WO2014046756A2 - Coupling with one-piece plural nipples - Google Patents

Coupling with one-piece plural nipples Download PDF

Info

Publication number
WO2014046756A2
WO2014046756A2 PCT/US2013/047004 US2013047004W WO2014046756A2 WO 2014046756 A2 WO2014046756 A2 WO 2014046756A2 US 2013047004 W US2013047004 W US 2013047004W WO 2014046756 A2 WO2014046756 A2 WO 2014046756A2
Authority
WO
WIPO (PCT)
Prior art keywords
plate
nipples
set forth
pair
fluid coupling
Prior art date
Legal status (The legal status 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 status listed.)
Ceased
Application number
PCT/US2013/047004
Other languages
French (fr)
Other versions
WO2014046756A3 (en
Inventor
William J. Cuva
Ricky A. Daigle
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
RTX Corp
Original Assignee
United Technologies Corp
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 United Technologies Corp filed Critical United Technologies Corp
Publication of WO2014046756A2 publication Critical patent/WO2014046756A2/en
Publication of WO2014046756A3 publication Critical patent/WO2014046756A3/en
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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
    • F16L19/00Joints in which sealing surfaces are pressed together by means of a member, e.g. a swivel nut, screwed on, or into, one of the joint parts
    • F16L19/005Joints in which sealing surfaces are pressed together by means of a member, e.g. a swivel nut, screwed on, or into, one of the joint parts comprising locking means for the threaded member
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F02COMBUSTION ENGINES; HOT-GAS OR COMBUSTION-PRODUCT ENGINE PLANTS
    • F02CGAS-TURBINE PLANTS; AIR INTAKES FOR JET-PROPULSION PLANTS; CONTROLLING FUEL SUPPLY IN AIR-BREATHING JET-PROPULSION PLANTS
    • F02C7/00Features, components parts, details or accessories, not provided for in, or of interest apart form groups F02C1/00 - F02C6/00; Air intakes for jet-propulsion plants
    • F02C7/22Fuel supply systems
    • F02C7/222Fuel flow conduits, e.g. manifolds
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F02COMBUSTION ENGINES; HOT-GAS OR COMBUSTION-PRODUCT ENGINE PLANTS
    • F02KJET-PROPULSION PLANTS
    • F02K3/00Plants including a gas turbine driving a compressor or a ducted fan
    • F02K3/08Plants including a gas turbine driving a compressor or a ducted fan with supplementary heating of the working fluid; Control thereof
    • F02K3/10Plants including a gas turbine driving a compressor or a ducted fan with supplementary heating of the working fluid; Control thereof by after-burners
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F05INDEXING SCHEMES RELATING TO ENGINES OR PUMPS IN VARIOUS SUBCLASSES OF CLASSES F01-F04
    • F05DINDEXING SCHEME FOR ASPECTS RELATING TO NON-POSITIVE-DISPLACEMENT MACHINES OR ENGINES, GAS-TURBINES OR JET-PROPULSION PLANTS
    • F05D2260/00Function
    • F05D2260/30Retaining components in desired mutual position
    • F05D2260/31Retaining bolts or nuts

