a is provided controlled by a valve b. The pipes a a may both be connected with a main pipe cleading from the source of compressed fluid, and waste pipes CZ d may be provided for conducting away the spent fluid exhausted from the cylinders. The valves b b are provided with handles e e extended up to such [height as to bring them within ready reach of the operator, that is to say, within the neighborhood of the key I-I.
The smaller piston C is not fastened to the lower end of the piston-rod B, but is constructed to receive the thrust thereof in any `suitable manner, being preferably provided with some sort of centering fitting by means of which the two parts when they come together shall be socketed the one in the other,
as for example by the construction shown, wherein the piston C is formed with a projecting pin or stud 7c which enters a socket l in the lower end of the piston-rod. y ton C does not pass out of the cylinder F, since the latter is formed with an inwardly projecting flange fm, on its top which overhangs the piston C and serves as a stop for limiting its upward movement. This has the advantage that the packing of the piston C is greatly facilitated, since any suitable sort of ring packing may be used constructed to press outwardly so as to maintain atightjoint,which would not be admissible if the piston C were to pass out of the smaller cylinder as heretofore. The result of this construction is that when steam or other uid is turned intothecylinder F, it forces up the piston C until thelatter strikes against the Iiange m and is stopped. During this movement the piston-rod B ls lifted until the key-way h comes opposlte the key H. The key is then slid by its spring s through the key-way to approximately the position shown in Fig. 2, so that the key rests on both sides of the piston-rod against the top of the head G, or against the upper end of the piston-rod D of the larger piston. Upon the operator then turning steam by means ofthe valve b into the cylinder E, it acts against the piston D to lift it, and the thrust is communicated through the piston-rod D and key H to the main piston-rod B, thereby lifting the latter and disconnecting it from the piston C. The larger piston D thus moves the follower A during the latter part of the stroke thereof when the material under compression has become of considerable density, so that the material is compressed with the greater pressure that is proportional to the increased area of the larger piston. To lower the follower, the fluid is permitted to escape .first from the cylinder E, which may be done by constructing the valve h' as a three-way valve to exhaust the fluid through the pipe Cl'; the piston D thus descends to the bottom of the cylinder, whereupon it comes to a stop, the end of the piston-rod B being thus brought again into engagement with the piston C. The operator then slides out the key H, and then by turning the valve b he permits the liuid to escape from the smaller cylinder, so that the follower descends to the bottom of its stroke.
By the provision of the projection i on the end of the key, the operator is prevented from withdrawing the key except when the pistonrod B is upheld by the piston C, it being necessary tor maintain a pressure beneath the piston C during the entiretime that the pistonrod is lifted above this piston.
I claim as my invention the following-dened novel features, substantially as hereinbefore specified, namely:
l. The combination with the compound cylinders and their pistons and piston-rods, the rod of the smaller piston passing through the tubular rod of the larger piston and being formed with a keyway, of a key-seat formed The pis- ICO IIO
on the head of said tubular rod, and asliding key movable in said seat and adapted to enter said 'key-way with its ends projecting therefrom and resting on the head of said tubular piston.
2. In a press, the combination of compound cylinders E F, the latter formed with an overhanging flange m, with pistons D and C in the respective cylinders, and a piston-rod B separably connected' to the smaller piston, movable through the larger piston and providedwith means for connecting it to the larger piston after it has been lifted by the smaller piston, whereby the smaller piston is confined within the smaller cylinder.
3. The combination with compound cylinders E F, pistons C D and piston-rod B, of a separable centering connection between said JOSEPH A. BAOHMAN.
Witnesses:
C. E. JONES, JAS. W. SMITH.
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Cited By (16)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2620631A (en) * 1950-02-07 1952-12-09 Filer & Stowell Co Control mechanism for lumber edger press rollers
US2644492A (en) * 1950-06-21 1953-07-07 Continental Machines Safety lock for band saw tensioning mechanism
US2794111A (en) * 1952-05-05 1957-05-28 Taylor Winfield Corp Actuating mechanism, particularyl for strip weldiers
US2809723A (en) * 1955-02-23 1957-10-15 Insley Mfg Corp Parking brake
US3035550A (en) * 1960-04-25 1962-05-22 Webcor Inc Fluid motor
US3266415A (en) * 1964-06-02 1966-08-16 Basil S Palmer Air-hydraulic ram
US3273469A (en) * 1964-03-06 1966-09-20 Fastener Corp Fastener driving apparatus
US3311049A (en) * 1964-10-16 1967-03-28 Hugi Wilfried Hydraulic press
US3498188A (en) * 1966-10-26 1970-03-03 Westinghouse Bremsen Apparate Cylinder for spring-applied brake with emergency brake release
US3502003A (en) * 1967-05-08 1970-03-24 Berg Mfg & Sales Co Brake actuator and overtravel assembly
US3513769A (en) * 1966-11-07 1970-05-26 Sutter Ag Juice press
US3603248A (en) * 1969-07-01 1971-09-07 Inventions Finance Corp Device for driving the platen of a press
US3756145A (en) * 1970-12-02 1973-09-04 Amacker & Schmid Ag Hydraulic press
US3816216A (en) * 1972-01-21 1974-06-11 Kuraray Co Method and apparatus for joining and cutting sheet materials
US4024794A (en) * 1973-02-02 1977-05-24 Amp Incorporated Pneumatically operated cable-slitting tool
US4050251A (en) * 1975-03-04 1977-09-27 Societe Anonyme D.B.A. Hydraulic booster

Cited By (16)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2620631A (en) * 1950-02-07 1952-12-09 Filer & Stowell Co Control mechanism for lumber edger press rollers
US2644492A (en) * 1950-06-21 1953-07-07 Continental Machines Safety lock for band saw tensioning mechanism
US2794111A (en) * 1952-05-05 1957-05-28 Taylor Winfield Corp Actuating mechanism, particularyl for strip weldiers
US2809723A (en) * 1955-02-23 1957-10-15 Insley Mfg Corp Parking brake
US3035550A (en) * 1960-04-25 1962-05-22 Webcor Inc Fluid motor
US3273469A (en) * 1964-03-06 1966-09-20 Fastener Corp Fastener driving apparatus
US3266415A (en) * 1964-06-02 1966-08-16 Basil S Palmer Air-hydraulic ram
US3311049A (en) * 1964-10-16 1967-03-28 Hugi Wilfried Hydraulic press
US3498188A (en) * 1966-10-26 1970-03-03 Westinghouse Bremsen Apparate Cylinder for spring-applied brake with emergency brake release
US3513769A (en) * 1966-11-07 1970-05-26 Sutter Ag Juice press
US3502003A (en) * 1967-05-08 1970-03-24 Berg Mfg & Sales Co Brake actuator and overtravel assembly
US3603248A (en) * 1969-07-01 1971-09-07 Inventions Finance Corp Device for driving the platen of a press
US3756145A (en) * 1970-12-02 1973-09-04 Amacker & Schmid Ag Hydraulic press
US3816216A (en) * 1972-01-21 1974-06-11 Kuraray Co Method and apparatus for joining and cutting sheet materials
US4024794A (en) * 1973-02-02 1977-05-24 Amp Incorporated Pneumatically operated cable-slitting tool
US4050251A (en) * 1975-03-04 1977-09-27 Societe Anonyme D.B.A. Hydraulic booster

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