IP Library › Granted Patent US 10,967,228
Granted Patent B2
US 10,967,228 · App. 16/693,624 · Granted Apr 6, 2021

Multi-piece solid golf ball

Inventor: Hideo Watanabe (Saitamaken, JP)
Assignee: Bridgestone Sports Co., Ltd.
A63B37/0092A63B37/0043A63B37/0076A63B37/0031A63B37/0062
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Quick Facts
Patent No.
US 10,967,228
App. No.
16/693,624
Granted
Apr 6, 2021
Kind
B2
Abstract

In a multi-piece solid golf ball having a core, an envelope layer, an intermediate layer and a cover, the intermediate layer is formed into two layers—an inner layer and an outer layer. The surface hardness of the envelope layer-encased sphere, the surface hardness of the inner intermediate layer-encased sphere, the surface hardness of the outer intermediate layer-encased sphere and the surface hardness of the ball together satisfy a specific relationship. This ball has an excellent flight when struck by golfers whose head speeds are not that fast and has a soft yet good feel at impact, thus making it highly suitable for amateur golfers.

Claims (33)

1. A multi-piece solid golf ball comprising a core, an envelope layer, an intermediate layer and a cover, wherein the intermediate layer is formed into two layers—an inner layer and an outer layer; and the sphere obtained by encasing the core with the envelope layer (envelope layer-encased sphere) has a surface hardness, the sphere obtained by encasing the envelope layer-encased sphere with the inner intermediate layer (inner intermediate layer-encased sphere) has a surface hardness, the sphere obtained by encasing the inner intermediate layer-encased sphere with the outer intermediate layer (outer intermediate layer-encased sphere) has a surface hardness and the ball has a surface hardness which together satisfy the following relationship:

surface hardness of envelope layer-encased sphere<surface hardness of inner intermediate layer-encased sphere<surface hardness of outer intermediate layer-encased sphere<surface hardness of the ball,

with the proviso that the surface hardness of the envelope layer-encased sphere is not more than 45 on the Shore D hardness scale; and

wherein the core has a hardness profile in which, letting Cc be the Shore C hardness at a center of the core, Cs be the Shore C hardness at a surface of the core, C M be the Shore C hardness at a midpoint M between the center and the surface of the core, C M+2.5 , C M+5.0 and C M+7.5 be the respective Shore C hardnesses at positions 2.5 mm, 5.0 mm and 7.5 mm from the midpoint M toward the core surface side and C M−2.5 , C M−5.0 and C M−7.5 be the respective Shore C hardnesses at positions 2.5 mm, 5.0 mm and 7.5 mm from the midpoint M toward the core center side, the following surface areas A to F:

surface area A: 1/2×2.5×(C M−5.0 -C M−7.5 )

surface area B: 1/2×2.5×(C M−2.5 -C M−5.0 )

surface area C: 1/2×2.5×(C M -C M−2.5 )

surface area D: 1/2×2.5×(C M+2.5 -C M )

surface area E: 1/2×2.5×(C M+5 -C M+2.5 )

surface area F: 1/2×2.5×(C M+7.5 -C M+5 ) satisfy the condition

(surface area D +surface area E +surface area F )−(surface area A +surface area B +surface area C )>0.

2. The golf ball of claim 1 , wherein surface areas A to F in the core hardness profile satisfy the condition

(surface area D +surface area E )−(surface area A +surface area B +surface area C )≥0.

3. The golf ball of claim 1 , wherein surface areas A to F in the core hardness profile satisfy the condition

0.20≤[(surface area D +surface area E +surface area F )−(surface area A +surface area B +surface area C )]/( Cs−Cc )≤0.60.

4. The golf ball of claim 1 , wherein the hardness difference between the center and surface of the core (Cs−Cc), expressed in terms of Shore C hardness, is at least 22.

5. The golf ball of claim 1 , wherein a coating layer is formed on a surface of the cover and, letting the Shore C hardness of the coating layer be Hc, the difference Hc−Cc between Hc and the Shore C hardness Cc at a center of the core is at least −5 and not more than 15.

