IP Library Granted Patent US 12,440,735
Granted Patent B2
US 12,440,735 · App. 18/082,271 · Granted Oct 14, 2025

Golf club heads

Inventors: Mark Vincent Greaney (Vista, CA); Todd P. Beach (Encinitas, CA); Christopher John Harbert (Carlsbad, CA); Joseph Henry Hoffman (Carlsbad, CA); Christopher Rollins (Carlsbad, CA)
Assignee: TAYLOR MADE GOLF COMPANY, INC.
A63B53/0441A63B53/0412A63B53/0437A63B53/0445A63B53/0466
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Quick Facts
Patent No.
US 12,440,735
App. No.
18/082,271
Granted
Oct 14, 2025
Kind
B2
Abstract

A golf club head having a nonmetallic crown bonded to a frame in close proximity to the face.

Claims (46)

1. A golf club head, comprising:

a body having a frame having a hosel portion with a hosel bore defining a shaft axis and a shaft axis plane, a face, a sole, and a crown opening formed in part by the frame; and

a nonmetallic crown attached to the frame and covering the crown opening and defining an interior cavity, wherein the nonmetallic crown has a crown leading edge,

wherein the face has a face center and defines a loft plane that is tangent to the face center, an origin for an x-axis, y-axis, and z-axis, wherein the x-axis is tangential to the face at the origin and parallel to a ground plane, the y-axis is perpendicular to the x-axis and extends away from the face and is parallel to the ground plane, and the z-axis extends vertically from face center and is perpendicular to the ground plane,

a vertical center face plane includes the y-axis and the z-axis and creates a vertical center face section through the golf club head having a center face offset loft plane that is parallel to the loft plane and offset an offset plane distance from the loft plane,

at least a first heelward offset vertical plane is parallel to the vertical center face plane and offset along the x-axis a distance of 5 millimeters toward the hosel portion, and creates a 5 mm offset vertical section having a 5 millimeter heelward localized loft plane and a 5 millimeter heelward localized offset loft plane offset the offset plane distance from the 5 millimeter heelward localized loft plane,

at least a first toeward offset vertical plane is parallel to the vertical center face plane and offset along the x-axis a distance of 5 millimeters away from the hosel portion, and creates a −5 millimeter offset vertical section having a 5 millimeter toeward localized loft plane and a 5 millimeter toeward localized offset loft plane offset the offset plane distance from the 5 millimeter toeward localized loft plane,

the offset plane distance is 6 millimeters and within the vertical center face section a portion of the crown leading edge is forward of the center face offset loft plane, within the 5 millimeter offset vertical section a portion of the crown leading edge is forward of the 5 millimeter heelward localized offset loft plane, and within the −5 millimeter offset vertical section a portion of the crown leading edge is forward of the 5 millimeter toeward localized offset loft plane, and

within the vertical center face section a portion of the nonmetallic crown in front of the center face offset loft plane has a center face 3-point method crown radius of curvature of less than 25 mm, within the 5 millimeter offset vertical section a portion of the nonmetallic crown in front of the 5 millimeter heelward localized offset loft plane has a 5 millimeter heelward 3-point method crown radius of curvature of less than 25 mm, and within the −5 millimeter offset vertical section a portion of the nonmetallic crown in front of the 5 millimeter toeward localized offset loft plane has a 5 millimeter toeward 3-point method crown radius of curvature of less than 25 mm.

2. The golf club head of claim 1 , wherein:

a second heelward offset vertical plane is parallel to the vertical center face plane and offset along the x-axis a distance of 10 millimeters toward the hosel portion, and creates a 10 mm offset vertical section having a 10 millimeter heelward localized loft plane and a 10 millimeter heelward localized offset loft plane offset the offset plane distance from the 10 millimeter heelward localized loft plane;

a second toeward offset vertical plane is parallel to the vertical center face plane and offset along the x-axis a distance of 10 millimeters away from the hosel portion, and creates a −10 millimeter offset vertical section having a 10 millimeter toeward localized loft plane and a 10 millimeter toeward localized offset loft plane offset the offset plane distance from the 10 millimeter toeward localized loft plane;

within the 10 millimeter offset vertical section a portion of the crown leading edge is forward of the 10 millimeter heelward localized offset loft plane, and within the −10 millimeter offset vertical section a portion of the crown leading edge is forward of the 10 millimeter toeward localized offset loft plane; and

within the 10 millimeter offset vertical section a portion of the nonmetallic crown in front of the 10 millimeter heelward localized offset loft plane has a 10 millimeter heelward 3-point method crown radius of curvature of less than 25 mm, and within the −10 millimeter offset vertical section a portion of the nonmetallic crown in front of the 10 millimeter toeward localized offset loft plane has a 10 millimeter toeward 3-point method crown radius of curvature of less than 25 mm.

