US753261A - Fluid system for presses or the like - Google Patents

Fluid system for presses or the like Download PDF

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US753261A
US753261A US753261DA US753261A US 753261 A US753261 A US 753261A US 753261D A US753261D A US 753261DA US 753261 A US753261 A US 753261A
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valve
cylinder
pressure
jack
pipe
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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
    • F15B1/00Installations or systems with accumulators; Supply reservoir or sump assemblies
    • F15B1/02Installations or systems with accumulators
    • F15B1/027Installations or systems with accumulators having accumulator charging devices
    • 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
    • F15B2211/00Circuits for servomotor systems
    • F15B2211/40Flow control
    • F15B2211/405Flow control characterised by the type of flow control means or valve
    • F15B2211/40515Flow control characterised by the type of flow control means or valve with variable throttles or orifices

Definitions

  • a resistance-abutment wherein a resistance-abutment is provided for the forming bale, it is desirable to provide a resistance-abutmentwherein the receding movement may be made gradual and against a constant uniform predetermined pressure during the formation of the compressed column in order that uniform density throughout the length of the column may be secured. It is also desirable that this pressure may be readily and easily regulated at the will of the operator in order that change of pressure may be eifected according to the condition and characteristic of the material being compressed.
  • the resistance abutment or jack may be quickly moved away from the end of the column in order to permit the bale to be detached and removed, and it is equally desirable that the resistance-,abutment be quickly moved again into engagement with the end of the column when the bale has been detached and removed.
  • Figure 1 illustrates a construction and arrangement of such a system as applied to a ljack and embodying the principles of my invention, that portion of the movable member of the jack which engages with the compressed column being broken olf and the cylinder of the jack being shown in longitudinal section.
  • Figui is an enlarged view in section of a relief-valve that may be used.
  • A designates a stand-pipe designed to communicate at one end with asuitable tank (not shown)or other suitable source of iuid-pressure and at the other end through pipe A with the cylinder B, which forms one member of a fluidoperated jack, the other member being a plunger C, arranged within the cylinder in the ordinary manner, so that the introduction of iiuid into the cylinder tends to expand the jack by expelling the plunger from the cylinder.
  • the pipe D equipped with a suitable control-valveY D', leads from the pipe A to a tank E, which I will hereinafter designate the spill-tank.
  • a pump P is arranged to draw its supply from the spill-tank through the pipe E', in which islocated a control-valve' E2, and to discharge through the pipe F, which enters the stand-pipe on the cylinder side of a control-valve L, located in said stand-pipe.
  • the pipe F contains a check-valve F', the entrance to a pipe G, which delivers into the stand-pipe on the other side of control-valve L, a pressure-gage J, and a control-valve F2.
  • the pipe G contains al relief-valve H, which may be of any suitable construction-as, for example, that shown in Fig. 2 and fully described in the United States Patent granted to me, numbered 645,722-and also contains a check-valve I.
  • An overflow-pipe M leads from the pressure-tank of the stand-pipe and delivers into the spill-tank E.
  • An air-chamber K communicates with the stand-pipe above the valve L, and drain-cocks B and A2 may be provided for the stand-pipe and jack-cylinder.
  • my fluid-pressure system is as follows: When it is desired to fill the upper or pressure tank, the operating fluid is first placed in the auxiliary or spill tank E, the valves F2 and L are closed, and the reliefvalve so regulated that the iiuid may pass therethrough under very little pressure, and the valve E2 of the pump supply-pipe E is opened. rIhe pump is then started, and through it the operating' medium is drawn from spilltank E through pipe E by the pump and is forced or delivered' from the pump through pipe F, branch G, relief-valve H, check-valve I, and stand-pipe A into theV upper or pressure tank until the desired amount is delivered into said tank. Any overflow from said tankl returns to the spill-tank E through pipe M.