Definitions

  • Fluid couplings are utilized in any number of industrial applications.
  • One type of fluid coupling includes a nipple having threads at an outer periphery, and a component having threads at an inner periphery which is connected to the nipple.
  • the component is attached to a fluid connection, such as a tube ferrule.
  • a plurality of circumferentially spaced fingers are ramped upwardly on a frustoconical surface associated with the nipple. These fingers snap into a ditch beyond the frustoconical surface, and this provides a force locking the component to the nipple such that the fluid connection is extremely reliable.
  • Such fluid connections are utilized in any number of industrial applications. As one major example, they are utilized to connect fuel tubes to a spray bar in gas turbine engines. Spray bars are utilized to direct fuel spray into a location where the fuel will be ignited.
  • One application for a spray bar is in an augmentor for a gas turbine engine.
  • an augmentor there are plural supply lines leading to the spray bar.
  • a fluid coupling assembly has a connection, including a plate and at least a pair of nipples extending away from the plate in a first direction, and at least a pair of connection pipes connected to each of the nipples extending from the plate in a second opposed direction.
  • the nipples include a thread at an outer periphery, a ramped surface spaced in a direction beyond the thread and towards the plate, and a ditch beyond the ramped surface.
  • a fluid coupling is connected to each of the nipples.
  • the fluid coupling has a thread at an inner periphery received on the thread on the nipple.
  • the coupling has a plurality of circumferentially spaced fingers spaced by grooves, with the fingers snapped into the ditch and biased against the ramped surface.
  • the plate, at least a pair of nipples and at least a pair of connection pipes are all formed of an integral piece of metal.
  • connection pipe extends away from the second face of the plate at an angle that is non- parallel to a planer surface of the plate.
  • the metal is a nickel based alloy.
  • the plate has a central hole for receiving a bolt to secure said plate to a mount surface.
  • a seal pack is associated with the plate, and between the plate and fluid couplings on the first side of the plate.
  • the bolt tightens the seal pack onto the plate and against the housing.
  • nipples extend at a non-parallel angle from the plate relative to an angle of extension for the pipe connection.
  • a fuel bar for use on a gas turbine engine has at least a pair of fuel pipes each leading to a plurality of spray nozzles.
  • the fuel pipes extend to a fluid coupling assembly.
  • the fluid coupling assembly includes a single fluid connection having a plate and at least a pair of nipples extending away from the plate in a first direction, and at least a pair of connection pipes connected to each of the nipples extending from the plate in a second opposed direction.
  • the nipples include a thread at an outer periphery, a ramped surface spaced in a direction beyond the thread and towards the plate, and a ditch beyond the ramped surface.
  • a fluid coupling is connected to each of the nipples.
  • the fluid coupling has a thread at an inner periphery received on the thread on the nipple.
  • the coupling has a plurality of circumferentially spaced fingers spaced by grooves, with the fingers snapped into the ditch and biased against the ramped surface.
  • the plate, at least a pair of nipples and at least a pair of connection pipes are all formed of an integral piece of metal.
  • connection pipe extends away from the second face of the plate at an angle that is non- parallel to a planer surface of the plate.
  • the metal is a nickel based alloy.
  • the plate has a central hole for receiving a bolt to secure the plate to a mount surface.
  • a seal pack is associated with the plate, and between the plate and fluid couplings on the first side of the plate.
  • a bolt tightens the seal pack onto the plate, and against the housing.
  • the nipples extend at a non-parallel angle from the plate relative to an angle of extension for the pipe connection.
  • a gas turbine engine augmentor has a turbine exhaust case mounting a spray bar.
  • a fuel bar has at least a pair of fuel pipes each leading to a plurality of spray nozzles.
  • the fuel pipes extend to a fluid coupling assembly.
  • a fluid coupling assembly has a single fluid connection with a plate and at least a pair of nipples extending away from the plate in a first direction, and at least a pair of connection pipes for being connected to each of the nipples extending from the plate in a second opposed direction.
  • the nipples include a thread at an outer periphery, a ramped surface spaced in a direction beyond the thread and towards the plate, and a ditch beyond the ramped surface.
  • a fluid coupling is connected to each of the nipples and has a thread at an inner periphery received on the thread on the nipple.
