Golf club head having adjustable weighting system

The adjustable weighting system in golf club heads maintains high moment of inertia and low, rearward center of gravity, addressing the need for customizable ball flight without compromising performance.

JP2025122105AActive Publication Date: 2025-08-20KARSTEN MFG CORP
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Patent Information

Application Number
JP2025085143
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Priority Date
2017-05-23
Filing Date
2025-05-21
Publication Date
2025-08-20
Estimated Expiration
2037-06-29

AI Technical Summary

Technical Problem

Current golf club heads require complex internal structures that adversely affect the moment of inertia and shift the center of gravity, necessitating a need for a system that allows weight adjustment without compromising these factors.

Method used

An adjustable weighting system with a single port and channel for removable weights, positioned near the perimeter to maintain high moment of inertia and low, rearward center of gravity, allowing for customizable ball flight characteristics.

Benefits of technology

The system enables users to adjust the club head's center of gravity while preserving a high moment of inertia, enhancing forgiveness on off-center hits and optimizing ball flight traits.

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Abstract

To provide an adjustable weighting system for golf club heads, including a single port for receiving a member.SOLUTION: A golf club head includes an adjustable weighting system positioned on a club body, the adjustable weighting system includes a single channel and a member that is received by the single channel and fastened to the club body, where a plurality of weights is coupled to the member. The golf club head can additionally or alternatively include a face angle adjustment system positioned on a sole, the face angle adjustment system includes a member that is removably received by the single channel and fastened to a source, the member includes a first end member and a second end member, where the member is configured to be repositioned within the channel to adjust a resting face angle of the golf club head.SELECTED DRAWING: Figure 4B
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Description

[Technical Field]

[0001] The present disclosure relates to golf clubs, and more particularly to an adjustable weighting system for a golf club head that includes a single port that receives a member. One or more weights can be attached to the member at one or more locations.

[0002] CROSS-REFERENCE TO RELATED APPLICATIONS This application claims priority to U.S. Provisional Patent Application No. 62 / 509,817, filed May 23, 2017, U.S. Provisional Patent Application No. 62 / 501,474, filed May 4, 2017, U.S. Provisional Patent Application No. 62 / 449,332, filed January 23, 2017, and U.S. Provisional Patent Application No. 62 / 356,416, filed June 29, 2016, the contents of all of which are incorporated in their entirety. [Background technology]

[0003] Various characteristics of a golf club can affect the performance of the golf club, for example, the center of gravity and moment of inertia of the golf club head are characteristics that can affect performance.

[0004] The center of gravity and moment of inertia of a golf club head are a function of the distribution of mass in the golf club head. In particular, distributing the mass of the club head closer to the sole portion of the club head, closer to the striking face of the club head, and / or closer to the toe and heel portions of the club head can change the center of gravity and / or moment of inertia of the club head. Changing the moment of inertia of the club head can change the forgiveness of the golf club, the direction of golf ball flight, and / or the angle of golf ball flight.

[0005] Many current weighting systems in golf club heads require large, complex internal structures that reduce the club head's moment of inertia and move the club head's center of gravity upward (toward the crown) and forward (toward the face). There is a need in the art for a club head that provides a user with the ability to adjust the club head's weight and center of gravity location to affect ball flight (trajectory and / or spin) without adversely affecting the moment of inertia or center of gravity location. [Brief explanation of the drawings]

[0006] [Figure 1] FIG. 1 is a perspective view of a golf club head including one or more embodiments of the adjustable weighting system disclosed herein.

[0007] [Figure 2] FIG. 2 is a front view of the club head of FIG. 1 showing the face plate.

[0008] [Figure 3A] 2 is a top view (or crown) of the club head of FIG. 1. FIG.

[0009] [Figure 3B] 3B is a cross-sectional view of the club head of FIG. 1 taken along line 3B-3B of FIG. 3A.

[0010] [Figure 4A] 2 is a perspective view of an embodiment of an adjustable weighting system showing a channel located at the source of the club head of FIG. 1 and an adjustable weighting system received in the channel.

[0011] [Figure 4B] FIG. 4B is an exploded perspective view of the club head and adjustable weighting system of FIG. 4A showing the weights removed.

[0012] [Figure 5]2 is an enlarged perspective view of an embodiment of an adjustable weighting system showing a channel located at the source of the club head of FIG. 1 and the adjustable weighting system received in the channel;

[0013] [Figure 6] FIG. 6 is a perspective view of the channel of FIG. 5 showing the adjustable weighting system removed from the channel.

[0014] [Figure 7] 1. FIG. 2 is an enlarged perspective view of another embodiment of an adjustable weighting system showing a channel located at the source of the club head of FIG. 1 and a member with an adjustable weight removed from the channel.

[0015] [Figure 8] FIG. 8 is a perspective view of the adjustable weights associated with the members in the adjustable weighting system of FIG. 7, showing one weight removed.

[0016] [Figure 9] FIG. 2 is an enlarged perspective view of another embodiment of an adjustable weighting system showing a channel located at the source of the club head of FIG. 1, a first member having an adjustable weight received in the channel, and a second member having an adjustable weight removed from the channel.

[0017] [Figure 10] 10 is a perspective view of an adjustable weight associated with a member in the adjustable weighting system of FIG. 9.

[0018] [Figure 11] 10 is an enlarged perspective view of another embodiment of a weighting system showing a channel located at the source of the club head of FIG. 1 and a member connecting to an adjustable weight removed from the channel.

[0019] [Figure 12]10 is an enlarged perspective view of another embodiment of a weighting system showing a channel located at the source of the club head of FIG. 1 and a member connecting to a plurality of adjustable weights removed from the channel.

[0020] [Figure 13] FIG. 1 is a perspective view of an embodiment of a face angle adjustment system configured to provide a user with static face angle adjustment.

