WO1991009248A1 - Valve assemblies - Google Patents

Valve assemblies Download PDF

Info

Publication number
WO1991009248A1
WO1991009248A1 PCT/GB1990/001962 GB9001962W WO9109248A1 WO 1991009248 A1 WO1991009248 A1 WO 1991009248A1 GB 9001962 W GB9001962 W GB 9001962W WO 9109248 A1 WO9109248 A1 WO 9109248A1
Authority
WO
WIPO (PCT)
Prior art keywords
valve
casing
valve assembly
valves
collar
Prior art date
Application number
PCT/GB1990/001962
Other languages
French (fr)
Inventor
William Alexander Erwin
Original Assignee
William Alexander Erwin
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by William Alexander Erwin filed Critical William Alexander Erwin
Publication of WO1991009248A1 publication Critical patent/WO1991009248A1/en
Priority to GB9212769A priority Critical patent/GB2261720B/en

Links

Classifications

    • 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
    • F16LPIPES; JOINTS OR FITTINGS FOR PIPES; SUPPORTS FOR PIPES, CABLES OR PROTECTIVE TUBING; MEANS FOR THERMAL INSULATION IN GENERAL
    • F16L37/00Couplings of the quick-acting type
    • F16L37/28Couplings of the quick-acting type with fluid cut-off means
    • F16L37/30Couplings of the quick-acting type with fluid cut-off means with fluid cut-off means in each of two pipe-end fittings
    • F16L37/32Couplings of the quick-acting type with fluid cut-off means with fluid cut-off means in each of two pipe-end fittings at least one of two lift valves being opened automatically when the coupling is applied
    • 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
    • F16LPIPES; JOINTS OR FITTINGS FOR PIPES; SUPPORTS FOR PIPES, CABLES OR PROTECTIVE TUBING; MEANS FOR THERMAL INSULATION IN GENERAL
    • F16L37/00Couplings of the quick-acting type
    • F16L37/08Couplings of the quick-acting type in which the connection between abutting or axially overlapping ends is maintained by locking members
    • F16L37/10Couplings of the quick-acting type in which the connection between abutting or axially overlapping ends is maintained by locking members using a rotary external sleeve or ring on one part
    • F16L37/107Bayonet-type couplings