  • the coupling has a plurality of circumferentially spaced fingers spaced by grooves, with the fingers being snapped into the ditch and biased against the ramped surface.
  • the plate, at least a pair of nipples and at least a pair of connection pipes are all formed of an integral piece of metal.
  • connection pipe extends away from the second face of the plate and at an angle that is non- parallel to a planer surface of the plate.
  • the metal is a nickel based alloy.
  • the plate has a central hole for receiving a bolt to secure the plate to a mount surface.
  • a seal pack is associated with the plate, and between the plate and fluid couplings on the first side of the plate. The bolt tightens the seal pack onto the plate, and against the housing.
  • the nipples extend at a non-parallel angle from the plate relative to an angle of extension for the pipe connection.
  • Figure 1 schematically shows a gas turbine engine.
  • Figure 2 shows a spray bar
  • Figure 3 shows a fluid connection
  • Figure 4A shows a cross-section through a fully connected coupling.
  • Figure 4B shows an outside view of the fully connected coupling.
  • Figure 5 is a perspective view of a dual fitting.
  • Figure 1 shows a gas turbine 10 including a fan section 12, a compressor section 14, a combustor section 16, and a turbine section 18. Air entering into the fan section 12 is compressed and fed to the compressor section 14. In the compressor section 14, the incoming air from the fan section 12 is compressed and communicated to a combustor section 16. In the combustor section 16, the compressed air is mixed with fuel and ignited to generate a hot exhaust stream 28. The hot exhaust stream 28 is expanded across a turbine section 18, to drive the fan section 12 and the compressor section 14.
  • the gas turbine engine 10 includes an augmenter section 20 where additional fuel is be mixed with the exhaust gases 28 and ignited to generate additional thrust. Fuel spray bars 21 are part of this augmentor section 20. The exhaust gases 28 flow from the turbine section 18 and the augmenter section 20 through an exhaust liner assembly 22.
  • Figure 2 shows a portion of a turbine exit case, including a spray bar structure 21.
  • a plurality of injection nozzles 62 are connected to one tube 61, and a second tube 60 supplies fuel to other injection nozzles 64.
  • the tubes 60 and 61 extend to a one-piece fluid connection 100, including two fluid connection nipples 102.
  • a plate 104 connects the nipples 102.
  • FIG. 3 shows the complete fluid connection for the spray bar 21.
  • the plate 104 connects the nipples 102, and also the connection pipes 59 and 63.
  • the connection pipes 59 and 63 communicate with respective ones of the nipples 102 through internal fluid connections.
  • Connection pipe 63 is connected to the tube 61, and connection pipe 59 is connected to the tube 60.
  • the nipples 102 extend to couplings 108.
  • a left hand coupling 108 is shown fully assembled, and a right hand coupling 108 is removed to show nipple 102.
  • a bolt 138 may be tightened within a nut 139 to tighten the plate 104 towards a housing 132.
  • a seal pack 136/140 sits between housings 130, 132 and 134. Springs 150 assist in tightening the seal upwardly.
  • Figure 4A shows a cross-section through the combination of a nipple 102, and the coupling 108. As shown, there is a thread 112 on an outer periphery of the nipple 102 and a mating thread on an inner periphery of the coupling 108. A fluid connection 106 extends away from the coupling 108. As can be appreciated, the threads are followed by the ramped portion 110, and then the ditch 120 in that order, moving away from the coupling 108.
  • FIG. 4B there are a plurality of grooves 118 and circumferentially spaced fingers 116 at a forward end of the coupling 108.
  • the fingers ramp upwardly over a frustoconical portion 110, or ramped surface, on the outer periphery of the nipple, and snap into a ditch 120 beyond the frustoconical portion 110.
  • These fingers 116 press, or are biased, against the outer surface of the nipple, and create forces to provide a tight engagement of the threads at 112.
  • a connecting hole 300 in the plate 104 can be seen in Figure 5, and serves to receive the bolt as shown in Figure 3.
  • FIG. 5 shows the connection 100 including the connecting plate 104, the connection pipes 59 and 63, and the nipples 102.
  • the connections 59 and 63 extend away from the plate 104 at an angle A. While angle A is illustrated as approximately 45°, any number of angles may be utilized.
  • the nipples 102 may extend generally perpendicularly to the plate 104, and non-parallel to the connection pipes 59 and 63.
  • the connection 100 is formed in an integral piece of metal, such as by machining away material.
  • the metal may be a nickel based alloy, such as InconelTM, or other appropriate metals.
  • connection 100 is formed of a single piece of metal, the problems with the brazed connection as described in the Background of the Invention section of this application are avoided.