[0021] [Figure 14] 2 is a perspective view of an embodiment of a weighting system showing a channel located at the source of the club head of FIG. 1 and an adjustable weighting system received in the channel.

[0022] [Figure 15] 15 is a perspective view of the channel of FIG. 14 showing the adjustable weighting system removed from the channel and the weight separated from the member.

[0023] [Figure 16] 1. FIG. 2 is a perspective view of another embodiment of a weighting system showing a channel located at the source of the club head of FIG. 1 and an adjustable weighting system received in the channel.

[0024] [Figure 17] 17 is a perspective view of the channel of FIG. 16 showing the adjustable weighting system removed from the channel and the weight separated from the member.

[0025] [Figure 18] 1. FIG. 2 is a perspective view of another embodiment of a weighting system showing a channel located at the source of the club head of FIG. 1 and an adjustable weighting system received in the channel.

[0026] [Figure 19]19 is a perspective view of the channel of FIG. 18 showing the adjustable weighting system removed from the channel and the weight separated from the member.

[0027] [Figure 20] 1. FIG. 2 is a perspective view of another embodiment of a weighting system showing a channel located at the source of the club head of FIG. 1 and an adjustable weighting system received in the channel.

[0028] [Figure 21] 21 is a perspective view of the channel of FIG. 20 showing the adjustable weighting system removed from the channel and the weight separated from the member.

[0029] [Figure 22] 1. FIG. 2 is a perspective view of another embodiment of a weighting system showing a channel located at the source of the club head of FIG. 1 and an adjustable weighting system received in the channel.

[0030] [Figure 23] 2 is a perspective view of an embodiment of a weighting system showing a channel located at the source of the club head of FIG. 1 and an adjustable weighting system received in the channel.

[0031] [Figure 24] 24 is a perspective view of the channel of FIG. 23 showing the adjustable weighting system removed from the channel and the weight separated from the member.

[0032] [Figure 25] 1. FIG. 2 is a perspective view of another embodiment of a weighting system showing a channel located at the source of the club head of FIG. 1 and the adjustable weighting system removed from the channel in an exploded view.

[0033] [Figure 26]1. FIG. 2 is a perspective view of another embodiment of a weighting system showing a channel located at the source of the club head of FIG. 1 and an adjustable weighting system received in the channel.

[0034] [Figure 27] 1. FIG. 2 is a perspective view of another embodiment of a weighting system showing a channel located at the source of the club head of FIG. 1 and an adjustable weighting system received in the channel.

[0035] [Figure 28] 1. FIG. 2 is a perspective view of another embodiment of a weighting system showing a channel located at the source of the club head of FIG. 1 and an adjustable weighting system received in the channel.

[0036] [Figure 29] 1. FIG. 2 is a perspective view of another embodiment of a weighting system showing a channel located at the source of the club head of FIG. 1 and an adjustable weighting system received in the channel.

[0037] [Figure 30] 1 is a perspective view of an exemplary coupling mechanism of a weight to a member or insert of an adjustable weighting system. FIG.

[0038] [Figure 31] 10A-10C are perspective views of other exemplary coupling mechanisms of weights to members or inserts of an adjustable weighting system.

[0039] [Figure 32] 10A-10C are perspective views of other exemplary coupling mechanisms of weights to members or inserts of an adjustable weighting system.

[0040] [Figure 33] 10A-10C are perspective views of other exemplary coupling mechanisms of weights to members or inserts of an adjustable weighting system. DETAILED DESCRIPTION OF THE INVENTION

[0041] Described herein are golf club heads with multi-configuration adjustable weighting systems that allow a user to adjust the club head's center of gravity while maintaining a high moment of inertia and a low and rearward center of gravity. In many embodiments, the club head includes a club body having a sole opposite a crown, a heel opposite a toe, a butt end, and a hosel, with a channel formed therein. The adjustable weighting system includes a member received by the channel and secured to the club body, the member having a member body with a first end and a second end. A first weight is configured to couple to the first end of the member body, and a second weight is configured to couple to the second end of the member body. The first weight and the second weight are relocatable or repositionable to adjust the club head's center of gravity, thereby changing ball flight characteristics (i.e., ball spin or trajectory). In many embodiments, the adjustable weighting system can be removably coupled to the channel using fasteners having a density equal to or less than that of the club head body.

[0042] In many embodiments, the adjustable weighting systems described herein protrude from or are minimally recessed from the exterior contours of the club head. Furthermore, in many embodiments, the adjustable weighting systems described herein are positioned near the perimeter of the club head. The positioning of the adjustable weighting systems maximizes perimeter weighting and low and rear weighting, thereby maximizing the club head's moment of inertia for forgiveness on off-center hits and positioning the club head's center of gravity low and rearward to increase launch angle and reduce backspin. Thus, the golf club heads described herein allow the user to adjust the club head's center of gravity to tailor ball flight while maintaining optimal design and performance characteristics (high moment of inertia and low and rearward center of gravity location).

[0043] Many of the embodiments described herein include adjustable weighting systems located within grooves or channels without the need for significant internal structures that would adversely affect the moment of inertia and center of gravity location.

[0044] As disclosed herein, the terms "loft" or "loft angle" of a golf club refer to the angle formed between the club face and the shaft, as measured by any suitable loft and lie instrument.

[0045] The term "face angle" of a golf club, as used herein, refers to the angle formed between the club face and the golf ball, more specifically, between the club face and an imaginary line extending from the golf ball along the player's intended target line. The term "address face angle" or "rest face angle" of a golf club, as used herein, refers to the angle formed between the club face and the golf ball at address (i.e., before swinging), more specifically, between the club face at address and an imaginary line extending from the golf ball along the player's intended target line. It should be understood that the face angle is in a neutral position when the club face is square (or nearly perpendicular) to the golf ball / imaginary line. When the club head rotates about the shaft with the toe end moving away from the ball, the face angle is in an open position. When the club head rotates about the shaft with the toe end moving toward the ball, the face angle is in a closed position.