Definitions

  • This invention relates to valve assemblies for u with, for example radiators or other liquid holding containers or reservoirs (hereinafter in the specification and claims simply called “reservoirs”) integrated or to be integrated into a piped liquid system.
  • radiators for example radiators or other liquid holding containers or reservoirs (hereinafter in the specification and claims simply called “reservoirs”) integrated or to be integrated into a piped liquid system.
  • GB Patent No. 1,359,142 discloses a two part, manually operable radiator valve for use in closing of a water supply to enable a radiator to be removed.
  • the valve has a first portion with a port containing a spring-loaded primary valve member, and a second porti with a port containing a second valve member with an externally accessible adjustment control capable of opening the second and first valve members to allow water to flow through the valve.
  • Essential to the operation of this valve is the requirement that to remove the radiator, the second valve member has first to be manually closed to cut off outflow of water from the radiator and by so doing to allow the primary valv member to close under its spring-loading to cut off fl of water from the central heating system.
  • An object of the present invention is to obviate or mitigate this disadvantage.
  • the present invention is a valve assembly including two mutually opposed valves, each o which comprises a casing in which a through passage is defined, the passages having at contiguous ends internally circumferential valve seats against which respective movable valve elements are biased, the elements being capable of opening each other when together, a coupling member to hold the valves together, and the casing of one of the valves having a extension accommodating a flow regulating control valv at its distal end, the extension having a branch to be connected to a reservoir.
  • the coupling member is a collar whic is rotatable and axially fast or substantially so arou the casing of the other valve.
  • the casing of the one valve having the control valve preferably has two or more bayonets extending radially therefrom to engage with slots provided in outer end of the collar.
  • both casings have at contiguous ends on their respective outside faces a peripheral se gland to engage against the inside surface of the collar.
  • Each seal gland desirably consists of an O-ri seated in a peripheral groove.
  • the other valve has its contiguo end reduced in diameter to be accommodated in the contiguous end of the one valve, and peripheral sea glands are provided in the outside of the reduced diameter part of the casing of the other valve to e against the inside surface of the one valve.
  • control valve is manu operable.
  • control valve is thermostatically controlled.
  • Fig. 1 shows a vertical cross-sectional view o valve assembly according to the present invention, t assembly having a manually-operable flow regulating control valve;
  • Fig. 2 shows a side view in part vertical sect of a modified valve assembly having a thermostatical controlled flow regulating control valve.
  • a valve assembly includes two mutually opposed elongate valv
  • Each valve 10 in a lengthwise relationship.
  • Each valve 10 compr a tubular casing 12 in which a through passage 14 is defined.
  • the passage 14 has at one end, ie. the end which the second valve 10 is to be connected, an internally circumferential valve seat 16 against whi movable valve element 18 is spring biased.
  • the valve element 18 is a poppet valve which i conical in shape and of rubber or other suitable synthetic plastics material.
  • the valve element 18 has a spigot device 20 centrally thereof with part of the spigot device 20 projecting outwardly of said one end to extend under the influence of the spring biasing beyond the contiguous end of the casing 12.
  • the biasing is provided by a helical compression spring 22.
  • the spring 22 extends between the rear of the element 18 and an annular retaining plate 24 which is held in position against a collar 26, integral with the casing 12, by a circlip 28.
  • the other end of the spigot 20 extends, as shown, through the hole in the plate 24 when the valve element 18 is out of its seat.
  • the other end of the casing 12 of the lower valve 10 terminates with an external screw thread 32 to allow the valve assembly to be integrated into a piped liquid system.
  • the casing 12 of the upper or one valve 10 as • shown in Fig. 1 is extended to accommodate a flow regulating control valve at its other end.
  • the extension 44 terminates with an internal screw-thread 55 into which a manually-operable control valve 30 is fitted.
  • the extension 44 has a branch 46 having an external screw thread 48 to allow the assembly to be connected to a reservoir.
  • the spring 22 for the upper valve 10 extends between the rear of the valve element 18 and the fro of a valve element 34 of the control valve 30.
  • the element 34 can be manually screwed into abutment wit seat 36 provided internally of the respective casing
  • the control valve 30 When the control valve 30 is in a closed position, ie with the element 34 in abutment in the seat 36, the through passage 14 in the respective casing 1 is clo off.
  • the contiguous ends of the valves 10 are coupled together by a coupling member providing each contiguo end with a seal gland, namely an external groove 38 i which an 0-ring 40 is positioned.
  • the coupling member a collar 42 mounted around the lower valve casing 12.
  • the collar 42 has an internally extending flar --3 50 which abuts a peripheral stop 52 on the casinc 12 and has a free rotational movement but a restrictad axial movement between said stop 52 and abutment ag anst a circlip 54 provided in a peripheral groove on the outside of the casing 12 as shown.
  • the collar 42 hold the two valves 10 together, and is locked by two or m spaced bayonet connections, each L-shaped slot 56 (Fig.2) of which connections engaging with a respecti bayonet 58.
  • the bayonets 58 need not necessarily be similarly positioned on the casing 12 of upper valve but may be arranged at different levels as indicated Fig. 2.
  • the lower valve 10 and collar 42 serves as a female part of the assembly and the upper valve as the male part of the assembly.
  • valve assemblies as above described are fitted to pipes of the system and pipes of the reservoir.
  • the male upper valve 10 is inserted int the collar 42, the bayonets 58 enter the slots 56 and the collar 42 is rotated for the bayonets to enter the lower parts of the slots and be locked therein.
  • the mutually opposed spigot devices 20 hold the valve elements 18 open against their spring biasing. If the reservoir requires to be removed, the collar 42 fastening the valves 10 together is released by rotatin it, the male upper valve is lifted away from the female lower valve, thereby causing the valve elements 18 immediately to close under the influence of their respective springs 22 to prevent leakage of liquid therefrom.
  • a cap (not shown) can be provided to be fastened to the one end of the lower valve 10 to protec against accidental downward movement of the spigot device 20 causing liquid leakage.
  • the spring 22 of the upper valve 10 is held in position by a screwed-in annular fitment 62 and the extension 44 has a thermostatically controlled flow regulating control valve 64 (shown diagrammatically) fitted into the screw thread 55.
  • the integral collar 26 is replace in this modified assembly by a circlip 66.
  • the lower valve 10, at its inner end, is reduced in diameter and two peripheral grooves 68 are provided to seat O-rings 70 fitted therein, the groves 68 and O-rings 70 forming seal glands.
  • This arrangement replaces grooves 38 and O-rings 40 in the assembly of the embodiment.
  • the O-rings 70 bear against the inside wall of the casing 12 of the upper valve 10 as shown.
  • the poppet valve elements 18 have four spines 60 which extend to the full internal diameter of the casing 12 as shown in Fig. 2.
  • valve elements 18 are extended away from the seats and have a co-axial tubula housing for the springs 22 as shown in Fig. 2.
  • This invention is advantageous in that it allows for ready removal of reservoirs without the hitherto disadvantages. Also in a domestic situation, several pipes for fitment for radiator(s) can be provided whereby the positioning of the radiator(s) can be altered to suit the housewife's requirements in furnishings and decoration. In an industrial situation, the reservoirs may contain other liquids such as milk, beverages or chemicals. Also, for a water system, a water storage tank may constitute the reservoir. Variations and other modifications can be made without departing from the scope of the invention as above described.