  • the check-valve F prevents backflow to the pump, and the check-valve I serves to prevent the escape ofthe fluid from the pressure-tank when it may become necessaryto remove the relief-valve in order to make necessary repairs. Ihen it is desired to raise or expand the jack quickly-as, for instance, when it is desired to replace the resistance-abutment against the end of the compressed column after a bale has been detached therefrom and removed-the valve D is closed and the valve L is opened. lThe operating fluid thereupon passes freely from the pressure-tank through the pipes A and A into the jack-cylinder, and hence effects a quick movement of the jack.
  • valve D' In order to lower the resistance-abutment quickly-as, for instance, when a bale has been formed and is ready to be detached and removed-the valve L being closed, the valve D' is opened. 'Ihis leaves the Huid contained in the jack free to iow through the pipes A, A,
  • valves D and L are closed and valve F"2 is opened.
  • the relief-valve H which may be suitably adjusted, so that a certain degree of pressure will be required for thefluid to open the valve and escape.
  • the pressure in the jack and lower part of the piping system maybe maintained uniform and constant at a predetermined point even while the jack is receding.
  • rIhe pressure-gage in communication with this portion of the systemY indicates the degree of pressure inV the iiuid medium, and consequently the4 pressure opposing the receding movement of the jack, and the amount of that pressure may be regulated at will by adjusting the relief-valve.
  • the drain-cocks A2 and B enable the system to be drained when desired.
  • a jack comprising a cylinder and a plunger operating therein, a source of fluid-pressure communicating with the cylinder, means to close communication between said source of pressure and the cylinder, and a relief-valve from the cylinder to said source of pressure.
  • a jack comprising a cylinder and a plunger operating therein, a source of fluid-pressure communicating with the cylinder, means to close communication between said source of pressure and the cylinder, a relief-valve from the cylinder to said source of pressure, and a discharge-pipe and valve therefor communicating with the cylinder.
  • a jack comprising a cylinder and a plunger operating therein, a source of fluid-pressure communicating with the cylinder, a controllingvalve between said source of pressure and the cylinder, a relief-valve from the cylinder to said source of pressure, and a pressure-pump arranged to deliver iuid into the system on the cylinder side of the relief-valve.
  • ya jack comprising a' cylinder and a plunger operating thereima source of fluid-pressure communicating with the cylinder, a valve between said source of pressure and the cylinder, a relief-valve communicating with the cylinder, and a pressure-pump arranged to deliver into the system on the cylinder side of the rstmentioned valve.
  • a jack comprising a cylinder and a plunger operating therein, a stand-pipe delivering into said cylinder, a control-valve arranged in said standpipe, a branch pipe communicating With said stand-pipe on opposite sides of said controlvalve, and a relief-valve arranged in said branch pipe, whereby a uniform and constant pressure may oppose the receding movement of said jack, as and for the purpose set forth.
  • a jack comprising a cylinder and a plunger operating therein, a stand-pipe delivering into said cylincler, a control-valve arranged in said standpipe, a ley-pass around said control-valve, a pressure-gage and a relief-valve arranged in said luy-pass, as and for the purpose set forth.
  • a jack comprising a cylinder and a plunger operating therein, a stand-pipe delivering into said cylinder, a control-valve arranged in said standpipe, a by-pass around said valve, a pressurerelief valve arranged in said by-pass, ⁇ and a pump dischargepipe communicating with said ley-pass, as and for the purpose set forth.
  • a jack comprising a cylinder and a plunger operating therein, a stand-pipe delivering into said cylinder, a control-valve arranged therein, a bypass around said control-valve, a relief-valve arranged in said ley-pass, a spill-tank, a discharge-pipe communicating with said cylinder and delivering into said tank, a pump discharge-pipe adapted to receive its supply from said spill-tank, and communicating with said ley-pass, a control-valve arranged in said discharge-pipe, and check-valves arranged in said by-pass and in said pump discharge-pipe, as and for the purpose set forth.
  • a jack comprising a cylinder and a plunger operating therein, a source ofluid-pressure communicating with the cylinder, and valve mechanism arranged to afford a free passage for iiuid from the source oi' supply and an automatically-restricted passage in the reverse direction.
