IP Library Granted Patent US 9,682,292
Granted Patent B2
US 9,682,292 · App. 14/937,664 · Granted Jun 20, 2017

Golf club

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Quick Facts
Patent No.
US 9,682,292
App. No.
14/937,664
Granted
Jun 20, 2017
Kind
B2
Abstract

The club length of a golf club is 43 inches or greater and 48 inches or less. A club inertia moment Ix about a swing axis is equal to or less than 6.90×10 3 (kg·cm 2 ). A ratio (Ihs/Ix) is equal to or greater than 0.88, if a head inertia moment about the swing axis is defined as Ihs (kg·cm 2 ). The inertia moment Ix (kg·cm 2 ) is calculated by Equation (1) below, and the inertia moment Ihs (kg·cm 2 ) is calculated by Equation (2) below: Ix=Wc ×( Lc +60) 2 +Ic   (1) Ihs=Wh ×( Lh +60) 2 +Ih   (2).

Claims (95)

1. A golf club comprising:

a head having a head weight defined as Wh (kg);

a shaft comprising a grip end, a tip end opposite of the grip end, and a shaft axis extending in an axial direction;

a grip;

a club weight defined as Wc (kg);

a club length greater than or equal to 43 in and less than or equal to 48 in;

an axial direction distance between the grip end of the shaft and a center of gravity of the golf club defined as Lc (cm);

an axial direction distance between the grip end of the shaft and a center of gravity of the head defined as Lh (cm);

a club moment of inertia about an axis parallel to a virtual axis of swing and passing through the center of gravity of the golf club defined as Ic (kg·cm 2 );

a club moment of inertia about the virtual axis of swing defined as Ix (kg·cm 2 ) and calculated by the following formula (1):

Ix=Wc ×( Lc+ 60) 2 +Ic   (1)

a head moment of inertia about an axis parallel to the virtual axis of swing and passing through the center of gravity of the head defined as Ih (kg·cm 2 ); and

a head moment of inertia about the virtual axis of swing defined as Ihs (kg·cm 2 ) and calculated by the following formula (2):

Ihs=Wh ×( Lh+ 60) 2 +Ih   (2)

wherein a ratio Ihs/Ix is equal to or greater than 0.88.

2. The golf club according to claim 1 , wherein Ix is greater than or equal to about 6.30×10 3 kg·cm 2 .

3. The golf club according to claim 1 , further comprising:

a shaft weight defined as Ws (kg);

an axial direction distance from the grip end to a center of gravity of the shaft defined as Ls (cm);

a shaft moment of inertia about an axis parallel to the virtual axis of swing and passing through the center of gravity of the shaft defined as Is (kg·cm 2 ); and

a shaft moment of inertia about the virtual axis of swing defined as Iss (kg·cm 2 ) and calculated by the following equation (3):

Iss=Ws ×( Ls+ 60) 2 +Is   (3)

wherein Iss is equal to or less than 700 kg·cm 2 .

4. The golf club according to claim 3 , wherein a ratio Iss/Ix is greater than or equal to 0.092 and less than or equal to 0.120.

5. The golf club according to claim 1 , further comprising:

a grip weight defined as Wg (kg);

an axial direction distance from the grip end to a center of gravity of the grip defined as Lg (cm);

a grip moment of inertia about an axis parallel to the virtual axis of swing and passing through the center of gravity of the grip defined as Ig (kg·cm 2 ); and

a grip moment of inertia about the virtual axis of swing defined as Igs (kg·cm 2 ) and calculated by the following formula (4):

Igs=Wg ×( Lg+ 60) 2 +Ig   (4)

wherein Igs is equal to or less than 150 kg·cm 2 .

6. The golf club according to claim 1 , further comprising:

an axial direction distance from a shaft tip end to a center of gravity of the shaft defined as Lf 1 (cm); and

a shaft length defined as Lf 2 (cm),

wherein Lf 1 /Lf 2 is greater than or equal to 0.55 and less than or equal to 0.67.

7. The golf club according to claim 1 , wherein Wh is greater than or equal to 0.175 kg and less than or equal to 0.200 kg.

8. The golf club according to claim 1 , wherein the ratio Ihs/Ix is less than or equal to 0.93.

9. The golf club according to claim 1 , wherein Ix is greater than or equal to about 6.35×10 3 kg·cm 2 .

10. A golf club comprising:

a head having a head weight defined as Wh (kg);

a shaft comprising a grip end, a tip end opposite of the grip end, a shaft axis extending in an axial direction, and a shaft weight defined as Ws (kg);

a grip having a grip weight defined as Wg (kg);

a club weight defined as We (kg);

an axial direction distance between the grip end of the shaft and a center of gravity of the golf club defined as Lc (cm);

an axial direction distance between the grip end of the shaft and a center of gravity of the head defined as Lh (cm);

an axial direction distance from the grip end to a center of gravity of the shaft defined as Ls (cm);

an axial direction distance from the grip end to a center of gravity of the grip defined as Lg (cm);

a club moment of inertia about an axis parallel to a virtual axis of swing and passing through the center of gravity of the golf club defined as Ic (kg·cm 2 );

a club moment of inertia about the virtual axis of swing defined as Ix (kg·cm 2 ) and calculated by the following formula (1):