Landscapes

  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Valve Housings (AREA)
  • Lift Valve (AREA)

Abstract

A valve assembly includes two mutually opposed valves (10). Each valve (10) comprises a casing (12) in which a through passage (14) is defined. The passages (14) have at contiguous ends internally circumferential valve seats (16) against which respective movable valve elements (18) are biased. The elements (18) are capable of opening each other when held together. A coupling member (42) is provided to hold the valves (10) together. The casing (12) of one of the valves (10) has an extension (44) accommodating a flow regulating control valve (30, 64) at its distal end. The extension (44) has a branch (46) to be connected to a reservoir.

Description

VALVE ASSEMBLIES.
This invention relates to valve assemblies for u with, for example radiators or other liquid holding containers or reservoirs (hereinafter in the specification and claims simply called "reservoirs") integrated or to be integrated into a piped liquid system.
GB Patent No. 1,359,142 discloses a two part, manually operable radiator valve for use in closing of a water supply to enable a radiator to be removed. The valve has a first portion with a port containing a spring-loaded primary valve member, and a second porti with a port containing a second valve member with an externally accessible adjustment control capable of opening the second and first valve members to allow water to flow through the valve. Essential to the operation of this valve is the requirement that to remove the radiator, the second valve member has first to be manually closed to cut off outflow of water from the radiator and by so doing to allow the primary valv member to close under its spring-loading to cut off fl of water from the central heating system.
This is disadvantageous particularly if the radiator valve is not manually-operable.
An object of the present invention is to obviate or mitigate this disadvantage.
Accordingly, the present invention is a valve assembly including two mutually opposed valves, each o which comprises a casing in which a through passage is defined, the passages having at contiguous ends internally circumferential valve seats against which respective movable valve elements are biased, the elements being capable of opening each other when together, a coupling member to hold the valves together, and the casing of one of the valves having a extension accommodating a flow regulating control valv at its distal end, the extension having a branch to be connected to a reservoir.
Preferably, the coupling member is a collar whic is rotatable and axially fast or substantially so arou the casing of the other valve. The casing of the one valve having the control valve preferably has two or more bayonets extending radially therefrom to engage with slots provided in outer end of the collar. Preferably also, both casings have at contiguous ends on their respective outside faces a peripheral se gland to engage against the inside surface of the collar. Each seal gland desirably consists of an O-ri seated in a peripheral groove. Alternatively, the other valve has its contiguo end reduced in diameter to be accommodated in the contiguous end of the one valve, and peripheral sea glands are provided in the outside of the reduced diameter part of the casing of the other valve to e against the inside surface of the one valve.
Preferably further, the control valve is manu operable.
Alternatively, the control valve is thermostatically controlled.
An embodiment of the present invention will n described, by way of example, with reference to the accompanying drawings, in which:-
Fig. 1 shows a vertical cross-sectional view o valve assembly according to the present invention, t assembly having a manually-operable flow regulating control valve; and
Fig. 2 shows a side view in part vertical sect of a modified valve assembly having a thermostatical controlled flow regulating control valve.
Referring to Fig. 1 of the drawings, a valve assembly includes two mutually opposed elongate valv
10 in a lengthwise relationship. Each valve 10 compr a tubular casing 12 in which a through passage 14 is defined. The passage 14 has at one end, ie. the end which the second valve 10 is to be connected, an internally circumferential valve seat 16 against whi movable valve element 18 is spring biased.
The valve element 18 is a poppet valve which i conical in shape and of rubber or other suitable synthetic plastics material. The valve element 18 has a spigot device 20 centrally thereof with part of the spigot device 20 projecting outwardly of said one end to extend under the influence of the spring biasing beyond the contiguous end of the casing 12. The biasing is provided by a helical compression spring 22.
