US652495A - Balance-valve. - Google Patents

Balance-valve. Download PDF

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Publication number
US652495A
US652495A US73557899A US1899735578A US652495A US 652495 A US652495 A US 652495A US 73557899 A US73557899 A US 73557899A US 1899735578 A US1899735578 A US 1899735578A US 652495 A US652495 A US 652495A
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piston
valve
chamber
balance
case
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US73557899A
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Edward C Terry
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16KVALVES; TAPS; COCKS; ACTUATING-FLOATS; DEVICES FOR VENTING OR AERATING
    • F16K31/00Actuating devices; Operating means; Releasing devices
    • F16K31/44Mechanical actuating means
    • F16K31/52Mechanical actuating means with crank, eccentric, or cam
    • F16K31/524Mechanical actuating means with crank, eccentric, or cam with a cam
    • F16K31/52408Mechanical actuating means with crank, eccentric, or cam with a cam comprising a lift valve

Definitions

  • My invention relates to improvements in balance-valves; and the main objects of my improvements are simplicity and economyin construction and efficiency in operation.
  • Figure 1 is a side elevation of my valve.
  • Fig. 2 is an end View of the same with the cap removed.
  • Fig. 3 is a sectional view on the line as w of Fig. 2, and
  • Fig. 4 is a detached side elevation of the internal piston.
  • the case A is of an ordinary form and need not be specifically described further than to note that it has a removable screw-cap B at one end and is provided with lugs 5, by which to pivot the ordinary lever 6, that moves the sliding valve 7 in the ordinary manner.
  • the sliding valve 7 on its exterior is of the ordinary cylindrical form and is fitted to slide within the bore of the case to withdraw and present its packed end 8 to the ordinary valve-seat 9 of the case.
  • This valve is also interiorly and longitudinally bored to form the cylindrical piston-chamber 10; but I prefer to make said chamber eccentric to the said valve, as best shown in Fig. 2, and I make the slot or recess 11 for the short arm of the lever 6 to work in on that side of the valve Where the wall of the piston-chamber is the thickest, as shown in Fig. 3.
  • Aperforation is made in the valve to form a communicating passage with the exterior of the valve and the piston-chamber within the said valve, which passage 12 is preferably made through the screw 13.
  • the piston 14 which fits said cylinder and is provided with a suitable packing 15 to make it tight.
  • the piston has also a guiding portion or disk 16, that fills the piston-chamber sufficiently to properly guide that end of the piston.
  • the body of the piston is reduced, as at 17, so that the short arm of the lever 6 may not interfere with its operation and also to save metal, and at the outer end of said piston is a stem 18, that is adapted to abut against the inner side of the screw-cap B, as shown in Fig. 3, which cap forms an abutment that is rigid with the case A.
  • valve 7 When the valve 7 is moved away from its seat to open it, the water in the piston-chamber can run out through the hole 12 and permil; the valve to slide back over the piston. When the valve 7 is closed, the water entering the piston-chamber through the hole 12 will force the piston into the position shown in Fig. 3, and if the piston-chamber is ofthe same diameter as the opening in the pipe leading to the valve-seat 9 the valve will be balanced. Of course these diameters may, if desired, be varied to throw the valve out of balance Without changing the general con struction.
  • a balance-valve the combination of the case, the sliding valve mounted therein.
  • a balance-valve the combination with the case, of a sliding valve mounted therein, and having a piston-chamber eccentric to the said valve, a freely-sliding piston centered within the said chamber solely by the Walls thereof, a lever pivoted on the said case with one arm extending into an opening at one side of the said sliding valve and in the thickest portion of the wall of the said eccentric piston-chamber, and ascrew-cap covering the end of the case and against which the end of the said piston may abut under the pressure of the Water when the valve is closed, substantially as described.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Mechanically-Actuated Valves (AREA)