  • a jack comprising a cylinder and a plunger operating therein; a source of Huid-pressure communicating with the cylinder; a valve arranged to aord a free passage for liuid from said source to the cylinder, a valve arranged to afford a restricted passage from the cylinder to said source; and a pressure-supply pump delivering into the system on the cylinder side of the valve mechanism.

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  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Fluid Mechanics (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Fluid-Pressure Circuits (AREA)

Description

PATENTED MAR, l, 1904.
- W. M. HoLMBs. FLUID SYSTEM POR PRESSES 0R THB LIKE.
APPLIOATION FILED SEPT. 4. 1900.
tu: norms PETERS co.. wnmunm. wnsnwnrou, o, n.
l UNITED STATES Patented March 1, 1904.
PATENT Orrrcn.
WATSON M. HOLBIES, OF HOOSIOK FALLS, NEW YORK, ASSIGNOR, BY
MESNE ASSIGNMENTS, TO PLANTERS OOMPRESS COMPANY, A COR- PORATION OF MAINE.
FLUID SYSTEM FOR PRESSES OR THElLlKE.
SPECIFICATION forming part of Letters Patent No. 753,261, dated March 1, 194. Application iiledseptembei 4, 1900, Serial No. 28,876. (No modell.)
To @ZZ whom it may concern:
Be it known that I, W'A'rson M. HOLMES, a citizen of the United States, residingvat Hoosick Falls, in the county of Rensselaer and State of New York, have invented a new and useful Improvement in Fluid Systems for Presses or the Like, of which the following- In the operation of a press, and particularly a press of the type set forth in Patent No.
630,369, granted August 8, 1899, to George .A. Lowry, wherein a resistance-abutment is provided for the forming bale, it is desirable to provide a resistance-abutmentwherein the receding movement may be made gradual and against a constant uniform predetermined pressure during the formation of the compressed column in order that uniform density throughout the length of the column may be secured. It is also desirable that this pressure may be readily and easily regulated at the will of the operator in order that change of pressure may be eifected according to the condition and characteristic of the material being compressed. It is also important to provide means whereby when a sufficient length of column to form a finished bale has been produced'the resistance abutment or jack may be quickly moved away from the end of the column in order to permit the bale to be detached and removed, and it is equally desirable that the resistance-,abutment be quickly moved again into engagement with the end of the column when the bale has been detached and removed.
Itis the special purpose of the present invention to provide a fluid system wherein these desirable ends are secured in a most simple and eicient manner.
Referring to the drawings, Figure 1 illustrates a construction and arrangement of such a system as applied to a ljack and embodying the principles of my invention, that portion of the movable member of the jack which engages with the compressed column being broken olf and the cylinder of the jack being shown in longitudinal section. Figui is an enlarged view in section of a relief-valve that may be used.
In the drawings, A designates a stand-pipe designed to communicate at one end with asuitable tank (not shown)or other suitable source of iuid-pressure and at the other end through pipe A with the cylinder B, which forms one member of a fluidoperated jack, the other member being a plunger C, arranged within the cylinder in the ordinary manner, so that the introduction of iiuid into the cylinder tends to expand the jack by expelling the plunger from the cylinder.
l"The drawings show the construction which is. most usual in connection with presses of the type above referred to-to wit, a jack in which the plunger is the moving member and the cylinder the stationary member, in which case the plunger supports or constitutes the resistance abutment of the press. It will, however, be obvious from the description here inafter contained that the scope of my invention does not depend upon the particular type of jack employed, provided the same be operated by iuid-pressure, nor upon the arrangement of the jack with respect to the resist.- ance-abutment, provided that the introduction of iiuid into the cylinder tends to expand the jack and move one of its members in the direction in which it is desired to exert pressure. Y
The pipe D, equipped with a suitable control-valveY D', leads from the pipe A to a tank E, which I will hereinafter designate the spill-tank. A pump P is arranged to draw its supply from the spill-tank through the pipe E', in which islocated a control-valve' E2, and to discharge through the pipe F, which enters the stand-pipe on the cylinder side of a control-valve L, located in said stand-pipe.