[0046] The terms "first," "second," "third," "fourth," etc., in the specification and claims, if any, are used to distinguish between similar elements and are not necessarily intended to describe a particular sequential or chronological order. Terms so used should be understood to be interchangeable in appropriate circumstances, such that the embodiments described herein are capable of operating in orders other than those illustrated or otherwise described herein. Furthermore, the terms "comprise" and "have," and any conjugations thereof, are intended to cover a non-exclusive inclusion, such that a process, method, system, article, device, or apparatus that includes a list of elements is not necessarily limited to those elements, but may include other elements not expressly listed or inherent to such process, method, system, article, device, or apparatus.

[0047] If any, the terms "left," "right," "front," "rear," "top," "bottom," "above," "below," etc. in this specification and claims are used for descriptive purposes and not necessarily to describe permanent relative positions. It should be understood that terms so used are interchangeable in appropriate circumstances such that embodiments of the apparatus, methods, and / or articles of manufacture described herein are operable, for example, in orientations other than those illustrated or otherwise described herein.

[0048] The terms "couple," "couples," "coupled," "coupling," and the like should be understood broadly and mean to mechanically or otherwise connect two or more elements. The connection (mechanical or otherwise) may be for any length of time, e.g., permanent, semi-permanent, or momentary.

[0049] Other features and aspects will become apparent upon review of the following detailed description and accompanying drawings. Before describing any embodiments of the present disclosure in detail, it is to be understood that the disclosure is not limited in its application to the details or the configuration and arrangement of components set forth in the following description or illustrated in the drawings. The present disclosure is capable of supporting other embodiments and of being practiced or carried out in various ways. It is to be understood that the description of a particular embodiment is not intended to limit the disclosure to include all modifications, equivalents, and alternatives falling within the spirit and scope of the disclosure. Moreover, it is to be understood that the phraseology and terminology used herein is for the purpose of description and should not be regarded as limiting.

[0050] For ease of discussion and understanding, and for purposes of illustration only, the following detailed description will describe the golf club head 10 as a wood, and more particularly, a driver. It should be understood that a wood is provided to illustrate one or more embodiments of the adjustable weighting systems 500, 700, 800, 900, 1000, 1100, 1300, 1400, 1500, 1600, 1700, 1800, 1900, 2000, 2100, 2200, 2300 as disclosed herein. The disclosed systems 500, 700, 800, 900, 1000, 1100, 1300, 1400, 1500, 1600, 1700, 1800, 1900, 2000, 2100, 2200, 2300 can be used with any desired wood, hybrid, iron, or other golf club that has one or more weights adjustably positioned in the golf club head and / or an adjustable face angle at address. For example, the club head 10 can include, but is not limited to, a driver, fairway wood, hybrid, 1 iron, 2 iron, 3 iron, 4 iron, 5 iron, 6 iron, 7 iron, 8 iron, 9 iron, pitching wedge, gap wedge, utility wedge, sand wedge, lob wedge, and / or putter.Additionally, the golf club head 10 may be configured to have a range of angles from about 3 degrees to about 65 degrees (3, 3.5, 4, 4.5, 5, 5.5, 6, 6.5, 7, 7.5, 8, 8.5, 9, 9.5, 10, 10.5, 11, 11.5, 12, 12.5, 13, 13.5, 14, 14.5, 15, 15.5, 16, 16.5, 17, 17.5, 18, 18. 5, 19, 19.5, 20, 20.5, 21, 21.5, 22, 22.5, 23, 23.5, 24, 24.5, 25, 25.5, 26, 26.5, 27, 27.5, 28, 28.5, 29, 29.5, 30, 30.5, 31, 31.5, 32, 32.5, 33, 33.5, 34, 34.5, 35, 35.5, 36 , 36.5, 37, 37.5, 38, 38.5, 39, 39.5, 40, 40.5, 41, 41.5, 42, 42.5, 43, 43.5, 44, 44.5, 45, 45.5, 46, 46.5, 47, 47.5, 48, 48.5, 49, 49.5, 50, 50.5, 51, 51.5, 52, 52.5, 53, 53. The golf club may have a loft that may be in the range of (including but not limited to) 5, 54, 54.5, 55, 55.5, 56, 56.5, 57, 57.5, 58, 58.5, 59, 59.5, 60, 60.5, 61, 61.5, 62, 62.5, 63, 63.5, 64, 64.5, and / or 65 degrees.

[0051] A. Golf club head with adjustable weighting system Referring now to the drawings, Figures 1-3 illustrate one embodiment of a golf club head 10 incorporating one or more embodiments of the adjustable weighting systems 500, 700, 800, 900, 1000, 1100, 1300, 1400, 1500, 1600, 1700, 1800, 1900, 2000, 2100, 2200, and 2300 disclosed herein. The adjustable weighting systems described herein include a weight structure removably coupled to a channel or groove in the body of the club head. The weight structure of the adjustable weighting system includes a member configured to accept multiple weights in various configurations. The adjustable weighting system can be removed from the channel in the club head, and multiple weights having different masses can be repositioned or replaced such that the center of gravity of the club head changes when the adjustable weighting system is repositioned within the cavity. This changes the ball flight characteristics (i.e., ball spin or trajectory).

[0052] The golf club head 10 includes a club body 14 (or body 14) having a toe or toe end 18 opposite a heel or heel end 22. The body 14 also includes a crown or top 26 opposite a sole or bottom 30. The body 14 defines a striking face 38 (shown in FIGS. 1-2) and carries a face plate or striking plate or club face or striking face 34 (shown in FIGS. 1-2) opposite a rear or back or rear end 42 (shown in FIG. 1). The golf club head 10 also includes a hosel 50 having a hosel axis 54 (shown in FIG. 2) extending through the center of the hosel 50. The hosel 50 is configured to receive a golf club shaft (not shown) that carries a grip (not shown).