Description

E. C. TERRY.
BALANCE VALVE.
(No Model.)
(Application filed Nov. 2, 1899.)
Patanted June 26, I900 F l 1 l EDWARD C. TERRY, OF'IIARTFORD, CONNECTICUT.
BALANCE-VALVE.
SPECIFICATION forming part of Letters Patent No. 652,495, dated June 26, 1900. Application filed November 2,1899. Serial No. 735,578. (No model.)
To all whom it may concern:
Be it known that I, EDWARD (J. TERRY, a citizen of the United States, residing in Hartford, in the county of Hartford and State of Connecticut, have invented certain new and useful Improvements in Balance-Valves, of which the following is a specification.
My invention relates to improvements in balance-valves; and the main objects of my improvements are simplicity and economyin construction and efficiency in operation.
In the accompanying drawings, Figure 1 is a side elevation of my valve. Fig. 2 is an end View of the same with the cap removed. Fig. 3 is a sectional view on the line as w of Fig. 2, and Fig. 4 is a detached side elevation of the internal piston.
The case A is of an ordinary form and need not be specifically described further than to note that it has a removable screw-cap B at one end and is provided with lugs 5, by which to pivot the ordinary lever 6, that moves the sliding valve 7 in the ordinary manner. The sliding valve 7 on its exterior is of the ordinary cylindrical form and is fitted to slide within the bore of the case to withdraw and present its packed end 8 to the ordinary valve-seat 9 of the case. This valve is also interiorly and longitudinally bored to form the cylindrical piston-chamber 10; but I prefer to make said chamber eccentric to the said valve, as best shown in Fig. 2, and I make the slot or recess 11 for the short arm of the lever 6 to work in on that side of the valve Where the wall of the piston-chamber is the thickest, as shown in Fig. 3. Aperforation is made in the valve to form a communicating passage with the exterior of the valve and the piston-chamber within the said valve, which passage 12 is preferably made through the screw 13.
Within the piston-chamber 10 of the valve I place the piston 14, which fits said cylinder and is provided with a suitable packing 15 to make it tight. The piston has also a guiding portion or disk 16, that fills the piston-chamber sufficiently to properly guide that end of the piston. The body of the piston is reduced, as at 17, so that the short arm of the lever 6 may not interfere with its operation and also to save metal, and at the outer end of said piston is a stem 18, that is adapted to abut against the inner side of the screw-cap B, as shown in Fig. 3, which cap forms an abutment that is rigid with the case A.
When the valve 7 is moved away from its seat to open it, the water in the piston-chamber can run out through the hole 12 and permil; the valve to slide back over the piston. When the valve 7 is closed, the water entering the piston-chamber through the hole 12 will force the piston into the position shown in Fig. 3, and if the piston-chamber is ofthe same diameter as the opening in the pipe leading to the valve-seat 9 the valve will be balanced. Of course these diameters may, if desired, be varied to throw the valve out of balance Without changing the general con struction.
By making the piston in a separate piece from the cap or case A and letting it merely rest against a fixed abutment it will center itself within the piston-chamber and is less liable to leak than in a construction where the piston is mounted on a fixed stem. I am also enabled to make the piston-chamber ec centric to the sliding valve, because screwing on the cap does not rotate the piston.
By making the piston-chamber eccentric to the sliding valve the pressure of the water within the piston-chamber is at the upper side of the sliding valve, while the pressure of the lever 6 is at the lower side of the valve, whereby the said pressures balance each other. I am also enabled to form the bearing-iace for'the lever where the metal is the thickest.
It is apparent that some changes from the specific construction herein disclosed may be made, and therefore I do not wish to be understood as limiting myself to the precise form of construction shown and described,- but desire the liberty to make such changes in working my invention as may fairly come within the spirit and scope of the same.
I claim as my invention- 1. In a balance-valve, the combination of the case, the sliding valve mounted therein.
and having a longitudinal piston-chamber, a freely-sliding piston centered within the said chamber solely by the walls thereof, and a screw-cap closing the end of the case, the said cap being formed separately from the said piston and case and rigidly secured in a fixed position on said case, against which cap the said piston abuts by the pressure of the water in the said piston-chamber when the said piston is at rest, substantially as described.
2. In a balance-valve, the combination with the case, of a sliding valve mounted therein, and having a piston-chamber eccentric to the said valve, a freely-sliding piston centered within the said chamber solely by the Walls thereof, a lever pivoted on the said case with one arm extending into an opening at one side of the said sliding valve and in the thickest portion of the wall of the said eccentric piston-chamber, and ascrew-cap covering the end of the case and against which the end of the said piston may abut under the pressure of the Water when the valve is closed, substantially as described.
3. In a balance-valve, the combination of the sliding valve having a longitudinal piston-chamber formed therein eccentrically to the said valve, a piston fitted within the said chamber and the operating-lever for moving the said sliding valve, the said lever being in engagement with the said valve on the side that is farthest from the piston, substantially as described.
4. The combination of the case, with a perforated and longitudinally-sliding valve having a piston-chamber therein, means for reciprocating the said valve, the sliding piston fitted at its head end to the said piston-chamber and having a guiding portion for its 0pposite end also fitted to the said piston-chamber while the portion between the said head end and guiding portion is of a reduced diameter, the said piston also having an outwardly-pr0jecting stem extending in the rear of the said guiding portion, and the cap on the said case against which cap the said stem of the said piston abuts for resisting the pressure of the water Within the said pistonchamber, substantially as described.
' EDWARD C. TERRY. Witnesses:
JAMES SHEPARD, A. W. STIPEK.
US73557899A 1899-11-02 1899-11-02 Balance-valve. Expired - Lifetime US652495A (en)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3102550A (en) * 1955-05-26 1963-09-03 Saunders Valve Co Ltd Fluid controlling valves
US3698206A (en) * 1970-07-29 1972-10-17 Phelan Louis A M Freezer door and draw off valve for a continuous freezer
US3908472A (en) * 1973-09-27 1975-09-30 Bertea Corp Drive mechanism

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3102550A (en) * 1955-05-26 1963-09-03 Saunders Valve Co Ltd Fluid controlling valves
US3698206A (en) * 1970-07-29 1972-10-17 Phelan Louis A M Freezer door and draw off valve for a continuous freezer
US3908472A (en) * 1973-09-27 1975-09-30 Bertea Corp Drive mechanism

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