The pipe F contains a check-valve F', the entrance to a pipe G, which delivers into the stand-pipe on the other side of control-valve L, a pressure-gage J, and a control-valve F2. The pipe G contains al relief-valve H, which may be of any suitable construction-as, for example, that shown in Fig. 2 and fully described in the United States Patent granted to me, numbered 645,722-and also contains a check-valve I. An overflow-pipe M leads from the pressure-tank of the stand-pipe and delivers into the spill-tank E. An air-chamber K communicates with the stand-pipe above the valve L, and drain-cocks B and A2 may be provided for the stand-pipe and jack-cylinder.
The operation of my fluid-pressure system is as follows: When it is desired to fill the upper or pressure tank, the operating fluid is first placed in the auxiliary or spill tank E, the valves F2 and L are closed, and the reliefvalve so regulated that the iiuid may pass therethrough under very little pressure, and the valve E2 of the pump supply-pipe E is opened. rIhe pump is then started, and through it the operating' medium is drawn from spilltank E through pipe E by the pump and is forced or delivered' from the pump through pipe F, branch G, relief-valve H, check-valve I, and stand-pipe A into theV upper or pressure tank until the desired amount is delivered into said tank. Any overflow from said tankl returns to the spill-tank E through pipe M. The check-valve F prevents backflow to the pump, and the check-valve I serves to prevent the escape ofthe fluid from the pressure-tank when it may become necessaryto remove the relief-valve in order to make necessary repairs. Ihen it is desired to raise or expand the jack quickly-as, for instance, when it is desired to replace the resistance-abutment against the end of the compressed column after a bale has been detached therefrom and removed-the valve D is closed and the valve L is opened. lThe operating fluid thereupon passes freely from the pressure-tank through the pipes A and A into the jack-cylinder, and hence effects a quick movement of the jack. In order to lower the resistance-abutment quickly-as, for instance, when a bale has been formed and is ready to be detached and removed-the valve L being closed, the valve D' is opened. 'Ihis leaves the Huid contained in the jack free to iow through the pipes A, A,
and D into the spill-tank E, thus permitting the portion of the jack carrying the resistanceabutment to fall away from the compressed column as rapidly as the iiuid can iiow out. When it is desired to allow the member carrying the resistance-abutment to recede gradually ,under a constant and uniform predetermined pressure-as, for instance, during the operation of the press while the compressed column is being formed-the valves D and L are closed and valve F"2 is opened. The entire system is now filled with the operating fluid; but the pressure-tank and the upper part of the standpipe A is cut off from the lower part ofv the system and can be reached by fluid from the lower part of the system only through the bypass Gr.- 'Ihe advance of the forming column of compressed material causes a recession of the resistance-abutment and that portion of the jack on which it is mounted, and this receding movement of the jack causes a displacement of fluid in the jack-cylinder through the pipes A', lower part of A F G, into the upper part of stand-pipe A, and thence into the upper or pressure tank. Incidentally it x"must pass through the relief-valve H, which may be suitably adjusted, so that a certain degree of pressure will be required for thefluid to open the valve and escape. By this means the pressure in the jack and lower part of the piping system maybe maintained uniform and constant at a predetermined point even while the jack is receding. rIhe pressure-gage in communication with this portion of the systemY indicates the degree of pressure inV the iiuid medium, and consequently the4 pressure opposing the receding movement of the jack, and the amount of that pressure may be regulated at will by adjusting the relief-valve.
It will be observed that the discharge from the pump into the upper or storage tank also takes place through the relief-valve H, and the pressure of such discharge, together with the pressure created by the receding of the jack, will be indicated by the pressure-gage J.
The drain-cocks A2 and B enable the system to be drained when desired.