[0053] 3, the golf club head 10 includes a rail or skirt 74 that defines a transition region between the crown 26 and the sole 30. The rail 74 generally extends around the body 14 of the golf club head from the end of the face plate 34 at the toe end 18 to the end of the face plate 34 at the heel end 22. In the illustrated embodiment, the rail 74 is generally curved or arcuate in shape.

[0054] In many embodiments, golf club head 10 comprises a driver-type club head. In these embodiments, the loft angle of club head 100 may be less than about 16 degrees, less than about 15 degrees, less than about 14 degrees, less than about 13 degrees, less than about 12 degrees, less than about 11 degrees, or less than about 10 degrees. Furthermore, in these embodiments, the volume of club head 100 may be greater than about 400 cc, greater than about 425 cc, greater than about 450 cc, greater than about 475 cc, greater than about 500 cc, greater than about 525 cc, greater than about 550 cc, greater than about 575 cc, greater than about 600 cc, greater than about 625 cc, greater than about 650 cc, greater than about 675 cc, or greater than about 700 cc. In some embodiments, the volume of the club head can be between about 400cc and 600cc, between about 500cc and 600cc, between about 500cc and 650cc, between about 550cc and 700cc, between about 600cc and 650cc, between about 600cc and 700cc, or between about 600cc and 800cc.

[0055] In some embodiments, club head 10 may comprise a fairway wood-type club head. In these embodiments, the loft angle of club head 100 may be less than about 35 degrees, less than about 34 degrees, less than about 33 degrees, less than about 32 degrees, less than about 31 degrees, or less than about 30 degrees. Furthermore, in these embodiments, the loft angle of club head 100 may be greater than about 12 degrees, greater than about 13 degrees, greater than about 14 degrees, greater than about 15 degrees, greater than about 16 degrees, greater than about 17 degrees, greater than about 18 degrees, greater than about 19 degrees, or greater than about 20 degrees. Furthermore, in these embodiments, the volume of club head 100 may be less than about 400 cc, less than about 375 cc, less than about 350 cc, less than about 325 cc, less than about 300 cc, less than about 275 cc, less than about 250 cc, less than about 225 cc, or less than about 200 cc. For example, the volume of the club head can be about 300cc to 400cc, about 325cc to 400cc, about 350cc to 400cc, about 250cc to 400cc, about 250cc to 350cc, or about 275cc to 375cc.

[0056] In some embodiments, club head 10 may comprise a hybrid-type club head. In these embodiments, the loft angle of club head 100 may be less than about 40 degrees, less than about 39 degrees, less than about 38 degrees, less than about 37 degrees, less than about 36 degrees, less than about 35 degrees, less than about 34 degrees, less than about 33 degrees, less than about 32 degrees, less than about 31 degrees, or less than about 30 degrees. Furthermore, in these embodiments, the loft angle of club head 100 may be greater than about 16 degrees, greater than about 17 degrees, greater than about 18 degrees, greater than about 19 degrees, greater than about 20 degrees, greater than about 21 degrees, greater than about 22 degrees, greater than about 23 degrees, greater than about 24 degrees, or greater than about 25 degrees. Furthermore, in these embodiments, the volume of club head 100 may be less than about 200 cc, less than about 175 cc, less than about 150 cc, less than about 125 cc, less than about 100 cc, or less than about 75 cc. For example, the volume of the club head can be between about 100cc and 150cc, between about 75cc and 150cc, between about 100cc and 125cc, or between about 75cc and 125cc. In other embodiments, golf club head 100 can include any type of golf club head.

[0057] The face plate 34 has a plurality of grooves 46 (shown in FIGS. 1-2 ) disposed therein. The striking face 34 of the club head 10 defines a geometric center 140. In some embodiments, the geometric center 140 may be located at a geometric center point about the striking face perimeter and at the midpoint of the face height. In the same or other examples, the geometric center 140 may be centered relative to a designed impact zone, which may be defined by the area of the grooves on the striking face. As an alternative approach, the geometric center of the striking face may be located according to the definition of a golf governing body, such as the United States Golf Association (USGA). For example, the geometric center 140 of the striking face 34 may be determined in accordance with Section 6.1 of the USGA Procedure for Measuring the Flexibility of a Golf Club Head (USGA-TPX3004, Rev. 1.0.0, May 1, 2008) (http: / / www.usga.org / equipment / testing / protocols / Procedure-For-Measuring-The-Flexibility-Of-A-Golf-Club-Head / ) ("Flexibility Procedure").

[0058] The club head 10 defines a loft plane 10102 that is tangent to the geometric center 140 of the striking face 34. The club head 10 further defines a coordinate system having an origin located at the geometric center 140 of the striking face 34. The coordinate system has an x'-axis 10106, a y'-axis 10104, and a z'-axis 10108. The x'-axis 10106 extends through the geometric center 140 of the striking face 34 in a direction from the heel 22 to the toe 18 of the club head 10. The y'-axis 10104 extends through the geometric center 140 of the striking face 34 in a direction from the crown 26 to the sole 30 of the club head 10 and perpendicular to the x'-axis 10106. The z'-axis 10108 extends perpendicular to the x'-axis 10106 and y'-axis 10104 through the geometric center 140 of the striking face 34 in a direction from the striking face 34 toward the rear end 42 of the club head 100 .