3. The golf club head of claim 2 , wherein:

a third heelward offset vertical plane is parallel to the vertical center face plane and offset along the x-axis a distance of 20 millimeters toward the hosel portion, and creates a 20 mm offset vertical section having a 20 millimeter heelward localized loft plane and a 20 millimeter heelward localized offset loft plane offset the offset plane distance from the 20 millimeter heelward localized loft plane;

a third toeward offset vertical plane is parallel to the vertical center face plane and offset along the x-axis a distance of 20 millimeters away from the hosel portion, and creates a −20 millimeter offset vertical section having a 20 millimeter toeward localized loft plane and a 20 millimeter toeward localized offset loft plane offset the offset plane distance from the 20 millimeter toeward localized loft plane;

within the 20 millimeter offset vertical section a portion of the crown leading edge is forward of the 20 millimeter heelward localized offset loft plane, and within the −20 millimeter offset vertical section a portion of the crown leading edge is forward of the 20 millimeter toeward localized offset loft plane; and

within the 20 millimeter offset vertical section a portion of the nonmetallic crown in front of the 20 millimeter heelward localized offset loft plane has a 20 millimeter heelward 3-point method crown radius of curvature of less than 25 mm, and within the −20 millimeter offset vertical section a portion of the nonmetallic crown in front of the 20 millimeter toeward localized offset loft plane has a 20 millimeter toeward 3-point method crown radius of curvature of less than 25 mm.

4. The golf club head of claim 1 , wherein in a top plan view the golf club head has a top plan view coordinate system with a top plan origin aligned with the center face and at a midpoint of a center face depth dimension, measured along the vertical center face plane from a forwardmost point of the golf club head in the vertical center face plane to a rearward most point of the golf club head in the vertical center face plane, wherein a 0 degree line extends between the top plan origin and the rear ring portion along the vertical center face plane, a 90 degree line extends perpendicular to the 0 degree line from the top plan origin toward the hosel portion, a 180 degree line extends perpendicular to the 90 degree line from the top plan origin and passes through the center face, and a 270 degree line extends perpendicular to the 180 degree line from the top plan origin away from the hosel portion, and the nonmetallic crown creates an outermost perimeter of the golf club head throughout a continuous 10 degree range located between a 300 degree line and a 60 degree line.

5. The golf club head of claim 4 , wherein the nonmetallic crown creates the outermost perimeter of the golf club head throughout a continuous 180 degree range located between the 270 degree line and the 90 degree line toward a rear of the golf club head.

6. The golf club head of claim 5 , wherein a portion of the frame supporting the nonmetallic crown comprises aluminum alloy.

7. The golf club head of claim 4 , wherein the golf club head has a center of gravity located at an elevation Zup above the ground plane, and throughout a continuous 30 degree range located between the 270 degree line and the 90 degree line toward a rear of the golf club head, no portion of the nonmetallic crown extends to an elevation below Zup.

8. The golf club head of claim 7 , wherein throughout a continuous 180 degree range located between the 270 degree line and the 90 degree line toward the rear of the golf club head, no portion of the nonmetallic crown extends to an elevation below Zup.

9. The golf club head of claim 4 , wherein the center face 3-point method crown radius of curvature is less than 23 mm, the 5 millimeter heelward 3-point method crown radius of curvature is less than 23 mm, and the 5 millimeter toeward 3-point method crown radius of curvature is less than 23 mm.