Ix=Wc ×( Lc+ 60) 2 +Ic   (1)

a head moment of inertia about an axis parallel to the virtual axis of swing and passing through the center of gravity of the head defined as Ih (kg·cm 2 );

a head moment of inertia about the virtual axis of swing defined as Ihs (kg·cm 2 ) and calculated by the following formula (2):

Ihs=Wh ×( Lh+ 60) 2 +Ih   (2)

a shaft moment of inertia about an axis parallel to the virtual axis of swing and passing through the center of gravity of the shaft defined as Is (kg·cm 2 );

a shaft moment of inertia about the virtual axis of swing defined as Iss (kg·cm 2 ) and calculated by the following equation (3):

Iss=Ws ×( Ls+ 60) 2 +Is   (3)

a grip moment of inertia about an axis parallel to the virtual axis of swing and passing through the center of gravity of the grip defined as Ig (kg·cm 2 ); and

a grip moment of inertia about the virtual axis of swing defined as Igs (kg·cm 2 ) and calculated by the following formula (4):

Igs=Wg ×( Lg+ 60) 2 +Ig   (4)

wherein:

a ratio Ihs/Ix is equal to or greater than 0.88;

Iss is equal to or less than 700 kg·cm 2 ; and

Igs is equal to or less than 150 kg·cm 2 .

11. The golf club according to claim 10 , wherein Ix is greater than or equal to about 6.30×10 3 kg·cm 2 .

12. The golf club according to claim 10 , wherein a ratio Iss/Ix is greater than or equal to 0.092 and less than or equal to 0.120.

13. The golf club according to claim 10 , further comprising:

an axial direction distance from a shaft tip end to the center of gravity of the shaft defined as Lf 1 (cm); and

a shaft length defined as Lf 2 (cm),

wherein Lf 1 /Lf 2 is greater than or equal to 0.55 and less than or equal to 0.67.

14. The golf club according to claim 10 , wherein Wh is greater than or equal to 0.175 kg and less than or equal to 0.200 kg.

15. The golf club according to claim 10 , wherein the ratio Ihs/Ix is less than or equal to 0.93.

16. The golf club according to claim 10 , wherein Ix is greater than or equal to about 6.35×10 3 kg·cm 2 .

17. A golf club comprising:

a head having a head weight defined as Wh (kg) and a volume greater than or equal to 420 cc;

a shaft comprising a grip end, a tip end opposite of the grip end, and a shaft axis extending in an axial direction;

a grip;

a club weight defined as We (kg);

an axial direction distance between the grip end of the shaft and a center of gravity of the golf club defined as Lc (cm);

an axial direction distance between the grip end of the shaft and a center of gravity of the head defined as Lh (cm);

a club moment of inertia about an axis parallel to a virtual axis of swing and passing through the center of gravity of the golf club defined as Ic (kg·cm 2 );

a club moment of inertia about the virtual axis of swing defined as Ix (kg·cm 2 ) and calculated by the following formula (1):

Ix=Wc ×( Lc+ 60) 2 +Ic   (1)

a head moment of inertia about an axis parallel to the virtual axis of swing and passing through the center of gravity of the head defined as Ih (kg·cm 2 ); and

a head moment of inertia about the virtual axis of swing defined as Ihs (kg·cm 2 ) and calculated by the following formula (2):

Ihs=Wh ×( Lh+ 60) 2 +Ih   (2)

wherein a ratio Ihs/Ix is equal to or greater than 0.88.

18. The golf club according to claim 17 , wherein Ix is greater than or equal to about 6.30×10 3 kg·cm 2 .

19. The golf club according to claim 17 , further comprising:

a shaft weight defined as Ws (kg);

an axial direction distance from the grip end to a center of gravity of the shaft defined as Ls (cm);

a shaft moment of inertia about an axis parallel to the virtual axis of swing and passing through the center of gravity of the shaft defined as Is (kg·cm 2 ); and

a shaft moment of inertia about the virtual axis of swing defined as Iss (kg·cm 2 ) and calculated by the following equation (3):

Iss=Ws ×( Ls+ 60) 2 +Is   (3)

wherein Iss is equal to or less than 700 kg·cm 2 .

20. The golf club according to claim 17 , wherein a ratio Iss/Ix is greater than or equal to 0.092 and less than or equal to 0.120.

Assignments (1)
MERGER Recorded Apr 17, 2018
From: DUNLOP SPORTS CO. LTD.
To: SUMITOMO RUBBER INDUSTRIES, LTD.
Reel/Frame 045959/0204 →