In the lower of the two valves (ie. the other valve) as shown in Fig. 1 , the spring 22 extends between the rear of the element 18 and an annular retaining plate 24 which is held in position against a collar 26, integral with the casing 12, by a circlip 28. The other end of the spigot 20 extends, as shown, through the hole in the plate 24 when the valve element 18 is out of its seat. The other end of the casing 12 of the lower valve 10 terminates with an external screw thread 32 to allow the valve assembly to be integrated into a piped liquid system.
The casing 12 of the upper or one valve 10 as • shown in Fig. 1 , is extended to accommodate a flow regulating control valve at its other end. The extension 44 terminates with an internal screw-thread 55 into which a manually-operable control valve 30 is fitted. The extension 44 has a branch 46 having an external screw thread 48 to allow the assembly to be connected to a reservoir. The spring 22 for the upper valve 10 extends between the rear of the valve element 18 and the fro of a valve element 34 of the control valve 30. The element 34 can be manually screwed into abutment wit seat 36 provided internally of the respective casing When the control valve 30 is in a closed position, ie with the element 34 in abutment in the seat 36, the through passage 14 in the respective casing 1 is clo off. The contiguous ends of the valves 10 are coupled together by a coupling member providing each contiguo end with a seal gland, namely an external groove 38 i which an 0-ring 40 is positioned. The coupling member a collar 42 mounted around the lower valve casing 12. The collar 42 has an internally extending flar --3 50 which abuts a peripheral stop 52 on the casinc 12 and has a free rotational movement but a restrictad axial movement between said stop 52 and abutment ag anst a circlip 54 provided in a peripheral groove on the outside of the casing 12 as shown. The collar 42 hold the two valves 10 together, and is locked by two or m spaced bayonet connections, each L-shaped slot 56 (Fig.2) of which connections engaging with a respecti bayonet 58. The bayonets 58 need not necessarily be similarly positioned on the casing 12 of upper valve but may be arranged at different levels as indicated Fig. 2. The lower valve 10 and collar 42 serves as a female part of the assembly and the upper valve as the male part of the assembly.
In use, valve assemblies as above described are fitted to pipes of the system and pipes of the reservoir. When the male upper valve 10 is inserted int the collar 42, the bayonets 58 enter the slots 56 and the collar 42 is rotated for the bayonets to enter the lower parts of the slots and be locked therein. The mutually opposed spigot devices 20 hold the valve elements 18 open against their spring biasing. If the reservoir requires to be removed, the collar 42 fastening the valves 10 together is released by rotatin it, the male upper valve is lifted away from the female lower valve, thereby causing the valve elements 18 immediately to close under the influence of their respective springs 22 to prevent leakage of liquid therefrom. A cap (not shown) can be provided to be fastened to the one end of the lower valve 10 to protec against accidental downward movement of the spigot device 20 causing liquid leakage.
In the modified valve assembly as shown in Fig. 2 the spring 22 of the upper valve 10 is held in position by a screwed-in annular fitment 62 and the extension 44 has a thermostatically controlled flow regulating control valve 64 (shown diagrammatically) fitted into the screw thread 55. The integral collar 26 is replace in this modified assembly by a circlip 66. The lower valve 10, at its inner end, is reduced in diameter and two peripheral grooves 68 are provided to seat O-rings 70 fitted therein, the groves 68 and O-rings 70 forming seal glands. This arrangement, as can be seen, replaces grooves 38 and O-rings 40 in the assembly of the embodiment. The O-rings 70 bear against the inside wall of the casing 12 of the upper valve 10 as shown. In a first modification of the assembly or modified assembly, the poppet valve elements 18 have four spines 60 which extend to the full internal diameter of the casing 12 as shown in Fig. 2.
In a further modification of both the assembly an the modified assembly, the valve elements 18 are extended away from the seats and have a co-axial tubula housing for the springs 22 as shown in Fig. 2.
This invention is advantageous in that it allows for ready removal of reservoirs without the hitherto disadvantages. Also in a domestic situation, several pipes for fitment for radiator(s) can be provided whereby the positioning of the radiator(s) can be altered to suit the housewife's requirements in furnishings and decoration. In an industrial situation, the reservoirs may contain other liquids such as milk, beverages or chemicals. Also, for a water system, a water storage tank may constitute the reservoir. Variations and other modifications can be made without departing from the scope of the invention as above described.