Landscapes

  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Gasket Seals (AREA)
  • Quick-Acting Or Multi-Walled Pipe Joints (AREA)

Description

COUPLING WITH ONE-PIECE PLURAL NIPPLES
CROSS-REFERENCE TO RELATED APPLICATION INVENTION
[0001] This application claims priority to U.S. Application Serial No. 13/542,075, filed July 5, 2012.
STATEMENT REGARDING FEDERALLY SPONSORED RESEARCH OR DEVELOPMENT
[0002] This invention was made with government support under contract number N00019-02-C-3003 awarded by United States Navy. The government has certain rights in the invention.
BACKGROUND OF THE INVENTION
[0003] Fluid couplings are utilized in any number of industrial applications. One type of fluid coupling includes a nipple having threads at an outer periphery, and a component having threads at an inner periphery which is connected to the nipple. The component is attached to a fluid connection, such as a tube ferrule.
[0004] As the component is tightened on the threads on the nipple, a plurality of circumferentially spaced fingers are ramped upwardly on a frustoconical surface associated with the nipple. These fingers snap into a ditch beyond the frustoconical surface, and this provides a force locking the component to the nipple such that the fluid connection is extremely reliable.
[0005] Such fluid connections are utilized in any number of industrial applications. As one major example, they are utilized to connect fuel tubes to a spray bar in gas turbine engines. Spray bars are utilized to direct fuel spray into a location where the fuel will be ignited.
[0006] One application for a spray bar is in an augmentor for a gas turbine engine. In an augmentor, there are plural supply lines leading to the spray bar.
[0007] In the prior art, a connecting member has been brazed to the two separate couplings such that they can be used together. However, by brazing the two together, there may be distortion, location issues, and additional failure points. Further, particularly when used in a spray bar, there are vibration and durability issues which raise challenges due to the added failure points, location issues, and distortion as mentioned above. SUMMARY OF THE INVENTION
[0008] In a featured embodiment, a fluid coupling assembly has a connection, including a plate and at least a pair of nipples extending away from the plate in a first direction, and at least a pair of connection pipes connected to each of the nipples extending from the plate in a second opposed direction. The nipples include a thread at an outer periphery, a ramped surface spaced in a direction beyond the thread and towards the plate, and a ditch beyond the ramped surface. A fluid coupling is connected to each of the nipples. The fluid coupling has a thread at an inner periphery received on the thread on the nipple. The coupling has a plurality of circumferentially spaced fingers spaced by grooves, with the fingers snapped into the ditch and biased against the ramped surface. The plate, at least a pair of nipples and at least a pair of connection pipes are all formed of an integral piece of metal.
[0009] In another embodiment according to the previous embodiment, the connection pipe extends away from the second face of the plate at an angle that is non- parallel to a planer surface of the plate.
[00010] In another embodiment according to any of the previous embodiments, the metal is a nickel based alloy.
[00011] In another embodiment according to any of the previous embodiments, the plate has a central hole for receiving a bolt to secure said plate to a mount surface.
[00012] In another embodiment according to any of the previous embodiments, a seal pack is associated with the plate, and between the plate and fluid couplings on the first side of the plate.
[00013] In another embodiment according to any of the previous embodiments, the bolt tightens the seal pack onto the plate and against the housing.
[00014] In another embodiment according to any of the previous embodiments, nipples extend at a non-parallel angle from the plate relative to an angle of extension for the pipe connection.
[00015] In another featured embodiment, a fuel bar for use on a gas turbine engine has at least a pair of fuel pipes each leading to a plurality of spray nozzles. The fuel pipes extend to a fluid coupling assembly. The fluid coupling assembly includes a single fluid connection having a plate and at least a pair of nipples extending away from the plate in a first direction, and at least a pair of connection pipes connected to each of the nipples extending from the plate in a second opposed direction. The nipples include a thread at an outer periphery, a ramped surface spaced in a direction beyond the thread and towards the plate, and a ditch beyond the ramped surface. A fluid coupling is connected to each of the nipples. The fluid coupling has a thread at an inner periphery received on the thread on the nipple. The coupling has a plurality of circumferentially spaced fingers spaced by grooves, with the fingers snapped into the ditch and biased against the ramped surface. The plate, at least a pair of nipples and at least a pair of connection pipes are all formed of an integral piece of metal.
[00016] In another embodiment according to any of the previous embodiments, the connection pipe extends away from the second face of the plate at an angle that is non- parallel to a planer surface of the plate.
[00017] In another embodiment according to any of the previous embodiments, the metal is a nickel based alloy.
[00018] In another embodiment according to any of the previous embodiments, the plate has a central hole for receiving a bolt to secure the plate to a mount surface.
[00019] In another embodiment according to any of the previous embodiments, a seal pack is associated with the plate, and between the plate and fluid couplings on the first side of the plate.
[00020] In another embodiment according to any of the previous embodiments, a bolt tightens the seal pack onto the plate, and against the housing.
[00021] In another embodiment according to any of the previous embodiments, the nipples extend at a non-parallel angle from the plate relative to an angle of extension for the pipe connection.
