IP Library Granted Patent US 10,837,554
Granted Patent B2
US 10,837,554 · App. 15/843,527 · Granted Nov 17, 2020

Piston compression rings of copper-nickel-tin alloys

Inventors: David J. Krus (Mayfield Heights, OH); Steffen Mack (Cleveland, OH); Andrew J. Whitaker (Berkshire, GB)
Assignee: Materion Corporation
F16J9/26C22C9/06F04B39/0005F16J9/20F05C2201/0475
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Quick Facts
Patent No.
US 10,837,554
App. No.
15/843,527
Granted
Nov 17, 2020
Kind
B2
Abstract

A piston ring is made from a copper-containing alloy. This material permits the top compression ring of a piston to be moved closer to the piston crown, reducing crevice volume and reducing the tendency for pre-ignition. Ignition timing advance can be realized by installing the rings and letting the ECU advance the timing as the sensors allow, increasing efficiency. Also, shorter pistons and longer connecting rods are possible. The shorter pistons reduces the reciprocated mass in the engine and the longer connecting rods reduce the frictional loss caused by radial forces pushing the piston against the liner. Both reducing volume and tendency for pre-ignition increase engine efficiency.

Claims (70)

1. A piston ring formed from a copper-containing alloy comprising:

about 8.0 wt % to about 22 wt % nickel;

about 4.0 wt % to about 10 wt % tin; and

at least 50 wt % copper.

2. The piston ring of claim 1 , wherein the copper-containing alloy comprises:

about 14.5 wt % to about 15.5 wt % nickel;

about 7.5 wt % to about 8.5 wt % tin; and

balance copper.

3. The piston ring of claim 1 , wherein the copper-containing alloy comprises:

about 15 wt % nickel;

about 8 wt % tin; and

balance copper.

4. The piston ring of claim 1 , wherein the copper-containing alloy comprises:

about 8.0 wt % to about 12 wt % nickel;

about 4.0 wt % to about 8.0 wt % tin; and

balance copper.

5. The piston ring of claim 1 , wherein the copper-containing alloy comprises:

about 8.0 wt % to about 10 wt % nickel;

about 5.5 wt % to about 6.5 wt % tin; and

balance copper.

6. The piston ring of claim 1 , wherein the copper-containing alloy comprises:

about 9 wt % nickel;

about 6 wt % tin; and

balance copper.

7. The piston ring of claim 1 , wherein the piston ring is uncoated.

8. The piston ring of claim 1 , having a rectangular or trapezoidal cross-section.

9. The piston ring of claim 1 , having a butt cut, an angle cut, an overlapped cut, or a hook cut.

10. The piston ring of claim 1 , wherein the piston ring weighs up to about 0.25 pounds.

11. The piston ring of claim 1 , wherein the piston ring weighs from about 0.25 pounds to about 1.0 pound.

12. A piston assembly, comprising:

a piston body comprising a top ring groove; and

a piston ring in the top ring groove, the piston ring being formed from a copper-containing alloy comprising:

about 8.0 wt % to about 22 wt % nickel;

about 4.0 wt % to about 10 wt % tin; and

at least 50 wt % copper.

13. The piston assembly of claim 12 , wherein the copper-containing alloy comprises:

about 14.5 wt % to about 15.5 wt % nickel;

about 7.5 wt % to about 8.5 wt % tin; and

balance copper.

14. A method of improving engine efficiency, comprising using a piston assembly in an engine, the piston assembly comprising:

a piston body comprising a top ring groove; and

a piston ring in the top ring groove, the piston ring being formed from a copper-containing alloy comprising:

about 8.0 wt % to about 22 wt % nickel;

about 4.0 wt % to about 10 wt % tin; and

at least 50 wt % copper.

15. The method of claim 14 , wherein the copper-containing alloy comprises:

about 14.5 wt % to about 15.5 wt % nickel;

about 7.5 wt % to about 8.5 wt % tin; and

balance copper.

16. A method of making a piston ring, comprising:

forming the piston ring from a copper-containing alloy that consists essentially of:

about 8.0 wt % to about 22 wt % nickel;

about 4.0 wt % to about 10 wt % tin; and

balance copper; and unavoidable impurities.

17. The piston assembly of claim 12 , wherein the copper-containing alloy comprises:

about 15 wt % nickel;

about 8 wt % tin; and

balance copper.

18. The piston assembly of claim 12 , wherein the copper-containing alloy comprises:

about 8.0 wt % to about 12 wt % nickel;

about 4.0 wt % to about 8.0 wt % tin; and

balance copper.

19. The piston assembly of claim 12 , wherein the copper-containing alloy comprises:

about 8.0 wt % to about 10 wt % nickel;

about 5.5 wt % to about 6.5 wt % tin; and

balance copper.

20. The piston assembly of claim 12 , wherein the copper-containing alloy comprises:

about 9 wt % nickel;

about 6 wt % tin; and

balance copper.

Assignments (2)
SECURITY INTEREST Recorded Sep 25, 2019
From: MATERION CORPORATION
To: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 050493/0809 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 15, 2017
From: KRUS, DAVID J.; MACK, STEFFEN; WHITAKER, ANDREW J.
To: MATERION CORPORATION
Reel/Frame 044407/0975 →
Continuity (2)
Provisional Application 62443475 · Jan 6, 2017
Related Publication 20180195612A1 · Jul 12, 2018