Claims

CLAIMS :
1. A valve assembly including two mutually opposed valves, each of which comprises a casing in which a through passage is defined, the passages having at contiguous ends internally circumferential valve seats against which respective movable valve elements are biased, the elements being capable of opening each oth when together, a coupling member to hold the valves together, and the casing of one of the valves having a extension accommodating a flow regulating control valv at its distal end, the extension having a branch to be connected to a reservoir.
2. A valve assembly as claimed in Claim 1 , wherein the coupling member is a collar which is rotatable and axially fast or substantially so around the casing of the other valve.
3. A valve assembly as claimed in Claim 2, wherein the casing of the one valve having the control valve has two or more bayonets extending radially therefrom engage with slots provided in outer end of the collar.
4. A valve assembly as claimed in Claim 2 or 3, wherein both casings have at contiguous ends on their respective outside faces a peripheral seal gland to engage against the inside surface of the collar.
5. A valve assembly as claimed in Claim 4, wherein each seal gland consists of an 0-ring seated in a peripheral groove.
6. A valve assembly as claimed in Claim 4, wherein the other valve has its contiguous end reduced in diameter to be accommodated in the contiguous end of the one valve, and peripheral seal glands are provided in the outside of the reduced diameter part of the casing of the other valve to engage against the inside surface of the one valve.
7. A valve assembly as claimed in any one of the preceding Claims, wherein the control valve is manually- operable.
8. A valve assembly as claimed in any one of Claims 1 to 6, wherein the control valve is thermostatically controlled.
9. A valve assembly substantially as hereinbefore described with reference to Fig. 1 of the accompanying drawings.
10. A valve assembly substantially as hereinbefore described with reference to Fig. 2 of the accompanying drawings.
PCT/GB1990/001962 1989-12-16 1990-12-17 Valve assemblies WO1991009248A1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
GB9212769A GB2261720B (en) 1989-12-16 1992-06-16 Valve assemblies