[00022] In another featured embodiment, a gas turbine engine augmentor has a turbine exhaust case mounting a spray bar. A fuel bar has at least a pair of fuel pipes each leading to a plurality of spray nozzles. The fuel pipes extend to a fluid coupling assembly. A fluid coupling assembly has a single fluid connection with a plate and at least a pair of nipples extending away from the plate in a first direction, and at least a pair of connection pipes for being connected to each of the nipples extending from the plate in a second opposed direction. The nipples include a thread at an outer periphery, a ramped surface spaced in a direction beyond the thread and towards the plate, and a ditch beyond the ramped surface. A fluid coupling is connected to each of the nipples and has a thread at an inner periphery received on the thread on the nipple. The coupling has a plurality of circumferentially spaced fingers spaced by grooves, with the fingers being snapped into the ditch and biased against the ramped surface. The plate, at least a pair of nipples and at least a pair of connection pipes are all formed of an integral piece of metal.
[00023] In another embodiment according to the previous embodiment, the connection pipe extends away from the second face of the plate and at an angle that is non- parallel to a planer surface of the plate.
[00024] In another embodiment according to any of the previous embodiments, the metal is a nickel based alloy.
[00025] In another embodiment according to any of the previous embodiments, the plate has a central hole for receiving a bolt to secure the plate to a mount surface.
[00026] In another embodiment according to any of the previous embodiments, a seal pack is associated with the plate, and between the plate and fluid couplings on the first side of the plate. The bolt tightens the seal pack onto the plate, and against the housing.
[00027] In another embodiment according to any of the previous embodiments, the nipples extend at a non-parallel angle from the plate relative to an angle of extension for the pipe connection.
[0001] These and other features of the invention will be better understood from the following specifications and drawings, the following of which is a brief description.
BRIEF DESCRIPTION OF THE DRAWINGS
[0002] Figure 1 schematically shows a gas turbine engine.
[0003] Figure 2 shows a spray bar.
[0004] Figure 3 shows a fluid connection.
[0005] Figure 4A shows a cross-section through a fully connected coupling.
[0006] Figure 4B shows an outside view of the fully connected coupling.
[0007] Figure 5 is a perspective view of a dual fitting.
DETAILED DESCRIPTION
[0008] Figure 1 shows a gas turbine 10 including a fan section 12, a compressor section 14, a combustor section 16, and a turbine section 18. Air entering into the fan section 12 is compressed and fed to the compressor section 14. In the compressor section 14, the incoming air from the fan section 12 is compressed and communicated to a combustor section 16. In the combustor section 16, the compressed air is mixed with fuel and ignited to generate a hot exhaust stream 28. The hot exhaust stream 28 is expanded across a turbine section 18, to drive the fan section 12 and the compressor section 14. In this example, the gas turbine engine 10 includes an augmenter section 20 where additional fuel is be mixed with the exhaust gases 28 and ignited to generate additional thrust. Fuel spray bars 21 are part of this augmentor section 20. The exhaust gases 28 flow from the turbine section 18 and the augmenter section 20 through an exhaust liner assembly 22.
[0009] The above gas turbine engine is exemplary, and the teachings of this application would extend to other types of gas turbine engines.
[00010] Figure 2 shows a portion of a turbine exit case, including a spray bar structure 21. As shown, a plurality of injection nozzles 62 are connected to one tube 61, and a second tube 60 supplies fuel to other injection nozzles 64. The tubes 60 and 61 extend to a one-piece fluid connection 100, including two fluid connection nipples 102. As shown, a plate 104 connects the nipples 102.
[00011] Figure 3 shows the complete fluid connection for the spray bar 21. As shown, the plate 104 connects the nipples 102, and also the connection pipes 59 and 63. As can be understood, the connection pipes 59 and 63 communicate with respective ones of the nipples 102 through internal fluid connections. Connection pipe 63 is connected to the tube 61, and connection pipe 59 is connected to the tube 60. The nipples 102 extend to couplings 108. A left hand coupling 108 is shown fully assembled, and a right hand coupling 108 is removed to show nipple 102.
[00012] A bolt 138 may be tightened within a nut 139 to tighten the plate 104 towards a housing 132. As shown, a seal pack 136/140 sits between housings 130, 132 and 134. Springs 150 assist in tightening the seal upwardly.
[00013] Figure 4A shows a cross-section through the combination of a nipple 102, and the coupling 108. As shown, there is a thread 112 on an outer periphery of the nipple 102 and a mating thread on an inner periphery of the coupling 108. A fluid connection 106 extends away from the coupling 108. As can be appreciated, the threads are followed by the ramped portion 110, and then the ditch 120 in that order, moving away from the coupling 108.
[00014] As shown in Figure 4B, there are a plurality of grooves 118 and circumferentially spaced fingers 116 at a forward end of the coupling 108. The fingers ramp upwardly over a frustoconical portion 110, or ramped surface, on the outer periphery of the nipple, and snap into a ditch 120 beyond the frustoconical portion 110. These fingers 116 press, or are biased, against the outer surface of the nipple, and create forces to provide a tight engagement of the threads at 112. [00015] A connecting hole 300 in the plate 104 can be seen in Figure 5, and serves to receive the bolt as shown in Figure 3.
[00016] Figure 5 shows the connection 100 including the connecting plate 104, the connection pipes 59 and 63, and the nipples 102. As shown, the connections 59 and 63 extend away from the plate 104 at an angle A. While angle A is illustrated as approximately 45°, any number of angles may be utilized. In general, as shown, the nipples 102 may extend generally perpendicularly to the plate 104, and non-parallel to the connection pipes 59 and 63. The connection 100 is formed in an integral piece of metal, such as by machining away material. The metal may be a nickel based alloy, such as Inconel™, or other appropriate metals.
[00017] Since the connection 100 is formed of a single piece of metal, the problems with the brazed connection as described in the Background of the Invention section of this application are avoided.
[00018] In addition, while two connections are shown, it should be understood that any number of other connections can be included.
[00019] Although an embodiment of this invention has been disclosed, a worker of ordinary skill in this art would recognize that certain modifications would come within the scope of this invention. For that reason, the following claims should be studied to determine the true scope and content of this invention.

