Claims
- 1. A thermostatic expansion valve, comprising:a body having a metering passage fluidly connecting a first passage in the body and second passage in the body, and defining a flow path through the body; a power element integral with said body, said power element including a diaphragm supported within a diaphragm chamber; a valve assembly in the first passage, said valve assembly including i) a plunger retainer threadably received in the first passage, ii) a plunger moveably connected to the plunger retainer and having a throttling member controlling the flow through an orifice in the metering passage, and iii) a spring extending between the plunger and biasing the plunger, and hence the throttling member, toward the orifice, the plunger and plunger retainer including cooperating catch devices to allow the plunger to be easily assembled with the plunger retainer, and to prevent the plunger from being easily disassembled from the plunger retainer; and a valve stem operatively connected to and extending away from the diaphragm through an internal bore in the valve body into said metering passage and engaging said valve assembly, wherein the movement of the diaphragm in the diaphragm chamber controls the movement of the throttling member of the valve assembly and hence controls the flow through the expanding valve.
- 2. The thermostatic expansion valve as in claim 1, wherein one of the catch devices is resilient deflectable to allow the plunger to be assembled with the plunger retainer.
- 3. The thermostatic expansion valve as in claim 2, wherein the plunger retainer includes a base with external threads, and a pair of spaced apart fingers are integral with the base and extend outwardly away therefrom toward the plunger, the fingers each including a catch device at the distal end of the respective finger, and the catch devices of the finger projecting inwardly toward each other and dimensioned to cooperate with the catch device of the plunger.
- 4. The thermostatic expansion valve as in claim 3, wherein the fingers are unitary with the base.
- 5. The thermostatic expansion valve as in claim 4, wherein the base includes a through-passage allowing fluid flow through the base.
- 6. The thermostatic expansion valve as in claim 5, wherein the fingers outwardly bound the through-passage in the base.
- 7. The thermostatic expansion valve as in claim 1, wherein the plunger retainer includes an annular lower spring stop facing the plunger, and the plunger includes an annular upper spring stop facing the plunger retainer, and the spring extends between the respective spring stops on the plunger and plunger retainer.
- 8. The thermostatic expansion valve as in claim 1, wherein said plunger includes a body and a stem extending outwardly from the body toward the plunger retainer, said plunger stem including an annular catch device at the distal end of the plunger stem, the annular catch device dimensioned to cooperate with the catch device of the plunger.
- 9. The thermostatic expansion valves as in claim 8, wherein said throttling member is unitary with said plunger.
- 10. The thermostatic expansion valve as in claim 1, wherein the plunger retainer includes a base with external threads and a through-passage in the base allowing fluid flow through the base, and a pair of spaced apart fingers are unitary with the base and outwardly bound the through passage, the fingers extending outwardly away from the base toward the plunger and the fingers each include a catch device at the distal end of the respective finger, the catch devices of the fingers projecting inwardly toward each other, and said plunger including a body and a stem extending outwardly from the body toward the plunger retainer, said plunger stem including an annular catch device at the distal end of the plunger stem, the catch devices of the fingers dimensioned to cooperate with the annular catch device of the stem.
- 11. A thermostatic expansion valve, comprising:a body having a metering passage fluidly connecting a condenser outlet passage and an evaporator inlet passage and defining a flow path through the body; a power element integral with said body, said power element including a diaphragm supported within a diaphragm chamber; a valve assembly in the condenser outlet passage, said valve assembly metering fluid flow through an orifice in the metering passage, said valve assembly consisting only of a plunger retainer, a plunger and a spring, said plunger retainer threadably received in the condenser outlet passage, said plunger moveably connected to the plunger retainer and having a throttling member controlling the flow through the orifice in the metering passage and said spring extending between the plunger retainer and the plunger and biasing the plunger, and hence the throttling member, toward the orifice; and a valve stem operatively connected to and extending away from the diaphragm through an internal bore in the valve body into said metering passage and engaging said valve assembly, wherein the movement of the diaphragm in the diaphragm chamber controls the movement of the throttling member of the valve assembly and hence controls the flow through the expansion valve.