[0059] The coordinate system defines an x'y' plane 10124 extending through the x' axis 10106 and the y' axis 10104, an x'z' plane 10126 extending through the x' axis 10106 and the z' axis 10108, and a y'z' plane 10128 extending through the y' axis 10104 and the z' axis 10108, where the x'y' plane 10124, x'z' plane 10126, and y'z' plane 10128 are all perpendicular to one another and intersect at the origin of the coordinate system, which is located at the geometric center 140 of the striking face 34. The x'y' plane 10124 extends parallel to the hosel axis 54 and is disposed at an angle from the loft plane 10102 corresponding to the loft angle of the club head 100. Additionally, the x' axis 10106 is oriented at a 60 degree angle relative to the hosel axis 54 when viewed perpendicular to the x'y' plane 10124.

[0060] In these or other embodiments, the club head 10 can be viewed from a front view (FIG. 2) with the striking face 34 viewed perpendicular to the x'y' plane 10124. Additionally, in these or other embodiments, the club head 10 can be viewed from a side view or side cross-sectional view (FIG. 3B) with the heel 22 viewed perpendicular to the y'z' plane 10128.

[0061] 2, 3A, and 3B, golf club head 10 includes a center of gravity or CG 58 that defines the origin of a coordinate system that includes an x-axis 62, a y-axis 66, and a z-axis 70. The y-axis 66 (shown in FIG. 2) extends through the center of gravity 58 of club head 10 from the crown or top 26 to the sole or bottom 30, is parallel to the hosel axis 54 when viewed from the side, and is disposed at a 30-degree angle from the hosel axis 54 when viewed from the front (FIG. 2). The x-axis 62 (shown in FIG. 3) extends through the center of gravity 58 of club head 10 from the toe or toe end 18 to the heel or heel end 22, is perpendicular to the y-axis 66 when viewed from the front, and is parallel to the x'y' plane 10124. The z-axis 70 (shown in FIG. 3) extends through the center of gravity 58 of club head 10 from the club face 34 to the back end 42, and is perpendicular to the x-axis 62 and y-axis 66. The x-axis 62 extends through the head CG 58 from the toe or toe end 18 to the heel or heel end 22 and is parallel to the x'-axis 10106. The y-axis 66 extends through the head CG 58 from the crown or top 26 to the sole or bottom 30 and is parallel to the y'-axis 10104. The z-axis 70 extends through the head CG 58 from the club face 34 to the back end 42 and is parallel to the z'-axis 10108.

[0062] As shown in FIG. 3B , the club head 100 further includes a head depth plane 10120 and a head depth axis 10122. The head depth plane 10120 extends through the geometric center 140 of the striking face 34, perpendicular to the loft plane 10102, along a direction from the heel 22 to the toe 18 of the club head 10. The head depth axis 10122 extends through the geometric center 140 of the striking face 34, perpendicular to the loft plane 10102. In many embodiments, the head CG 58 is located at a head CG depth 10130 from the x'y' plane 10124 when measured in a direction perpendicular to the loft plane 10102. In some embodiments, the head CG 58 can be located at a head CG depth 10130 from the loft plane 10102 when measured in a direction perpendicular to the loft plane 10102. Head CG 58 is further located at a head CG height 10132 from the head depth plane 10120 when measured in a direction perpendicular to the head depth plane 10120. Furthermore, head CG height 10132 is measured as the offset distance of head CG 58 from the head depth plane 10120 in a direction perpendicular to the head depth plane 10120 toward the crown 26 or sole 30.

[0063] For further guidance in describing the innovations herein, x-axis 62 and z-axis 70 are positioned to correspond with the numbers on the analog clock of Figure 3A. Z-axis 70 extends between 12 o'clock ("12" through club face 34) and 6 o'clock ("6" through back 42), and x-axis 62 extends between 3 o'clock ("3" through toe end 18) and 9 o'clock ("9" through heel end 22).

[0064] Various golf club head parameters are important in achieving desired performance characteristics, such as the club head's moment of inertia, the location of the club head's center of gravity, and the adjustability of the club head's center of gravity. A high club head's moment of inertia increases the club head's tolerance for off-center hits. Positioning the club head's center of gravity low and rearward (i.e., toward the sole and rear of the club head) advantageously increases the moment of inertia, reduces backspin, and increases the launch angle of the golf ball at impact. The adjustability of the club head's center of gravity allows the user to adjust the club head's desired trajectory. Each of these parameters is important in golf club design to achieve desired or optimal performance characteristics. However, because many current center of gravity adjustment mechanisms (1) lower the club head's moment of inertia and / or (2) shift the club head's center of gravity upward and forward, design challenges exist in incorporating all of these parameters in a golf club head due to internal and / or bulky weight structures and / or inappropriate weight structure positioning.

[0065] The golf club head embodiments described below include adjustable weighting systems that significantly reduce the club head's moment of inertia and maintain or prevent a low, rearward club head center of gravity. For example, many of the following embodiments describe low-profile adjustable weighting systems and / or optimally positioned adjustable weighting systems that maintain a high club head moment of inertia and a low, rearward club head center of gravity while providing user adjustability of ball flight and / or trajectory, similar to club heads without adjustable weighting. Maintaining a high club head moment of inertia about the club head CG increases tolerance for off-center hits, and maintaining a high club head moment about the hosel axis increases rotational stability during the swing. Furthermore, maintaining a low, rearward club head center of gravity advantageously increases the club head's moment of inertia about the head CG, reducing backspin.