Claims

1. A fluid coupling assembly comprising:
a connection, including a plate and at least a pair of nipples extending away from said plate in a first direction, and at least a pair of connection pipes connected to each of said nipples extending from said plate in a second opposed direction, said nipples including a thread at an outer periphery, a ramped surface spaced in a direction beyond said thread and towards said plate, and a ditch beyond said ramped surface;
a fluid coupling connected to each of said nipples, said fluid coupling having a thread at an inner periphery received on said thread on said nipple, and said coupling having a plurality of circumferentially spaced fingers spaced by grooves, with said fingers snapped into said ditch and biased against said ramped surface; and
said plate, said at least a pair of nipples and said at least a pair of connection pipes are all formed of an integral piece of metal.
2. The fluid coupling assembly as set forth in claim 1, wherein said connection pipe extending away from said second face of said plate at an angle which is non-parallel to a planer surface of said plate.
3. The fluid coupling assembly as set forth in claim 1, wherein said metal is a nickel based alloy.
4. The fluid coupling assembly as set forth in claim 1 , wherein said plate has a central hole for receiving a bolt to secure said plate to a mount surface.
5. The fluid coupling assembly as set forth in claim 4, wherein a seal pack is associated with said plate, and between said plate and said fluid couplings on said first side of said plate.
6. The fluid coupling assembly as set forth in claim 5, wherein said bolt tightens said seal pack onto said plate, and against the housing.
7. The fluid coupling assembly as set forth in claim 1, wherein said nipples extend at a non-parallel angle from said plate relative to an angle of extension for said pipe connection.
8. A fuel bar for use on a gas turbine engine comprising:
at least a pair of fuel pipes each leading to a plurality of spray nozzles, and said fuel pipes extending to a fluid coupling assembly;
said fluid coupling assembly including a single fluid connection having a plate and at least a pair of nipples extending away from said plate in a first direction, and at least a pair of connection pipes connected to each of said nipples extending from said plate in a second opposed direction, said nipples including a thread at an outer periphery, a ramped surface spaced in a direction beyond said thread and towards said plate, and a ditch beyond said ramped surface, a fluid coupling connected to each of said nipples, said fluid coupling having a thread at an inner periphery received on said thread on said nipple, and said coupling having a plurality of circumferentially spaced fingers spaced by grooves, with said fingers snapped into said ditch and biased against said ramped surface; and
said plate, said at least a pair of nipples and said at least a pair of connection pipes are all formed of an integral piece of metal.
9. A fuel bar as set forth claim 8, wherein said connection pipe extending away from said second face of said plate at an angle which is non-parallel to a planer surface of said plate.
10. The fuel bar as set forth in claim 8, wherein said metal is a nickel based alloy.
11. The fuel bar as set forth in claim 8, wherein said plate has a central hole for receiving a bolt to secure said plate to a mount surface.
12. The fuel bar as set forth in claim 11, wherein a seal pack is associated with said plate, and between said plate and said fluid couplings on said first side of said plate.
13. The fuel bar as set forth in claim 12, wherein said bolt tightens said seal pack onto said plate, and against the housing.
14. The fuel bar as set forth in claim 8, wherein said nipples extend at a non-parallel angle from said plate relative to an angle of extension for said pipe connection.
15. A gas turbine engine augmentor comprising:
a turbine exhaust case, said turbine exhaust case mounting a spray bar;
a fuel bar including at least a pair of fuel pipes each leading to a plurality of spray nozzles, and said fuel pipes extending to a fluid coupling assembly;
a fluid coupling assembly including a single fluid connection having a plate and at least a pair of nipples extending away from said plate in a first direction, and at least a pair of connection pipes for being connected to each of said nipples extending from said plate in a second opposed direction, said nipples including a thread at an outer periphery, a ramped surface spaced in a direction beyond said thread and towards said plate, and a ditch beyond said ramped surface, a fluid coupling connected to each of said nipples, said fluid coupling having a thread at an inner periphery received on said thread on said nipple, and said coupling having a plurality of circumferentially spaced fingers spaced by grooves, with said fingers being snapped into said ditch and biased against said ramped surface; and
said plate, said at least a pair of nipples and said at least a pair of connection pipes are all formed of an integral piece of metal.
16. A gas turbine engine augmentor as set forth in claim 15, wherein said connection pipe extending away from said second face of said plate at an angle which is non-parallel to a planer surface of said plate.
17. A gas turbine engine augmentor as set forth in claim 15, wherein said metal is a nickel based alloy.
18. A gas turbine engine augmentor as set forth in claim 15, wherein said plate has a central hole for receiving a bolt to secure said plate to a mount surface.
19. The gas turbine engine as set forth in claim 18, wherein a seal pack is associated with said plate, and between said plate and said fluid couplings on said first side of said plate, said bolt tightens said seal pack onto said plate, and against the housing.
20. The gas turbine engine as set forth in claim 15, wherein said nipples extend at a non- parallel angle from said plate relative to an angle of extension for said pipe connection.
PCT/US2013/047004 2012-07-05 2013-06-21 Coupling with one-piece plural nipples Ceased WO2014046756A2 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
US13/542,075 US8641099B2 (en) 2012-07-05 2012-07-05 Coupling with one-piece plural nipples
US13/542,075 2012-07-05