From the foregoing description, taken in connection with the accompanying drawings, it will be readily seen and understood that I provide anA exceedingly simple and eflicient hydraulic system for accomplishing the objects and securing the results had in view, and while I have described the application of my system for use in connection with a balingpress of a particular type it is -to be understood that my invention is not to be limited or restricted in the use thereof to such application or to-such type of press.
I claiml. In an apparatus ofthe class described, a jack comprising a cylinder and a plunger operating therein, a source of fluid-pressure communicating with the cylinder, means to close communication between said source of pressure and the cylinder, and a relief-valve from the cylinder to said source of pressure.
2. In an apparatus of the class described, a jack comprising a cylinder and a plunger operating therein, a source of fluid-pressure communicating with the cylinder, means to close communication between said source of pressure and the cylinder, a relief-valve from the cylinder to said source of pressure, and a discharge-pipe and valve therefor communicating with the cylinder.
IOO
ISO
3. In an apparatus of the class described, a jack comprising a cylinder and a plunger operating therein, a source of fluid-pressure communicating with the cylinder, a controllingvalve between said source of pressure and the cylinder, a relief-valve from the cylinder to said source of pressure, and a pressure-pump arranged to deliver iuid into the system on the cylinder side of the relief-valve.
4. In an apparatus of the class described, ya jack comprising a' cylinder and a plunger operating thereima source of fluid-pressure communicating with the cylinder, a valve between said source of pressure and the cylinder, a relief-valve communicating with the cylinder, and a pressure-pump arranged to deliver into the system on the cylinder side of the rstmentioned valve.
5. In a fluid system for presses, a jack comprising a cylinder and a plunger operating therein, a stand-pipe delivering into said cylinder, a control-valve arranged in said standpipe, a branch pipe communicating With said stand-pipe on opposite sides of said controlvalve, and a relief-valve arranged in said branch pipe, whereby a uniform and constant pressure may oppose the receding movement of said jack, as and for the purpose set forth.
6. In a fluid system for presses, a jack comprising a cylinder and a plunger operating therein, a stand-pipe delivering into said cylincler, a control-valve arranged in said standpipe, a ley-pass around said control-valve, a pressure-gage and a relief-valve arranged in said luy-pass, as and for the purpose set forth.
7. In a Huid system for presses, a jack comprising a cylinder and a plunger operating therein, a stand-pipe delivering into said cylinder, a control-valve arranged in said standpipe, a by-pass around said valve, a pressurerelief valve arranged in said by-pass,`and a pump dischargepipe communicating with said ley-pass, as and for the purpose set forth.
V8. In a Huid system for presses, a jack comprising a cylinder and a plunger operating therein, a stand-pipe delivering into said cylinder, a control-valve arranged therein, a bypass around said control-valve, a relief-valve arranged in said ley-pass, a spill-tank, a discharge-pipe communicating with said cylinder and delivering into said tank, a pump discharge-pipe adapted to receive its supply from said spill-tank, and communicating with said ley-pass, a control-valve arranged in said discharge-pipe, and check-valves arranged in said by-pass and in said pump discharge-pipe, as and for the purpose set forth.
9. In an apparatus of the class described, a jack comprising a cylinder and a plunger operating therein, a source ofluid-pressure communicating with the cylinder, and valve mechanism arranged to afford a free passage for iiuid from the source oi' supply and an automatically-restricted passage in the reverse direction.
10. In an apparatus of the class described, a jack comprising a cylinder and a plunger operating therein; a source of Huid-pressure communicating with the cylinder; a valve arranged to aord a free passage for liuid from said source to the cylinder, a valve arranged to afford a restricted passage from the cylinder to said source; and a pressure-supply pump delivering into the system on the cylinder side of the valve mechanism.
In witness whereof I have hereunto set my hand, this 29th day of August, 1900, in the presence of the subscribing witnesses.
WATSON M. HOLMES.
Witnesses:
GUY CUNMNGHAM, W. M. RHEEM.
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