[0066] The club head 10 described herein has a moment of inertia I about the x-axis. xx (i.e., crown-sole moment of inertia), and moment of inertia about the y-axis I yy (i.e., heel-toe moment of inertia) and the moment of inertia I about the hosel axis hh and,

[0067] A club head including the adjustable weighting system described herein may have a weighting of 3100 g·cm 2 Super, 3200g cm 2 Super, 3300g cm 2 Super, 3400g cm 2 Super, 3500g cm 2 Super, 3600g cm 2 Super, 3700g cm 2 Super, 3800g cm 2 Super, 3900g cm 2 Super, 4000g cm 2 Super, 4100g cm 2 Super, 4200g cm 2 Super, 4300g cm 2 Super, 4400g cm 2 Over, or 4500 g·cm 2 moment of inertia I about the x-axis xx In some embodiments, a club head equipped with an adjustable weighting system described herein can have a weight of 3100 to 4000 g cm. 2 Between 3100 and 3800 g·cm 2 Between 3200 and 4000 g·cm 2 Between 3200 and 4000 g·cm 2 Between 3300 and 4000 g·cm 2 Between 3400 and 4000 g·cm 2 Between 3500 and 4000 g·cm 2 Moment of inertia I about the x-axis between xx It has.

[0068] Additionally, a club head equipped with the adjustable weighting system described herein may have a weight of 4700 g·cm 2Super, 4800g cm 2 Super, 4900g cm 2 Super, 5000g cm 2 Super, 5100g cm 2 Super, 5200g cm 2 Super, 5300g cm 2 Super, 5400g cm 2 Super, 5500g cm 2 Super, 5600g cm 2 Super, 5700g cm 2 Super, 5800g cm 2 Super, 5900g cm 2 Over, or 6000 g·cm 2 moment of inertia I about the y-axis yy In some embodiments, a club head including an adjustable weighting system described herein can have a weight of 4800 to 6000 g cm. 2 Between 4900 and 6000 g·cm 2 Between 5000 and 6000 g·cm 2 Between 5100 and 6000 g·cm 2 Between 5200 and 6000 g·cm 2 Between 5300 and 6000 g·cm 2 Between 5400 and 6000 g·cm 2 Moment of inertia I around the y-axis between yy It has.

[0069] Furthermore, the club heads equipped with the adjustable weighting systems described herein have a weighting ratio of 8500 g·cm 2 Super, 8750g cm 2 Super, 9000g cm 2 Super, 9050g cm 2 Over, or 10,000 g·cm 2 Moment of inertia about the hosel axis I hh In some embodiments, a club head including an adjustable weighting system described herein can have a weight of 9000 to 10000 g cm. 2 The moment of inertia about the hosel axis is between

[0070] Referring to Relation 1 below, many embodiments of club heads with adjustable weighting systems have a combined moment of inertia (MOI) about the head CG, defined as the sum of the moment of inertia about the x-axis and the moment of inertia about the y-axis. CG ) is included.

number

[0071] MOI (combined moment of inertia around the center of gravity of the head) CG is 7600g·cm 2 Super, 7700g cm 2 Super, 7800g cm 2 Super, 7900g cm 2 Super, 8000g cm 2 Super, 8100g cm 2 Super, 8200g cm 2 Super, 8300g cm 2 Super, 8400g cm 2 Super, 8500g cm 2 Super, 8600g cm 2 Super, 8700g cm 2 Super, 8800g cm 2 Super, 8900g cm 2 Super, 9000g cm 2 Super, 9100g cm 2 Super, 9200g cm 2 Over, or 9300 g·cm 2 For example, the composite moment of inertia (MOI) around the center of gravity of the head can be calculated as CG is 7700~9500g·cm 2 Between 7800 and 9500 g·cm 2 Between 7900 and 9500 g·cm 2 Between 8000 and 9500 g·cm 2 Between 8100 and 9500 g·cm 2 Between 8200 and 9500 g·cm 2 Between 8300 and 9500 g·cm 2 It can be between.

[0072] Referring to Relation 2 below, many embodiments of club heads with adjustable weighting systems have a combined moment of inertia (MOI) about the head CG and the hosel, which is defined as the sum of the moment of inertia about the x-axis, the moment of inertia about the y-axis, and the moment of inertia about the hosel axis. CG-H ) is included.

number

[0073] Combined moment of inertia (MOI) of the head CG and hosel CG-H is 14800g·cm 2 Super, 14900g cm 2 Super, 15000g cm 2 Super, 15100g cm 2 Super, 15200g cm 2 Super, 15300g cm 2 Super, 15400g cm 2 Super, 15500g cm 2 Super, 15600g cm 2 Super, 15700g cm 2 Super, 15800g cm 2 Super, 15900g cm 2 Super, 16000g cm 2 Super, 16200g cm 2 Super, 16400g cm 2 Super, 16600g cm 2 Super, 16800g cm 2 Super, 17000g cm 2 Super, 17200g cm 2 Super, 17400g cm 2 Super, 17600g cm 2 Super, 17800g cm 2 Super, 18000g cm 2 Super, 18400g cm 2 Super, 18800g cm 2 Super, 19000g cm 2 Super, 19200g cm 2 Over, or 19,400 g·cm 2For example, the composite moment of inertia (MOI) around the head CG and hosel CG-H is 15,000 to 19,500 g·cm 2 Between 15,000 and 19,000 g·cm 2 Between 15,000 and 18,000 g·cm 2 Between 16,000 and 19,500 g·cm 2 Between 16,000 and 19,000 g·cm 2 Between 16000 and 18000 g·cm 2 In these embodiments, for club heads with adjustable weighting systems having a volume between 425 and 450 cubic centimeters (cc), the combined moment of inertia (MOI) around the head CG and the hosel can be CG-H 15,000 g·cm 2 For clubheads with adjustable weighting systems that can be overweight and have a volume between 450 and 500 cubic centimeters (cc), the combined moment of inertia (MOI) around the head CG and hosel CG-H 17000g·cm 2 It can be super.