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
GB8928461A GB8928461D0 (en) 1989-12-16 1989-12-16 Valve assemblies
GB8928461.6 1989-12-16

Publications (1)

Publication Number Publication Date
WO1991009248A1 true WO1991009248A1 (en) 1991-06-27

Family

ID=10668073

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/GB1990/001962 WO1991009248A1 (en) 1989-12-16 1990-12-17 Valve assemblies

Country Status (9)

Country Link
EP (1) EP0505457A1 (en)
AU (1) AU6972091A (en)
CA (1) CA2071639A1 (en)
GB (1) GB8928461D0 (en)
IE (1) IE904538A1 (en)
NZ (1) NZ236484A (en)
PT (1) PT96227A (en)
WO (1) WO1991009248A1 (en)
ZA (1) ZA9010152B (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2250073A (en) * 1990-11-15 1992-05-27 Aeroquip Ag Refrigeration system service couplings
EP0742878A1 (en) * 1994-02-28 1996-11-20 Aeroquip Corporation Fluid coupling with adjustable pressure relief valve
WO2010105799A1 (en) 2009-03-20 2010-09-23 Alexander Erwin Valve assembly

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH08511607A (en) * 1993-06-28 1996-12-03 ランワース エイジア リミテッド Auxiliary valve for faucet

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2823048A (en) * 1957-04-17 1958-02-11 Hansen Mfg Co Valve unit
US3289700A (en) * 1964-08-10 1966-12-06 Gildone Anthony Michael Valve connector
GB1359142A (en) * 1971-07-15 1974-07-10 British Gas Corp Radiator valves machines for making hot beverage
US3851666A (en) * 1973-03-09 1974-12-03 Hansen Mfg Co Coupling assembly

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2823048A (en) * 1957-04-17 1958-02-11 Hansen Mfg Co Valve unit
US3289700A (en) * 1964-08-10 1966-12-06 Gildone Anthony Michael Valve connector
GB1359142A (en) * 1971-07-15 1974-07-10 British Gas Corp Radiator valves machines for making hot beverage
US3851666A (en) * 1973-03-09 1974-12-03 Hansen Mfg Co Coupling assembly

Cited By (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2250073A (en) * 1990-11-15 1992-05-27 Aeroquip Ag Refrigeration system service couplings
GB2250073B (en) * 1990-11-15 1994-08-24 Aeroquip Ag Refrigeration system service adapter
EP0742878A1 (en) * 1994-02-28 1996-11-20 Aeroquip Corporation Fluid coupling with adjustable pressure relief valve
EP0742878A4 (en) * 1994-02-28 1997-11-05 Aeroquip Corp Fluid coupling with adjustable pressure relief valve
WO2010105799A1 (en) 2009-03-20 2010-09-23 Alexander Erwin Valve assembly
KR20120002592A (en) * 2009-03-20 2012-01-06 알렉산더 어윈 Valve assembly
CN102414500A (en) * 2009-03-20 2012-04-11 亚历山大.欧文 Valve assembly
US9074712B2 (en) 2009-03-20 2015-07-07 John Milligan Valve assembly
AU2010225199B2 (en) * 2009-03-20 2016-07-28 Erwin, William Alexander Valve assembly
KR101705385B1 (en) 2009-03-20 2017-02-09 알렉산더 어윈 Valve assembly

Also Published As

Publication number Publication date
EP0505457A1 (en) 1992-09-30
ZA9010152B (en) 1991-09-25
CA2071639A1 (en) 1991-06-17
AU6972091A (en) 1991-07-18
GB8928461D0 (en) 1990-02-21
IE904538A1 (en) 1991-06-19
PT96227A (en) 1992-09-30
NZ236484A (en) 1992-04-28

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