- 12. The thermostatic expansion valve as in claim 11, the plunger and plunger retainer including cooperating catch devices wherein one of the catch devices is resiliently deflectable to allow the plunger to be assembled with the plunger retainer.
- 13. The thermostatic expansion valve as in claim 12, wherein the plunger retainer includes a base with external threads, and a pair of spaced apart fingers are integral with the base and extend outwardly away therefrom toward the plunger, the fingers each including a catch device at the distal end of the respective finger, and the catch devices of the fingers projecting inwardly toward each other and dimensioned to cooperate with the plunger to prevent the plunger from being disassembled from the plunger retainer.
- 14. The thermostatic expansion valve as in claim 11, wherein the fingers are unitary with the base.
- 15. The thermostatic expansion valve as in claim 14, wherein the base includes a through-passage allowing fluid flow through the base.
- 16. The thermostatic expansion valve as in claim 15, wherein the fingers outwardly bound the through-passage in the base.
- 17. The thermostatic expansion valve as in claim 11, wherein the plunger retainer includes an annular lower spring stop facing the plunger, and the plunger includes an annular upper spring stop facing the plunger retainer, and the spring extends between the respective spring stops on the plunger and plunger retainer.
- 18. The thermostatic expansion valve as in claim 11, wherein said plunger includes a body and a stem extending outwardly from the body toward the plunger retainer, said plunger stem including an annular catch device at the distal end of the plunger stem, the annular catch device dimensioned to cooperate with the plunger retainer to prevent the plunger from being disassembled from the plunger retainer.
- 19. The thermostatic expansion valve as in claim 18, wherein said throttling member is unitary with said plunger.
- 20. The thermostatic expansion valve as in claim 11, wherein the plunger retainer includes a base with external threads and a through-passage in the base allowing fluid flow through the base, and a pair of spaced apart fingers are unitary with the base and outwardly bound the through passage, the fingers extending outwardly away from the base toward the plunger and the fingers each include a catch device at the distal end of the respective finger, the catch devices of the fingers projecting inwardly toward each other, and said plunger including a body and a stem extending outwardly from the body toward the plunger retainer, said plunger stem including an annular catch device at the distal end of the plunger stem, the catch devices of the fingers dimensioned to cooperate with the annular catch device of the stem.
- 21. A thermostatic expansion valve, comprising:a body having a metering passage fluidly connecting a condenser outlet passage and an evaporator inlet passage and defining a flow path through the body; a power element integral with said body, said power element including a diaphragm supported within a diaphragm chamber; a valve assembly in the condenser outlet passage, said valve assembly including i) a plunger retainer threadably received in the condenser outlet passage, ii) a plunger moveably connected to the plunger retainer and having a throttling member controlling the flow through an orifice in the metering passage, and iii) a sprig extending between the plunger retainer and the plunger and biasing the plunger, and hence the throttling member, toward the orifice, said plunger including a stem extending away from the plunger and toward the plunger retainer, said plunger stem including an annular catch device which engages a portion of the plunger retainer to prevent the plunger from being disassembled from the plunger retainer; and a valve stem operatively connected to and extending away from the diaphragm through an internal bore in the valve body into said metering passage and engaging said valve assembly, wherein the movement of the diaphragm in the diaphragm chamber controls the movement of the throttling member of the valve assembly and hence controls the flow through the expansion valve.
- 22. The thermostatic expansion valve as in claim 21, wherein the plunger retainer includes a resilient portion which cooperates with the annular catch on the valve stem to allow the plunger retainer to be easily assembled with the plunger.
- 23. The thermostatic expansion valve as in claim 22, wherein the plunger retainer includes a base with external threads, and a pair of spaced apart finger are integral with the base and extend outwardly away therefrom toward the plunger, the fingers each including a catch device at the distal end of the respective finger, and the catch devices of the fingers projecting inwardly toward each other and dimensioned to cooperate with the catch device of the plunger.
- 24. The thermostatic expansion valve as in claim 23, wherein the fingers are unitary with the base.
- 25. The thermostatic expansion valve as in claim 24, wherein the base includes a through passage allowing fluid flow through the base.
- 26. The thermostatic expansion valve as in claim 25, wherein the fingers outwardly bound the through-passage in the base.