Publications (2)

Publication Number Publication Date
WO2014046756A2 true WO2014046756A2 (en) 2014-03-27
WO2014046756A3 WO2014046756A3 (en) 2014-06-26

Family

ID=49877941

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/US2013/047004 Ceased WO2014046756A2 (en) 2012-07-05 2013-06-21 Coupling with one-piece plural nipples

Country Status (2)

Country Link
US (1) US8641099B2 (en)
WO (1) WO2014046756A2 (en)

Families Citing this family (14)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105333246B (en) 2008-12-10 2018-04-17 斯瓦戈洛克公司 Cutting ferrule collet with axial load
RU2555924C2 (en) 2010-01-21 2015-07-10 Своджлок Компани Pipeline clamping device with fixing structure for pipe fitting
CN102985740B (en) 2010-07-09 2016-01-06 世伟洛克公司 Pipe fittings with flexible torque collars
US20130145607A1 (en) * 2011-12-13 2013-06-13 United Technologies Corporation Fitting for use with nut with internal locking mechanism
FR2987881B1 (en) * 2012-03-07 2014-03-14 Jpb Systeme SECURE CONNECTION DEVICE, IN PARTICULAR FOR PIPING, TIP FOR THIS DEVICE AND METHOD FOR MANUFACTURING AN ASSOCIATED NUT.
US11262013B2 (en) 2014-01-14 2022-03-01 The Boeing Company Tube fitting
US10060563B2 (en) * 2014-01-14 2018-08-28 The Boeing Company Tube fitting
US10359141B2 (en) 2014-01-14 2019-07-23 The Boeing Company Tube fitting
US9939095B2 (en) * 2014-01-29 2018-04-10 The Boeing Company Tube fitting
RU2678474C2 (en) 2014-05-09 2019-01-29 Своджлок Компани Conduit fitting with components adapted for facilitating assembly
KR102351742B1 (en) * 2016-03-23 2022-01-14 스웨이지락 캄파니 Conduit Fittings with Stroke Resistance Features
US11408540B2 (en) 2017-09-27 2022-08-09 General Electric Company Tube coupling assembly
US11703165B2 (en) 2018-04-27 2023-07-18 Swagelok Company Ferrule assembly for conduit fitting
US11092400B2 (en) * 2018-08-21 2021-08-17 Jess Briley Manufacturing Company Shotgun choke assemblies and firearm suppressor assemblies and methods connecting the same

