IP Library Granted Patent US 9,765,770
Granted Patent B2
US 9,765,770 · App. 14/383,218 · Granted Sep 19, 2017

Automatic valve with a spring holder ring

Inventors: Alberto Babbini (Terni, IT); Riccardo Bagagli (Florence, IT); Guido Pratelli (Pisa, IT)
Assignee: Nuovo Pignone SRL
F04B49/225F04B39/102F04B39/1053F16K15/08F16K15/12Y10T137/7062
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Quick Facts
Patent No.
US 9,765,770
App. No.
14/383,218
Granted
Sep 19, 2017
Kind
B2
Abstract

An automatic valve including a valve seat having first gas flow passages extending there through and a valve guard having second gas flow passages extending there through. The valve further comprises at least one shutter member movably arranged between the valve guard and the valve seat, at least one set of spring members biasing the at least one shutter member towards a closed position in sealing engagement with the valve seat to close the first gas flow passages, and at least one spring holder ring provided with a plurality of spring retention seats. Each spring member of the set of spring members is partially housed in a respective spring pocket formed in the valve guard and retained in a respective one of the spring retention seat.

Claims (33)

1. An automatic valve comprising:

a valve seat having first gas flow passages extending there through;

a valve guard having second gas flow passages extending there through;

at least one shutter member movably arranged between the valve guard and the valve seat;

at least one set of spring members, biasing the at least one shutter member towards a closed position in sealing engagement with the valve seat to close the first gas flow passages;

at least one spring holder ring comprising a plurality of spring retention seats, each spring member of the set of spring members is partially housed in a respective spring pocket formed in the valve guard and retained in a respective one of the spring retention seats.

2. The valve according to claim 1 , wherein said at least one spring holder ring further comprises a surface facing the valve seat, contacting the at least one shutter member.

3. The valve according to claim 2 , wherein secondary spring members are arranged between the at least one spring holder ring and the at least one shutter member.

4. The valve according to claim 1 , wherein each of the at least one spring holder rings is slidingly engaged in a respective annular slot provided in the valve guard.

5. The valve according to claim 1 , further comprising a plurality of the at least one spring holder rings and a plurality of the at least one set of spring members, the spring members of each set of the spring members being partially arranged in spring retention seats of a corresponding one of the plurality of spring holder rings.

6. The valve according to claim 1 , wherein the at least one shutter member comprises a shutter plate.

7. The valve according to claim 5 , further comprising a plurality of shutter members, each shutter member comprising a shutter ring, each shutter ring being combined with a corresponding one of the plurality of spring holder rings.

8. The valve according to claim 1 , wherein the spring members are helical compression springs.

9. The valve according to claim 8 , wherein each spring member has a first end and a second end, and the first end is housed in a corresponding one of the spring pockets and the second end is retained in a corresponding one of the spring retention seats of the respective spring holder ring.

10. The valve according to claim 1 , wherein each spring holder ring comprises a plurality of secondary spring retention seats, and a secondary spring member is arranged in each of the secondary spring retention seats and resiliently contacts the at least one shutter member.

11. The valve according to claim 1 , wherein each spring holder ring is made of a shock damping material.

12. The valve according to claim 1 , wherein each spring holder ring is made of a composite material.

13. The valve according to claim 11 , wherein each spring holder ring is made of a reinforced thermoplastic material.

14. The valve according to claim 13 , wherein the thermoplastic material is reinforced with fibers selected from the group consisting of: glass fibers, carbon fibers, aramidic fibers, or combinations thereof.

15. An automatic valve comprising:

a valve seat having first gas flow passages extending there through;

a valve guard having second gas flow passages extending there through;

a plurality of shutter rings arranged between the valve guard and the valve seat;

for each shutter ring, a set of spring members, biasing the respective shutter ring towards a closed position in sealing engagement with the valve seat for closing the first gas flow passages;

for each shutter ring, a corresponding spring holder ring comprising a plurality of spring retention seats, each spring member of the respective set of spring members being partially arranged in a respective spring pocket formed in the valve guard and retained in a respective retention seat of the spring holder ring.

16. The valve according to claim 15 , wherein each spring holder ring further comprises a plurality of secondary spring retention seats, and a secondary spring member is arranged in each secondary spring retention seat and resiliently contacts the corresponding shutter ring.

17. The valve according to claim 15 , wherein spring holder rings are movable independently from one another.

18. A reciprocating compressor comprising at least one automatic valve having:

a valve seat having first gas flow passages extending there through;

a valve guard having second gas flow passages extending there through;

at least one shutter member movably arranged between the valve guard and the valve seat;

at least one set of spring members, biasing the at least one shutter member towards a closed position in sealing engagement with the valve seat to close the first gas flow passages;

at least one spring holder ring comprising a plurality of spring retention seats, each spring member of the set of spring members is partially housed in a respective spring pocket formed in the valve guard and retained in a respective one of the spring retention seats.

Assignments (2)
NUNC PRO TUNC ASSIGNMENT Recorded May 31, 2022
From: NUOVO PIGNONE S.R.L.
To: NUOVO PIGNONE TECNOLOGIE S.R.L.
Reel/Frame 060243/0913 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 5, 2014
From: BABBINI, ALBERTO; BAGAGLI, RICCARDO; PRATELLI, GUIDO
To: NUOVO PIGNONE SRL
Reel/Frame 033679/0448 →
Priority Claims (1)
IT FI2012A0048 · Mar 8, 2012 · national
Continuity (1)
Related Publication 20150044081A1 · Feb 12, 2015