10. The golf club head of claim 9 , wherein the 5 millimeter toeward 3-point method crown radius of curvature is less than 21 mm, the golf club head has a center of gravity having a CG x-axis coordinate CGx relative to the face center of between −5 mm to 5 mm, a CG y-axis coordinate CGy relative to the face center of between 33 mm and 50 mm, a CG z-axis coordinate CGz relative to the face center of −10 mm to 0 mm, a Zup elevation above the ground plane of 18-30 mm, a CG x-axis, a CG y-axis, a CG z-axis, an Ixx moment of inertia about the CG x-axis of 300-440 kg-mm 2 , an Iyy moment of inertia about the CG y-axis of 265-350 kg-mm 2 , an Izz moment of inertia about the CG z-axis of 480-700 kg-mm 2 , a club head mass of 180-210 grams, and a volume of 390-500 cc.

11. The golf club head of claim 10 , wherein the 5 millimeter toeward 3-point method crown radius of curvature is less than 19 mm, and the center face 3-point method crown radius of curvature is less than 21 mm.

12. The golf club head of claim 1 , further including a face opening formed in part by the frame, and a face plate secured to the frame and closing the face opening.

13. The golf club head of claim 12 , wherein the face plate is formed of a face plate material, the frame forming the face opening is formed of a frame material, and the face plate material is different than the frame material.

14. The golf club head of claim 13 , wherein the face plate is adhesively bonded to the frame.

15. The golf club head of claim 14 , wherein the frame has an insert recess wall and a face support ledge wall thereby defining the face opening, and the face plate is adhesively bonded to the face support ledge wall.

16. The golf club head of claim 15 , wherein the frame material comprises aluminum alloy.

17. The golf club head of claim 16 , wherein the golf club head has a center of gravity having a CG x-axis coordinate CGx relative to the face center of between −5 mm to 5 mm, a CG y-axis coordinate CGy relative to the face center of between 33 mm and 50 mm, a CG z-axis coordinate CGz relative to the face center of −10 mm to 0 mm, a Zup elevation above the ground plane of 18-30 mm, a CG x-axis, a CG y-axis, a CG z-axis, an Ixx moment of inertia about the CG x-axis of 300-440 kg-mm 2 , an Iyy moment of inertia about the CG y-axis of 265-350 kg-mm 2 , an Izz moment of inertia about the CG z-axis of 480-700 kg-mm 2 , a club head mass of 180-210 grams, and a volume of 390-500 cc.

18. The golf club head of claim 17 , wherein the face plate material comprises titanium alloy.

19. The golf club head of claim 17 , wherein the face plate material comprises nonmetallic material.

20. The golf club head of claim 15 , wherein the insert recess wall has an insert recess wall length, the face plate has a face plate perimeter, and the insert recess wall length is not constant throughout the entire face plate perimeter.

21. The golf club head of claim 20 , wherein the frame has a forward ledge extending to a recess wall leading edge between a heel-side stepped down wall and a toe-side stepped down wall, wherein the heel-side stepped down wall intersects the insert recess wall at a heel-side crown-to-face junction point, the toe-side stepped down wall intersects into the insert recess wall at a toe-side crown-to-face junction point, the heel-side crown-to-face junction point has a heel-side junction point elevation measured vertically from the ground plane, the toe-side crown-to-face junction point has a toe-side junction point elevation measured vertically from the ground plane, and the toe-side junction point elevation is at least 10% greater than the heel-side junction point elevation.

22. The golf club head of claim 15 , wherein the frame has a forward ledge extending to a recess wall leading edge, the hosel portion has an internal hosel surface and a portion of the internal hosel surface contacts the face support ledge wall and extends to a point between the face support ledge wall and the recess wall leading edge.

23. The golf club head of claim 22 , wherein the face plate has a face plate perimeter, the face plate perimeter has a face perimeter thickness, and the face plate is formed with a notch that reduces the face perimeter thickness to a notch edge thickness to accommodate portion of the internal hosel surface extending between the face support ledge wall and the recess wall leading edge.

24. The golf club head of claim 23 , wherein the face plate perimeter has a non-notch edge thickness, and the notch edge thickness is at least 20% less than the non-notch edge thickness, throughout at least 5 millimeters of the face plate perimeter, the golf club head has a center of gravity having a CG x-axis coordinate CGx relative to the face center of between −5 mm to 5 mm, a CG y-axis coordinate CGy relative to the face center of between 33 mm and 50 mm, a CG z-axis coordinate CGz relative to the face center of −10 mm to 0 mm, a Zup elevation above the ground plane of 18-30 mm, a CG x-axis, a CG y-axis, a CG z-axis, an Ixx moment of inertia about the CG x-axis of 300-440 kg-mm 2 , an Iyy moment of inertia about the CG y-axis of 265-350 kg-mm 2 , an Izz moment of inertia about the CG z-axis of 480-700 kg-mm 2 , a club head mass of 180-210 grams, and a volume of 390-500 cc.