6. The golf ball of claim 1 , wherein the ball has from 250 to 370 dimples on the surface thereof, the dimples are of three or more dimple shapes, dimple diameter and dimple depth, the dimple coverage SR, defined as the proportion of the spherical surface of the golf ball accounted for by the dimples, is at least 75%, and the ball when struck has a coefficient of lift CL at a Reynolds number of 70,000 and a spin rate of 2,000 rpm which is at least 70% of the coefficient of lift CL at a Reynolds number of 80,000 and a spin rate of 2,000 rpm.

7. The golf ball of claim 1 which has dimples on the surface thereof, wherein the dimples are of non-spherical shape and the ball surface has a land thereon that is surrounded by a plurality of the non-spherical dimples, which land has a shape that includes at least one vertex, is contiguous at substantially a point with each of at least two neighboring lands and has a surface area in the range of 0.05 to 16.00 mm 2 .

8. A multi-piece solid golf ball having a core, an envelope layer, an intermediate layer and a cover, wherein the intermediate layer is formed into two layers—an inner layer and an outer layer; the core has a center hardness, the sphere obtained by encasing the core with the envelope layer (envelope layer-encased sphere) has a surface hardness, the sphere obtained by encasing the envelope layer-encased sphere with the inner intermediate layer (inner intermediate layer-encased sphere) has a surface hardness, the sphere obtained by encasing the inner intermediate layer-encased sphere with the outer intermediate layer (outer intermediate layer-encased sphere) has a surface hardness and the ball has a surface hardness which together satisfy the following relationship:

core center hardness<surface hardness of envelope layer-encased sphere<surface hardness of inner intermediate layer-encased sphere<surface hardness of outer intermediate layer-encased sphere<ball surface hardness; and

the envelope layer is formed primarily of one or more thermoplastic elastomer selected from the group consisting of polyester elastomers, polyamide elastomers, polyurethane elastomers, olefin elastomers and styrene elastomers; and

wherein the core has a hardness profile in which, letting Cc be the Shore C hardness at the core center, Cs be the Shore C hardness at a surface of the core, C M be the Shore C hardness at a midpoint M between the center and the surface of the core, C M+2.5 , C M+5.0 and C M+7.5 be the respective Shore C hardnesses at positions 2.5 mm, 5.0 mm and 7.5 mm from the midpoint M toward the core surface side and C M−2.5 , C M−5.0 and C M−7.5 be the respective Shore C hardnesses at positions 2.5 mm, 5.0 mm and 7.5 mm from the midpoint M toward the core center side, the following surface areas A to F:

surface area A: 1/2×2.5×( C M−5.0 −C M−7.5 )

surface area B: 1/2×2.5×( C M−2.5 −C M−5.0 )

surface area C: 1/2×2.5×( C M −C M−2.5 )

surface area D: 1/2×2.5×( C M+2.5 −C M )

surface area E: 1/2×2.5×( C M+5 −C M+2.5 )

surface area F: 1/2×2.5×( C M+7.5 −C M+5 ) satisfy the condition

(surface area D +surface area E +surface area F )−(surface area A +surface area B +surface area C )>0.

9. The golf ball of claim 8 , wherein surface areas A to F in the core hardness profile satisfy the condition

0.20≤[(surface area D +surface area E +surface area F )−(surface area A +surface area B +surface area C )]/( Cs−Cc )≤0.60.

10. The golf ball of claim 8 , wherein a coating layer is formed on a surface of the cover and, letting the Shore C hardness of the coating layer be Hc, the difference Hc−Cc between Hc and the Shore C hardness Cc at the core center is at least −5 and not more than 15.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 25, 2019
From: WATANABE, HIDEO
To: BRIDGESTONE SPORTS CO., LTD.
Reel/Frame 051103/0978 →
Priority Claims (1)
JP JP2018-238174 · Dec 20, 2018 · national
Continuity (1)
Related Publication 20200197756A1 · Jun 25, 2020
Cited By (1)
US 12,318,667