Internally pressurized golf club face
A golf club head having a dual wall internally pressurized face plate and an apparatus for varying the pressurization thereof.
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1. Field of the Invention
This invention relates generally to a metal “wood” golf club heads and iron golf club heads, and more particularly, to a golf club head having a dual wall internally pressurized face plate and an optional method and apparatus for varying the pressurization thereof.
2. Description of the Related Art
Golf club manufacturers have fabricated multiple designs for golf clubs all with the goal of improving a golfer's performance. Different materials including metals for the “woods” have been used to increase ball flight distance and improve the feel of the club. Various weighting schemes, including perimeter weighting, have been proposed to optimize the center of gravity and moment of inertia of club heads. Oversized club heads have been utilized to attempt to provide a large sweet spot on the ball striking face. However, the weight of golf clubs that can be used in professional or PGA sanctioned events is strictly controlled by golf associations. Accordingly, particularly for the oversized club heads, weight or metal thickness in or around the faceplate may be sacrificed to allow adequate thickness throughout the entirety of the oversized head.
Perhaps the most important factor in hitting a golf ball well is the location of impact of the ball on the striking surface or the faceplate. A ball which is hit in the center or the sweet spot of the faceplate will generally go farther and straighter than a ball impacting near the heel or toe or above or below the sweet spot of the faceplate. For this reason, the weight or mass distribution in or at the periphery of the faceplate becomes increasingly significant for hitting golf balls at a location moving away from the sweet spot to try to compensate for an off center hit. Thus, club designers seek to maximize efficiency of both on target strikes within the sweet spot and off target strikes outside of the sweet spot in the design of golf club heads.
Another important factor in hitting a golf ball well is the coefficient of restitution (“COR”) of the striking surface of the faceplate of the golf club. Increasing the COR will increase the force imparted to the golf ball and thus the distance the ball will travel for a given club head speed. However, a high COR may also cause a ball that is hit of center of the sweet spot to travel off line further than it would for a lower COR club head. Accordingly, while expert or professional players may be able to utilize and take advantage of high COR club heads on a more consistent basis, average players may only realize the benefit of a high COR club head infrequently, when they hit the ball in the sweet spot, and the remainder of the time a high COR club head may be detrimental.
A club head that combines a high COR or a variable COR, with better off-sweet spot control, would be beneficial to both professional and average golfers.
BRIEF SUMMARY OF THE INVENTIONThe present invention provides a golf club faceplate having a double wall defining there between a chamber that can be internally pressurized, during manufacture or with the use of a pump, to vary the COR of the golf club. The double wall faceplate, sole plate and hozel, and potentially the toe, heel, top and rear wall, are preferably formed from metal such as an iron alloy or titanium.
A valve either at the edge of the double wall faceplate or extending through the back wall thereof allows for the introduction of pressurized air or gas into the cavity between the strike wall and back wall of the double wall faceplate. By pressurizing the cavity between the strike wall and back wall of the double wall faceplate, the COR of the club can be adjusted to a players specification.
The above described and many other features and attendant advantages of the present invention will become apparent from a consideration of the following detailed description in conjunction with the accompanying drawings.
BRIEF DESCRIPTION OF THE DRAWINGSA detailed description of the invention will be made with reference to the accompanying drawings wherein:
The strike wall 12 and back wall 14 may be formed to an equal thickness, however, it is preferred that the back wall 14 be thicker and thereby less flexible than the front wall 12. The thicknesses of the strike wall 12 and back wall 14 are preferably in the range of between 0.1 mm to 6.0 mm. The thicknesses may be either constant from the top to bottom and heel to toe, or the thickness may vary. Similarly, the cross-sectional dimensions of the cavity 16 may be constant or may vary from the top to bottom and/or from the heel to the toe. Generally, the cross-sectional dimensions of the cavity are in the range of 0.1 mm to 6.0 mm.