25. The golf club head of claim 23 , wherein the golf club head has a center of gravity having a CG x-axis coordinate CGx relative to the face center of between −5 mm to 5 mm, a CG y-axis coordinate CGy relative to the face center of between 33 mm and 50 mm, a CG z-axis coordinate CGz relative to the face center of −10 mm to 0 mm, a Zup elevation above the ground plane of 18-30 mm, a CG x-axis, a CG y-axis, a CG z-axis, an Ixx moment of inertia about the CG x-axis of 300-440 kg-mm 2 , an Iyy moment of inertia about the CG y-axis of 265-350 kg-mm 2 , an Izz moment of inertia about the CG z-axis of 480-700 kg-mm 2 , the face plate material is a first titanium alloy and the frame material is a second titanium alloy that is different than the first titanium alloy, a club head mass of 180-210 grams, and a volume of 390-500 cc.

26. The golf club head of claim 3 , wherein the center face 3-point method crown radius of curvature is less than 23 mm, the 5 millimeter heelward 3-point method crown radius of curvature is less than 23 mm, the 5 millimeter toeward 3-point method crown radius of curvature is less than 23 mm, the 10 millimeter heelward 3-point method crown radius of curvature is less than 23 mm, the 10 millimeter toeward 3-point method crown radius of curvature is less than 23 mm, the 20 millimeter heelward 3-point method crown radius of curvature is less than 23 mm, and the 20 millimeter toeward 3-point method crown radius of curvature is less than 23 mm.

27. The golf club head of claim 1 , wherein the hosel portion has a constant diameter portion and a vertical forward hosel plane contacts a forwardmost point on the constant diameter portion and is parallel to the shaft axis plane, wherein a portion of the crown leading edge is forward of the vertical forward hosel plane and a portion of the crown leading edge is rearward of the vertical forward hosel plane.

28. The golf club head of claim 1 , wherein the golf club head has a center of gravity located at an elevation Zup above the ground plane, the nonmetallic crown has a crown apex and an apex plane that is parallel to the ground plane, the crown leading edge is located a crown leading edge apex-offset distance vertically below the apex plane, and the crown leading edge apex-offset distance of a portion of the crown leading edge is at least 40% of Zup.

29. The golf club head of claim 28 , wherein the crown leading edge apex-offset distance is no more than 120% of Zup.

30. The golf club head of claim 29 , wherein the crown leading edge apex-offset distance of a portion of the crown leading edge is at least 60% of Zup, the golf club head has a center of gravity having a CG x-axis coordinate CGx relative to the face center of between −5 mm to 5 mm, a CG y-axis coordinate CGy relative to the face center of between 33 mm and 50 mm, a CG z-axis coordinate CGz relative to the face center of −10 mm to 0 mm, a Zup elevation above the ground plane of 18-30 mm, a CG x-axis, a CG y-axis, a CG z-axis, an Ixx moment of inertia about the CG x-axis of 300-440 kg-mm 2 , an Iyy moment of inertia about the CG y-axis of 265-350 kg-mm 2 , an Izz moment of inertia about the CG z-axis of 480-700 kg-mm 2 , a club head mass of 180-210 grams, and a volume of 390-500 cc.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 6, 2023
From: BEACH, TODD P.; GREANEY, MARK VINCENT; HARBERT, CHRISTOPHER JOHN; HOFFMAN, JOSEPH HENRY; ROLLINS, CHRISTOPHER
To: TAYLOR MADE GOLF COMPANY, INC.
Reel/Frame 062598/0626 →
Continuity (5)
Continuation In Part 17547519 · Dec 10, 2021
Continuation 17006561 · Aug 28, 2020
Provisional Application 63292708 · Dec 22, 2021
Provisional Application 62894523 · Aug 30, 2019
Related Publication 20230117902A1 · Apr 20, 2023
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