Family Cites Families (19)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3263479A (en) * 1963-06-26 1966-08-02 Otto J Johnson Attaching device for hose fittings
US3944264A (en) * 1975-01-06 1976-03-16 Westinghouse Air Brake Company Pipe bracket
US4893845A (en) * 1988-04-18 1990-01-16 Proprietary Technology, Inc. Firewall heater line adapter
US5058930A (en) 1990-03-09 1991-10-22 Lourdes Industries High pressure coupling with provision for preventing separation of parts and with anti-galling provision
US5388866A (en) * 1990-03-09 1995-02-14 Lourdes Industries High pressure coupling with provision for preventing separation of parts and with anti-galling provision
US5131690A (en) * 1991-07-29 1992-07-21 Mano Michael E Self-locking connector
US5148863A (en) * 1992-01-15 1992-09-22 Earl's Supply Co. Modular cooler
US5279112A (en) * 1992-02-18 1994-01-18 General Electric Company Fuel line fitting
US5890746A (en) * 1996-12-18 1999-04-06 General Electric Company Cooled and wetted redundant seal tube fitting
US6302447B1 (en) * 1999-06-11 2001-10-16 Airdrome Parts Co. Self-locking coupling device
US6581981B2 (en) * 2000-04-26 2003-06-24 Gary W. Cooper Pipe-fitting with flexible sleeve and cinching nut
DE10026769C2 (en) * 2000-06-04 2003-03-06 Frank Prochiner Connection construction for connecting components
US6520545B2 (en) * 2000-12-08 2003-02-18 Sartorius Ag Fluid connection adapter assembly
US6905142B2 (en) * 2002-09-25 2005-06-14 Huck Patents, Inc. Hydraulic coupling
DE10245742B4 (en) * 2002-10-01 2006-09-07 Josef Martin Gmbh & Co. Kg Multiple clutch device
FR2857080B1 (en) * 2003-07-01 2007-04-13 J P B Systeme LOCKING DEVICE AND PIPE FITTING THUS EQUIPPED
WO2006031386A2 (en) * 2004-09-10 2006-03-23 Sps Technologies, Llc Fluid coupling assembly with integral retention mechanism
US7647775B2 (en) * 2005-06-30 2010-01-19 United Technologies Corporation Augmentor spray bars
US20070164566A1 (en) * 2006-01-19 2007-07-19 Nilesh Patel Lockwireless coupling assembly

Also Published As

Publication number Publication date
US20140008908A1 (en) 2014-01-09
US8641099B2 (en) 2014-02-04
WO2014046756A3 (en) 2014-06-26

Similar Documents

Publication Publication Date Title
US8641099B2 (en) Coupling with one-piece plural nipples
US9932903B2 (en) Fuel manifold and fuel injector arrangement
CA2580327C (en) Fuel conveying member with side-brazed sealing members
US8978383B2 (en) Fuel manifold heat shield for a gas turbine engine
CA2594321C (en) Fuel conveying member for a gas turbine engine
US9140453B2 (en) Fuel manifold with jumper tubes
US9523504B2 (en) Fuel manifold and fuel injector arrangement
EP2942509B1 (en) A fuel manifold and fuel injector arrangment for a combustion chamber
EP3992434B1 (en) Service tube assembly for a gas turbine engine
EP3182014B1 (en) Injector fittings
EP2657610B1 (en) A combustor and a method for assembling the combustor
CN106662329A (en) Fuel nozzle assembly with removable components
EP3045741B1 (en) Captive component on a fastener
US9581335B2 (en) Fuel nozzle tube retention
EP2378082B1 (en) Compressor assembly with a splitter
CN116490729A (en) Combustion modules for turbines
EP2738354B1 (en) Gas turbine combustion chamber and transition piece
US12297776B2 (en) Fuel manifold adapter
CN105465832B (en) Burner arrangement with fastening system for burner components
US7000952B2 (en) Duct separation restraint apparatus and method
US20120304655A1 (en) Turbomachine combustor assembly including a liner stop
US20190113153A1 (en) Bracket for a tube of an engine in a space-limited compartment
US20100148498A1 (en) Swivel Misalignment Coupling for Connecting Conduit Sections

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 13838298

Country of ref document: EP

Kind code of ref document: A2

122 Ep: pct application non-entry in european phase

Ref document number: 13838298

Country of ref document: EP

Kind code of ref document: A2