[0074] Club heads including the adjustable weighting systems described herein can have a head CG depth 10130 of greater than 1.6 inches, greater than 1.65 inches, greater than 1.7 inches, greater than 1.75 inches, greater than 1.8 inches, greater than 1.85 inches, greater than 1.9 inches, greater than 1.95 inches, or greater than 2.0 inches. For example, a club head with an adjustable weighting system can have a head CG depth 10130 between 1.61 and 2.0 inches, between 1.65 and 2.0 inches, between 1.7 and 2.0 inches, between 1.8 and 2.0 inches, between 1.61 and 3.0 inches, between 1.65 and 3.0 inches, between 1.7 and 3.0 inches, between 1.8 and 3.0 inches, between 1.9 and 3.0 inches, or between 2.0 and 3.0 inches.

[0075] Additionally, a club head including an adjustable weighting system described herein can have a head CG height 10132 that is located below the head depth plane 10120 (i.e., located between the head depth plane 10120 and the sole 30 of the club head). Additionally, a club head including an adjustable weighting system described herein can have a head CG height 10132 that is located within 0.25 inches, within 0.20 inches, within 0.15 inches, within 0.10 inches, within 0.09 inches, within 0.08 inches, within 0.07 inches, within 0.06 inches, within 0.05 inches, or within 0.04 inches of the head depth plane 10120 toward the crown 26 or toward the sole 30 of the club head.

[0076] In many embodiments, and as described above, the adjustable weighting system of the club head 10 includes an insert or member that can accept one or more weights in multiple configurations, with one weight having a greater mass than at least one of the remaining weights. The member includes multiple mounting arrangements or locations for accepting the weights. Furthermore, the member is removably positionable within a channel or groove of the club head, with the weights arranged in various configurations, to adjust the club head's center of gravity (CG) position. For example, to adjust the club head's CG position, the adjustable weighting system can be removed from the channel or groove and the weights replaced or repositioned (i.e., a heavier weight moved to a different mounting location). This changes the club head's center of gravity when the adjustable weighting system is repositioned within the club head's channel or groove. Adjusting the club head's CG position using the adjustable weighting systems described herein can affect the club head's ball trajectory and / or spin characteristics at impact while maintaining a high club head moment of inertia.

[0077] In many embodiments, the channel of the club head includes a width W, defined as the distance between the sides of the channel in the fore-aft direction, and a height H, defined as the distance between the sole and the bottom of the channel. The channel width W and height H can be constant along the length of the channel from near the heel to near the toe, or the channel width W and height H can vary along the length of the channel from heel to toe such that the cross-sectional area of the channel changes. In many embodiments, the channel height H can range from 0.05 inches to 0.4 inches, between 0.05 inches to 0.5 inches, between 0.05 inches to 0.6 inches, between 0.1 inches to 0.4 inches, between 0.1 inches to 0.5 inches, or between 0.1 inches to 0.6 inches. In many embodiments, the groove width W can be between 0.05 inches and 1.25 inches, between 0.05 inches and 1.0 inches, between 0.05 inches and 0.75 inches, between 0.25 inches and 1.25 inches, between 0.25 inches and 1.0 inches, or between 0.25 inches and 0.75 inches.

[0078] In many embodiments, the adjustable weighting system can receive two or more weights. In many embodiments, the adjustable weighting system can include two, three, four, or five weights. For example, in an adjustable weighting system embodiment having two weights (e.g., FIGS. 4-10, 13-21), one configuration of the adjustable weighting system can include a first weight positioned toward the back end 42 and toe 18 of the club head and a second weight positioned toward the back end 42 and heel 22 of the club head when the weight-containing member is positioned within the channel of the club head. In these embodiments, the distance between the first and second weights can be greater than 0.8 inches, greater than 0.9 inches, greater than 1.0 inches, greater than 1.1 inches, greater than 1.2 inches, or greater than 1.3 inches. For example, the distance between the first and second weights can be between 0.8 and 1.3 inches, between 0.9 and 1.3 inches, between 1.0 and 1.3 inches, or between 1.1 and 1.3 inches.

[0079] As a further example, in an embodiment of an adjustable weighting system having three weights (FIGS. 23-26), one configuration of the adjustable weighting system may include a first weight that may be positioned toward the back end 42 and toe 18 of the club head, a second weight that may be positioned toward the back end 42 and heel 22 of the club head, and a third weight that may be positioned toward the back end 42 of the club head and / or substantially aligned with or adjacent to the head depth axis 10122 and / or between the first and second weights. In these embodiments, the distance between adjacent weights (e.g., the distance between the first and third weights or the distance between the second and third weights) may be greater than 0.5 inches, greater than 0.6 inches, greater than 0.7 inches, greater than 0.8 inches, greater than 0.9 inches, or greater than 1.0 inch. For example, the distance between adjacent weights (e.g., the distance between the first and third weights, or the distance between the second and third weights) can be between 0.5 and 1.0 inches, between 0.6 and 1.0 inches, between 0.7 and 1.0 inches, or between 0.8 and 1.0 inches.

[0080] In other embodiments, the adjustable weighting system can include any number of weights greater than one, such as two, three, four, five, six, seven, eight, or more weights. In embodiments where the adjustable weighting system includes four weights, the distance between adjacent weights can be greater than 0.4 inches, greater than 0.5 inches, greater than 0.6 inches, greater than 0.7 inches, greater than 0.8 inches, or greater than 0.9 inches. For example, in embodiments where four weights are included, the distance between adjacent weights can be between 0.4 and 0.9 inches, between 0.5 and 0.9 inches, between 0.6 and 0.9 inches, or between 0.7 and 0.9 inches. In embodiments where the adjustable weighting system includes five weights, the distance between adjacent weights can be greater than 0.3 inches, greater than 0.4 inches, greater than 0.5 inches, greater than 0.6 inches, greater than 0.7 inches, or greater than 0.8 inches. For example, in an embodiment including five weights, the distance between adjacent weights can be between 0.3 and 0.8 inches, between 0.4 and 0.8 inches, between 0.5 and 0.8 inches, or between 0.6 and 0.8 inches.

