PRESSURE REDUCTION VALVE
20170153653 ยท 2017-06-01
Assignee
Inventors
Cpc classification
International classification
Abstract
A pressure reduction valve includes: a housing; an inlet and an outlet provided in the housing; a piston movable in the housing; a rod extending from the piston toward the inlet; a rod sliding part where the rod slides in the housing; a valve element provided in the rod; a valve seat to be seated with the valve element; a valve chamber formed around the valve element downstream the valve seat; a pressure control chamber provided between the piston and the housing downstream of the piston to communicate with the outlet; a passage formed in the rod and the piston; a spring to urge the piston and the rod to separate the valve element from the valve seat; and a sealing member provided in the rod sliding part. A wear ring is provided upstream of the seal member to narrow a clearance between the rod sliding part and the housing.
Claims
1. A pressure reduction valve including: a housing; an inlet and an outlet provided on an axial one end and the other end of the housing, respectively; a piston provided in the housing in an axially movable state; a rod axially extending from the piston toward the inlet; a rod sliding part along which the rod is configured to slide with respect to the housing; a valve element provided on a leading end of the rod; a valve seat configured to be seated with the valve element in the housing; a valve chamber formed around the valve element downstream of the valve seat; a pressure control chamber provided between the piston and the housing on a downstream side of the piston to communicate with the outlet; a passage formed in the rod and the piston to flow fluid from the valve chamber to the pressure control chamber; a spring configured to urge the piston and the rod in a direction to separate the valve element from the valve seat; and a sealing member provided on the rod sliding part, the pressure reduction valve being configured such that fluid introduced from the inlet is flown in the pressure control chamber between the valve element and the valve seat via the passage and when the fluid pressure in the pressure control chamber is balanced with the urging force of the spring, the fluid is decompressed and then flown out of the outlet, wherein the pressure reduction valve further includes a narrowing member placed upstream of the sealing member to narrow a clearance between the rod sliding part and the housing.
2. The pressure reduction valve according to claim 1, wherein the narrowing member includes a wear ring provided at an outer circumference of the rod.
3. The pressure reduction valve according to claim 1, wherein the narrowing member includes a flange formed at an outer circumference of the rod.
4. The pressure reduction valve according to claim 1, wherein the narrowing member includes a wear ring provided at an outer circumference of the rod and a flange formed at an outer circumference of the rod on a downstream side of the wear ring.
5. The pressure reduction valve according to claim 1, wherein the pressure reduction valve includes: a piston sliding part along which the piston is configured to slide with respect to the housing; a second sealing member provided on the piston sliding part; and a second narrowing member placed downstream of the second sealing member to narrow a clearance between the piston sliding part and the housing.
6. The pressure reduction valve according to claim 2, wherein the pressure reduction valve includes: a piston sliding part along which the piston is configured to slide with respect to the housing; a second sealing member provided on the piston sliding part; and a second narrowing member placed downstream of the second sealing member to narrow a clearance between the piston sliding part and the housing,
7. The pressure reduction valve according to claim 3, wherein the pressure reduction valve includes: a piston sliding part along which the piston is configured to slide with respect to the housing; a second sealing member provided on the piston sliding part; and a second narrowing member placed downstream of the second sealing member to narrow a clearance between the piston sliding part and the housing.
8. The pressure reduction valve according to claim 4, wherein the pressure reduction valve includes: a piston sliding part along which the piston is configured to slide with respect to the housing; a second sealing member provided on the piston sliding part; and a second narrowing member placed downstream of the second sealing member to narrow a clearance between the piston sliding part and the housing.
9. The pressure reduction valve according to claim 5, wherein the second narrowing member includes a second wear ring provided at an outer circumference of the piston.
10. The pressure reduction valve according to claim 6, wherein the second narrowing member includes a second wear ring provided at an outer circumference of the piston.
11. The pressure reduction valve according to claim 7, wherein the second narrowing member includes a second wear ring provided at an outer circumference of the piston.
12. The pressure reduction valve according to claim 8, wherein the second narrowing member includes a second wear ring provided at an outer circumference of the piston.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0010]
[0011]
[0012]
[0013]
[0014]
[0015]
[0016]
DESCRIPTION OF EMBODIMENTS
First Embodiment
[0017] A first embodiment embodying a pressure reduction valve of the present invention is now explained in detail below with reference to the accompanying drawings.
[0018]
[0019] The body case 3 is formed in a hollow cylindrical shape, and inside the case 3 is provided with a metal piston 9 which is axially movable. On an axial one-end side (on a lower side in
[0020] A leading end of the rod 9a is provided with a valve element 12 having a tapered shape tapering toward its tip end. In corresponding to the valve element 12, a valve seat 13, on which the tip end of the valve element 12 is allowed to be seated (the valve is allowed to be closed), is held between the body case 3 and the inlet-side case 5. The valve seat 13 has a ring-like shaped valve hole in its center and is made separately from the cases 3 and 5 by resin. In the body case 3, a valve chamber 4 is formed downstream of the valve seat 13 and around the valve element 12.
[0021] The inlet-side case 5 is formed with an inlet-side passage 5a which communicates with the inlet 4. On an opposite side from the inlet 4, the inlet-side passage 5a includes a step portion 5b changed its passage diameter in a stepwise fashion. This step portion 5b is formed with a metal mesh filter 15 to capture foreign matters in the fluid and a metal bush 16 to hold the filter 15. The bush 16 is held between the filter 15 and the valve seat 13. The valve seat 13 is held between the body case 3 and the inlet-side case 5 as mentioned above, and hence the filter 15 is pressed against the step portion 5b via the bush 16.