The club head 10 as shown in the cross-sectional view of
While the cavity 16 is formed during the process of securing, for example by welding, the strike wall 12 and the back wall 14. During the process, the cavity 16 may be sealed at atmospheric pressure, under a partial vacuum or under pressure. Sealing cavity 16 under a partial vacuum will tend to make the deflection of the strike wall 12 more pronounced and reduce the coefficient of restitution of the golf club. By comparison, sealing the cavity under pressure will reduce the deflection of the strike wall 12 and increase the coefficient of restitution for the golf club.
Moreover, the present invention contemplates the incorporation of a valve into the golf club head 10 that allows the user to selectively pressurize the space within cavity 16. As shown in
The valve 40 of
The club head 10 may incorporate a composite cover, designed so as to fit snugly over and conform to the top plate 18, and the toe 22 and heel 24 portion of the sole plate 20. The composite cover is bonded to the metallic portion 12 using an appropriate bonding material, such as a glue, epoxy or solvent based adherent.
The hozel 46 is positioned in the hollow interior of the golf club head at the joint between the heel 24 of the sole plate 20 and the back wall 14 and is formed and placed in the club head 10 to receive a golf club shaft. The hozel 16 is preferably aligned with or offset from the center of gravity of the club head 10. The club head 10 depicted is for a right handed user, while a club head for a left handed user would have a mirror image construction.
The materials used to form the metal portion 12 of the club head 10 include steel, stainless steel, titanium, and other metallic materials having similar or enhanced strength and resilience properties, however titanium is preferred.
Having thus described different embodiments of the invention, other variations and embodiments that do not depart from the spirit of the invention will become readily apparent to those skilled in the art. The scope of the present invention is thus not limited to any one particular embodiment, but is instead set forth in the appended claims and the legal equivalents thereof.
Claims
1. A golf club head comprising:
- a sole plate secured to a dual wall faceplate having a strike wall and a back wall separated by an internally pressurizable cavity.
2. The golf club head of claim 1 wherein said golf club head further comprises:
- a valve providing access to pressurize the cavity between said strike wall and said back wall of said face plate.
3. The golf club head of claim 1 wherein said valve is positioned at the toe of said golf club head.
4. The golf club head of claim 1 further comprising a hozel secured to said back wall of said faceplate, said hozel including a valve interconnecting said hozel and the cavity.
5. The golf club head of claim 1 wherein said dual wall faceplate is formed from a material selected from the group consisting of steel, stainless steel, titanium, and similar metallic materials.
6. The golf club head of claim 1 wherein said dual wall faceplate is secured to a sole plate, said dual wall faceplate and said sole plate are formed from a material selected from the group consisting of steel, stainless steel, titanium, and similar metallic materials.
7. The golf club head of claim 1 wherein said strike wall has a thickness of between 0.1 mm to 6.0 mm.
8. The golf club head of claim 7 wherein back wall is thicker than said strike wall.
9. The golf club head of claim 7 wherein said metallic assembly is formed from a material selected from the group consisting of steel, stainless steel, titanium, and similar metallic materials.
10. The golf club head of claim 1 wherein said back wall has a thickness of between 0.1 mm to 6.0 mm.
11. The golf club head of claim 1 wherein said internally pressurizable cavity has a thickness of between 0.1 mm to 6.0 mm.
12. A golf club head comprising:
- a dual wall faceplate, having a strike wall having a thickness of between 0.1 mm to 6.0 mm and a back wall having a thickness of between 0.1 mm to 6.0 mm, said strike wall and back wall separated by an internal cavity having a cross sectional thickness of between 0.1 mm to 6.0 mm;
- a sole plate;
- a hozel; and
- a top, wherein said sole plate, hozel and said top are secured to said dual wall faceplate.
13. The golf club head of claim 12 wherein said sole plate, hozel, dual wall faceplate are formed from a material selected from the group consisting of steel, stainless steel and titanium.
14. The golf club head of claim 12 wherein said golf club head further comprises:
- a valve providing access to pressurize said cavity between said strike wall and said back wall of said face plate.
Type: Application
Filed: Jan 6, 2005
Publication Date: Jul 6, 2006
Applicant:
Inventor: Jethro Liou (City of Industry, CA)
Application Number: 11/030,792
International Classification: A63B 53/04 (20060101);