IP Library Granted Patent US 10,066,771
Granted Patent B2
US 10,066,771 · App. 14/592,768 · Granted Sep 4, 2018

Wearable rubber parts for fluid handling services including a polyurethane inner layer

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Quick Facts
Patent No.
US 10,066,771
App. No.
14/592,768
Granted
Sep 4, 2018
Kind
B2
Abstract

Wearable rubber parts for fluid handling systems include a four layer structure, wherein the inner most layer of the four layer structure is a polyurethane layer. The polyurethane can be millable polyurethane. The polyurethane used in the inner most layer can be produced by reacting diisolcyanate with a polyester and/or polyether polyols and a chain extender. The wearable rubber part can be an expansion joint, a pinch valve, or a hose.

Claims (42)

1. A flexible expansion joint comprising:

an inner most layer comprising polyurethane;

a bonding ply layer;

a reinforcement layer; and

an outer layer;

wherein the flexible expansion joint is a flowing arch expansion joint.

2. The flexible expansion joint of claim 1 , wherein the polyurethane is millable polyurethane.

3. The flexible expansion joint of claim 1 , wherein the inner most layer consists of polyurethane.

4. The flexible expansion joint of claim 1 , wherein the inner most layer comprises greater than 70 wt % polyurethane.

5. The flexible expansion joint of claim 1 , wherein the polyurethane of the inner most layer is produced by reacting diisolcyanate with a polyol and a chain extender, and wherein the polyol is only or predominantly polyether polyols.

6. The flexible expansion joint of claim 1 , wherein the polyurethane of the inner most layer is produced by reacting diisolcyanate with a polyol and a chain extender, and wherein the polyol includes polyester polyols.

7. The flexible expansion joint of claim 1 , wherein the bonding ply layer comprises neoprene rubber.

8. The flexible expansion joint of claim 7 , wherein the neoprene rubber chemically bonds to the inner most layer.

9. The flexible expansion joint of claim 7 , wherein the neoprene rubber mechanically bonds to the reinforcement layer.

10. The flexible expansion joint of claim 2 , wherein the reinforcement layer comprises fabric reinforcement material.

11. The flexible expansion joint of claim 2 , wherein the outer layer comprises an elastomeric compound.

12. A flexible expansion joint comprising:

a cylindrical main body portion having a hollow passage extending therethrough; and

a flange at either end of the cylindrical main body portion, each flange including a mating surface;

wherein an inner most layer of the expansion joint comprises millable polyurethane; and

wherein the flexible expansion joint further comprises a reinforcement layer and a bonding ply layer intermediate the inner most layer and the reinforcement layer, wherein the inner most layer is chemically bonded to the bonding ply layer and the reinforcement layer is mechanically bonded to the bonding ply layer.

13. The flexible expansion joint of claim 12 , wherein the millable polyurethane is produced by reacting diisolcyanate with a polyol and a chain extender, and wherein the polyol includes polyester polyols.

14. The flexible expansion joint of claim 12 , wherein the millable polyurethane of the inner most layer is produced by reacting diisolcyanate with a polyol and a chain extender, and wherein the polyol is only or predominantly polyether polyols.

15. The flexible expansion joint of claim 12 , wherein the inner most layer also forms the mating surfaces of the flanges.

16. The flexible expansion joint of claim 12 , wherein the reinforcement layer comprises a fabric reinforcement material.

17. The flexible expansion joint of claim 12 , further comprising an outer layer comprising an elastomeric compound.

18. A flexible expansion joint comprising:

an inner most layer comprising polyurethane;

a bonding ply layer;

a reinforcement layer; and

an outer layer;

wherein the flexible expansion joint is an abrupt arch expansion joint.

19. The flexible expansion joint of claim 18 , wherein the polyurethane is millable polyurethane.

20. The flexible expansion joint of claim 18 , wherein the inner most layer consists of polyurethane.

21. The flexible expansion joint of claim 18 , wherein the inner most layer comprises greater than 70 wt % polyurethane.

22. The flexible expansion joint of claim 18 , wherein the polyurethane of the inner most layer is produced by reacting diisolcyanate with a polyol and a chain extender, and wherein the polyol is only or predominantly polyether polyols.

23. The flexible expansion joint of claim 18 , wherein the polyurethane of the inner most layer is produced by reacting diisolcyanate with a polyol and a chain extender, and wherein the polyol includes polyester polyols.

24. The flexible expansion joint of claim 18 , wherein the bonding ply layer comprises neoprene rubber.

25. The flexible expansion joint of claim 24 , wherein the neoprene rubber chemically bonds to the inner most layer.

26. The flexible expansion joint of claim 24 , wherein the neoprene rubber mechanically bonds to the reinforcement layer.

27. The flexible expansion joint of claim 19 , wherein the reinforcement layer comprises fabric reinforcement material.

28. The flexible expansion joint of claim 19 , wherein the outer layer comprises an elastomeric compound.

Assignments (2)
NOTICE OF GRANT OF SECURITY INTEREST IN PATENTS Recorded Aug 1, 2017
From: GARLOCK SEALING TECHNOLOGIES LLC
To: BANK OF AMERICA, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 043396/0824 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 20, 2015
From: MATTINA, LOUIS J.; CRAMB, STEPHEN JOSEPH; PHILLIPS, BRANDON T.; WHIPPLE, BENJAMIN JAMES; DAMDAR, SHERWIN A.
To: GARLOCK SEALING TECHNOLOGIES, LLC
Reel/Frame 034993/0582 →