- 27. The thermostatic expansion valve as in claim 21, wherein the plunger retainer includes an annular lower spring stop facing the plunger, and the plunger includes an annular upper spring stop facing the plunger retainer, and the spring extends between the respective spring stops on the plunger and plunger retainer.
- 28. The thermostatic expansion valve as in claim 21, wherein said throttling member is unitary with said plunger.
- 29. A thermostatic expansion valve, comprising:a body having a metering passage fluidly connecting a condenser outlet passage and an evaporator inlet passage and defining a flow path through the body; a power element integral with said body, said power element including a diaphragm supported within a diaphragm chamber; a valve assembly in the condenser outlet passage, said valve assembly including i) a plunger retainer threadly received in the condenser outlet passage, ii) a plunger moveably connected to the plunger retainer and having a throttling member controlling the flow through an orifice in the metering passage, and iii) a spring extending between the plunger retainer and the plunger and biasing the plunger, and hence the throttling member, toward the orifice, said plunger retainer including a base with external threads and at least one finger unitary with the base and extending away from the base and toward the plunger, said at least one finger including a catch device which engages a portion of the plunger to prevent the plunger from being disassembled from the plunger retainer; and a valve stem operatively connected to and extending away from the diaphragm through an internal bore in the valve body into said metering passage and engaging said valve assembly, wherein the movement of the diaphragm in the diaphragm chamber controls the movement of the throttling member of the valve assembly and hence controls the flow through the expansion valve.
- 30. The thermostatic expansion valve as in claim 29, wherein at least one finger is resiliently deflectable to allow the plunger retainer to be easily assembled with the plunger.
- 31. The thermostatic expansion valve as in claim 30, wherein the at least one finger is unitary with the base.
- 32. The thermostatic expansion valve as in claim 31, wherein the base includes a through-passage allowing fluid flow through the base.
- 33. The thermostatic expansion valve as in claim 32, wherein the at least one finger outwardly bounds the through-passage in the base.
- 34. The thermostatic expansion valve as in claim 30, wherein the plunger retainer includes an annular lower spring stop facing the plunger, and the plunger includes an annular upper spring stop facing the plunger retainer, and the spring extends between the respective spring stops on the plunger and plunger retainer.
- 35. The thermostatic expansion valve as in claim 30, wherein said plunger includes a body and a stem extending outwardly from the body toward the plunger retainer, said plunger stem including an annular catch device at the distal end of the plunger stem, the annular catch device dimensioned to cooperate with plunger to prevent the plunger from being disassembled from the plunger retainer.
- 36. The thermostatic expansion valve as in claim 35, wherein said throttling member is unitary with said plunger.
- 37. A thermostatic expansion valve, comprising:a body having a metering passage fluidly connecting a condenser outlet passage and an evaporator inlet passage and defining a flow path through the body; a power element integral with said body, said power element including a diaphragm supported within a diaphragm chamber; a valve assembly in the condenser outlet passage, said valve assembly including i) a plunger retainer threadably received in the condenser outlet passage, ii) a plunger moveably connected to the plunger retainer and having a throttling member controlling the flow through an orifice in the metering passage, and iii) a spring extending between the plunger retainer and the plunger and biasing the plunger, and hence the throttling member toward the orifice, and further including means integral with said plunger and said plunger retainer for allowing easy assembly of the plunger with the plunger retainer and preventing easy disassembly of the plunger from the plunger retainer; and a valve stem operatively connected to and extending away from the diaphragm through an internal bore in the valve body into said metering passage and engaging said valve assembly, wherein the movement of the diaphragm in the diaphragm chamber controls the movement of the throttling member of the valve assembly and hence controls the flow through the expansion valve.
- 38. The thermostatic expansion valve as in claim 37, wherein said means includes resilient means.
- 39. The thermostatic expansion valve as in claim 38, wherein said plunger and said plunger retainer are each unitary, one-piece components.
CROSS-REFERENCE TO RELATED CASES
The present application claims priority to U.S. Provisional Application Ser. No. 60/160,663; filed Oct. 21, 1999.
US Referenced Citations (15)
Provisional Applications (1)
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Number |
Date |
Country |
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60/160663 |
Oct 1999 |
US |