IP Library Granted Patent US 9,144,713
Granted Patent B2
US 9,144,713 · App. 13/271,461 · Granted Sep 29, 2015

Golf ball

Inventors: Takahiro Sajima (Kobe, JP); Yoshiko Matsuyama (Kobe, JP)
Assignee: SRI SPORTS LIMITED
A63B37/0024A63B37/0063A63B37/0064A63B37/0076A63B37/0087A63B37/02A63B37/06A63B37/12A63B37/0003A63B37/0031A63B37/0043A63B37/0044
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Quick Facts
Patent No.
US 9,144,713
App. No.
13/271,461
Granted
Sep 29, 2015
Kind
B2
Abstract

A golf ball 2 includes a core 4 , a mid layer 6 , and a cover 8 . The core 4 includes a center 10 and an envelope layer 12 . The ratio of the volume Ve of the core 4 to the volume of a phantom sphere of the golf ball 2 is equal to greater than 76%. The ratio (Co/Ce) of an amount of compressive deformation Co of the center 10 to an amount of compressive deformation Ce of the core 4 is greater than 2.0 but less than 3.0. The ratio (Vo/Ve) of the volume Vo of the center 10 to the volume Ve of the core 4 is equal to or greater than 0.01 but equal to or less than 0.13.

Claims (26)

1. A golf ball comprising

a core,

a mid layer positioned outside the core, and

a cover formed from a resin composition and positioned outside the mid layer, a principal component of the base material of the cover resin composition being a polyurethane, wherein said polyurethane is formed from a polyol that is a polytetramethylene ether glycol having a number average molecular weight of 1500 or less,

wherein the core comprises a center and an envelope layer positioned outside the center, wherein

a thickness of the envelope layer is equal to or greater than 8 mm but equal to or less than 18 mm, a ratio of a volume Ve of the core to a volume of a phantom sphere of the golf ball is equal to or greater than 76%, and a ratio (Co/Ce) of an amount of compressive deformation Co of the center, which is measured under conditions of an initial load of 98 N and a final load of 294 N, to an amount of compressive deformation Ce of the core, which is measured under conditions of an initial load of 98 N and a final load of 294 N, is greater than 2.0 but less than 3.0.

2. The golf ball according to claim 1 , wherein a JIS-C hardness Hc of the cover is less than a JIS-C hardness Ho at a central point of the center.

3. The golf ball according to claim 2 , wherein a difference (Ho−Hc) between the hardness Ho and the hardness Hc is equal to or greater than 5 but equal to or less than 40.

4. The golf ball according to claim 1 , wherein a ratio (Vo/Ve) of a volume Vo of the center to the volume Ve of the core is equal to or greater than 0.01 but equal to or less than 0.13.

5. The golf ball according to claim 1 , wherein a JIS-C hardness Hc of the cover is equal to or less than 65.

6. The golf ball according to claim 1 , wherein a thickness of the cover is equal to or less than 0.8 mm.

7. The golf ball according to claim 1 , wherein a JIS-C hardness Hm of the mid layer is equal to or greater than 90.

8. The golf ball according to claim 1 , wherein a thickness of the mid layer is equal to or less than 1.5 mm.

9. The golf ball according to claim 1 , wherein

the cover is formed from a resin composition,

a shear loss elastic modulus G″ of the resin composition, which is measured under conditions of a vibration frequency of 10 Hz and a temperature of 0° C., is equal to or less than 1.95×10 7 Pa, and

a ratio (E″/G″) of a tensile loss elastic modulus E″ of the resin composition, which is measured under conditions of a vibration frequency of 10 Hz and a temperature of 0° C., to the shear loss elastic modulus G″ is equal to or greater than 1.76.

10. The golf ball according to claim 1 , wherein a JIS-C hardness Ho at a central point of the center is equal to or greater than 40 but equal to or less than 80.

11. The golf ball according to claim 1 , wherein a diameter Do of the center is equal to or greater than 10 mm but equal to or less than 23 mm.

12. The golf ball according to claim 1 , wherein the amount of compressive deformation Co is equal to or greater than 1.2 mm but equal to or less than 2.4 mm.

13. The golf ball according to claim 1 , wherein the amount of compressive deformation Ce is equal to or greater than 0.4 mm but equal to or less than 1.0 mm.

14. The golf ball according to claim 1 , wherein a surface hardness He of the core is equal to or greater than 70 but equal to or less than 95.

15. The golf ball according to claim 1 , wherein a difference (He−Ho) between a JIS-C hardness He at a surface of the core and a JIS-C hardness Ho at a central point of the center is equal to or greater than 15 but equal to or less than 30.

16. The golf ball according to claim 1 , wherein an outer diameter of the core is equal to or greater than 38.0 mm but equal to or less than 41.0 mm.

17. The golf ball according to claim 1 , wherein an amount of compressive deformation Cm of a sphere consisting of the core and the mid layer, which is measured under conditions of an initial load of 98 N and a final load of 294 N, is equal to or greater than 0.3 mm but equal to or less than 1.2 mm.

18. The golf ball according to claim 1 , wherein said principal component of said base material of the resin composition is a thermoplastic polyurethane.

Assignments (3)
MERGER Recorded Apr 17, 2018
From: DUNLOP SPORTS CO. LTD.
To: SUMITOMO RUBBER INDUSTRIES, LTD.
Reel/Frame 045959/0204 →
CHANGE OF NAME Recorded Apr 12, 2018
From: SRI SPORTS LIMITED
To: DUNLOP SPORTS CO. LTD.
Reel/Frame 045932/0024 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 13, 2011
From: SAJIMA, TAKAHIRO; MATSUYAMA, YOSHIKO
To: SRI SPORTS LIMITED
Reel/Frame 027054/0014 →
Priority Claims (1)
JP 2010-293535 · Dec 28, 2010 · national
Continuity (1)
Related Publication 20120165127A1 · Jun 28, 2012