[0022] A pressure control chamber 17 is provided between the piston 9 and the outlet-side case 7 on a downstream side (on an upper side in
[0023] A piston passage 9b is formed in radial center portions of the rod 9a and the piston 9 to flow fluid from the valve chamber 14 to the pressure control chamber 17. This piston passage 9b is communicated with the valve chamber 14 through a plurality of holes in the vicinity of the valve element 12. The air chamber 18 of the body case 3 is provided with a spring 21 to urge the piston 9 and the rod 9a in a direction to separate the valve element 12 from the valve seat 13.
[0024] In the rod sliding part 11, a first lip seal 22 is provided at an outer circumference of the rod 9a. This lip seal 22 is formed in a V-shape in section and fitted in a circumferential groove 9c formed at the outer circumference of the rod 9a. The first lip seal 22 is made of rubber and corresponds to one example of a sealing member. Further, in the piston sliding part 10, a second lip seal 23 is provided at an outer circumference of the piston 9. This lip seal 23 is fitted in a circumferential groove 9d formed at the outer circumference of the piston 9. The second lip seal 23 is made of rubber and corresponds to one example of a second sealing member.
[0025] The pressure reduction valve 1 configured as mentioned above is configured such that the fluid introduced through the inlet 4 is flown to the pressure control chamber 17 between the valve element 12 and the valve seat 13 via the piston passage 9b, and when the fluid pressure in the pressure control chamber 17 is balanced with the urging force of the spring 21, the fluid is decompressed and then flown out of the outlet 6.
[0026] In the rod sliding part 11, a first wear ring 31 to narrow a clearance of the sliding part 11 is provided upstream of the first lip seal 22 at the outer circumference of the rod 9a. The first wear ring 31 is formed in a C-shape and fitted in a circumferential groove 9e which is formed at the outer circumference of the rod 9a. The first wear ring 31 corresponds to one example of a narrowing member.
[0027] In the piston sliding part 10, a second wear ring 32 to narrow a clearance of the sliding part 10 is provided downstream of the second lip seal 23 at the outer circumference of the piston 9. The wear ring 32 is formed in a C-shape and fitted in a circumferential groove 9f which is formed at the outer circumference of the piston 9. The wear ring 32 also has a similar shape to the one shown in
[0028] According to the pressure reduction valve 1 of the above-mentioned embodiment, the fluid having flown through the inlet 4 flows in the pressure control chamber 17 between the valve element 12 and the valve seat 13 via the piston passage 9b, and when the fluid pressure in the pressure control chamber 17 is balanced with the urging force of the spring, the fluid is decompressed and then flown out of the outlet 6. At this time, the clearance of the rod sliding part 11 is narrowed by the first wear ring 31 on the upstream side of the first lip seal 22, and thus even if the high-pressure fluid suddenly flows from the inlet 4 into the valve chamber 14 and the fluid pressure (inrush pressure) is applied to the rod sliding part 11, the first wear ring 31 relaxes the pressure increase at the first lip seal 22 which is positioned downstream of the first wear ring 31. As shown in
[0029]
[0030] Further, in the present embodiment, the clearance of the piston sliding part 10 is narrowed by the second wear ring 32 on the downstream side (on the upper side in
Second Embodiment
[0031] A second embodiment embodying a pressure reduction valve of the present invention is now explained in detail with reference to the accompanying drawings. In the foregoing explanation, similar components with the first embodiment are indicated with the same referential signs with the first embodiment, and explanation thereof is omitted. The following explanation is made with a focus on the differences from the first embodiment.
[0032]
[0033] According to the present embodiment, the clearance of the rod sliding part 11 on the upstream side (on the lower side in
Third Embodiment
[0034] Next, a third embodiment embodying a pressure reduction valve of the present invention is explained in detail with reference to the accompanying drawings.
[0035]
[0036] In the present embodiment, even though the first wear ring 31 is not provided, the clearance of the rod sliding part 11 is narrowed by a flange 9g on the upstream side (on the lower side in
[0037] The present invention is not limited to the above embodiments and may be partly applied with various changes without departing from the scope of the subject matter.
[0038] In the above first and second embodiments, the first and second wear rings 31 and 32 are obliquely cut in the cut portions 31a and 32a, respectively, such that the both end faces of each of the cut portions 31a and 32a face each other. As one alternative for this, as shown in a perspective view of
[0039] In the above embodiments, the first and second lip seals 22 and 23 are provided as sealing members, but the sealing member is not limited to the lip seal and may be any other component which enables to ensure sealing function of the sliding part.
[0040] In the above embodiments, the piston 9 and the rod 9a are integrally formed, but alternatively, these elements may be individually formed and then joined together.
[0041] In the above embodiments, the rod 9a and the valve element 12 are separately formed, but alternatively, the rod 9a and the valve element 12 may be integrally formed.
INDUSTRIAL APPLICABILITY
[0042] The present invention can be utilized for a fluid supply device to decompress and supply high-pressure fluid such as high-pressure gas. One example of the fluid supply device is a hydrogen supply device to supply hydrogen gas to a fuel cell.
REFERENCE SIGNS LIST
[0043] 1 Pressure reduction valve
[0044] 2 Housing
[0045] 4 Inlet
[0046] 6 Outlet
[0047] 9 Piston
[0048] 9a Rod
[0049] 9b Piston passage
[0050] 10 Piston sliding part
[0051] 11 Rod sliding part
[0052] 12 Valve element
[0053] 13 Valve seat
[0054] 14 Valve chamber
[0055] 17 Pressure control chamber
[0056] 21 Spring
[0057] 22 First lip seal (sealing member)
[0058] 23 Second lip seal (second sealing member)
[0059] 31 First wear ring (narrowing member)
[0060] 32 Second wear ring (second narrowing member)