[0081] One or more weights in the adjustable weighting system are positioned at a height H measured from the crown to the sole. w , width W measured from heel to toe w , and the depth D measured in the anterior-posterior direction w In many embodiments, the height H w may be less than 0.5 inches, less than 0.4 inches, less than 0.3 inches, less than 0.25 inches, less than 0.2 inches, less than 0.18 inches, less than 0.16 inches, less than 0.14 inches, less than 0.12 mm, or less than 0.10 inches. For example, in some embodiments, the height H w can be between 0.1 inches and 0.5 inches. In many embodiments, the width W w may be less than 1.3 inches, less than 1.2 inches, less than 1.1 inches, less than 1.0 inches, less than 0.9 inches, less than 0.8 inches, less than 0.7 inches, less than 0.6 inches, less than 0.5 inches, or less than 0.4 inches. For example, the width W wcan be between 0.25 inches and 1.25 inches. In many embodiments, the depth D w may be less than 1.0 inch, less than 0.9 inch, less than 0.8 inch, less than 0.7 inch, less than 0.6 inch, less than 0.5 inch, less than 0.4 inch, less than 0.3 inch, less than 0.2 inch, or less than 0.1 inch. For example, depth D w can be between 0.25 inches and 1.25 inches.

[0082] In many embodiments, the first weight is heavier than one or more of the remaining weights (e.g., the second weight, the third weight, the fourth weight, and / or the fifth weight). The first weight can include a mass of greater than 10 grams, greater than 12 grams, greater than 14 grams, greater than 16 grams, greater than 18 grams, greater than 20 grams, greater than 22 grams, greater than 24 grams, greater than 26 grams, greater than 28 grams, or greater than 30 grams. For example, the first weight can include a mass between 6 and 20 grams, between 6 and 50 grams, between 10 and 50 grams, between 15 and 50 grams, between 20 and 50 grams, between 15 and 40 grams, between 20 and 40 grams, between 25 and 35 grams, between 10 and 25 grams, between 15 and 25 grams, between 10 and 20 grams, or between 15 and 20 grams. The remaining weights (e.g., the second weight, the third weight, the fourth weight, and / or the fifth weight) can have a mass of less than 20 grams, less than 18 grams, less than 16 grams, less than 14 grams, less than 12 grams, less than 10 grams, less than 8 grams, less than 6 grams, less than 4 grams, or less than 2 grams. For example, the remaining weights can have a mass between 0.10 and 15 grams, between 0.25 and 10 grams, between 0.25 and 10 grams, between 0.5 and 7 grams, or between 1 and 10 grams. Furthermore, the remaining weights can have the same or different masses from one another.

[0083] The members and each weight can be formed from one material, two or more materials, or multiple materials. For example, the members can be formed from a metal (e.g., aluminum, steel, titanium), a metal alloy (e.g., aluminum alloy, titanium alloy, steel alloy), a plastic or plastic group, a plastic including powdered metal, a composite material, a composite material including powdered metal, or other suitable material. As a further example, one or more weights can be formed from a high-density material (e.g., tungsten), a low-density material (e.g., polyurethane or other suitable plastic), a combination of two or more high-density materials, a combination of two or more low-density materials, or a combination of a high-density material and a low-density material. As a further example, one or more weights can be formed from a metal, a metal alloy, a plastic or plastic group, a plastic including powdered metal, a composite material, a composite material including powdered metal, or any other suitable material.

[0084] The first weight can be positioned at any mounting location on the member. In embodiments with an adjustable weighting system including two mounting locations, the first weight can be positioned at the first mounting location such that the first weight is positioned near the toe 18 when the member is coupled to the club head. Additionally, the first weight can be positioned at the second mounting location such that the first weight is positioned near the heel 22 when the member is coupled to the club head. In these embodiments, moving the first weight from the first mounting location to the second mounting location moves the head center of gravity toward the heel 22, and moving the first weight from the second mounting location to the first mounting location moves the head center of gravity toward the toe 18. In these embodiments, the remaining mounting locations can include second weights that are lighter than the first weight.

[0085] In embodiments having an adjustable weighting system with three weights, a first weight can be located at a third mounting location centrally located on the member, thereby producing a neutral head CG position. The first weight can be moved from the third mounting location to the first mounting location, which is positioned toward the toe 18, thereby moving the head CG 58 a distance toward the toe 18. The first weight can be moved from the third mounting location to the second mounting location, which is positioned toward the heel 22, thereby moving the head CG 58 a distance toward the heel 22. In these embodiments, the remaining positions can be devoid of weights or can include additional weights that are lighter than the first weight.

[0086] Moving the first weight from its mounting position closest to the toe 18 to its mounting position closest to the heel 22 may shift the head CG 58 in a direction extending parallel to the x-axis 62 by a distance of at least 0.10 inches, at least 0.15 inches, at least 0.20 inches, at least 0.25 inches, or at least 0.30 inches. For example, in many embodiments, moving the first weight from its mounting position closest to the toe 18 to its mounting position closest to the heel 22 may move the head CG 58 between 0.05 and 0.30 inches, between 0.15 and 0.30 inches, between 0.20 and 0.30 inches, between 0.15 and 0.25 inches, or between 0.20 and 0.25 inches.

[0087] In these or other embodiments, shifting the head CG 58 toward the toe 18 can produce a fade or correct a hook. Conversely, moving the head CG 58 toward the heel 22 can produce a draw or correct a slice. In the adjustable weighting system embodiment described below, shifting the head CG 58 between 0.10 inches and 0.30 inches in a direction extending parallel to the x-axis 62 can result in a change in shot curvature of 4.6 to 13.9 yards.

[0088] Other embodiments may include one or more mounting locations on a member positioned toward the striking face 34 of the club head (e.g., FIGS. 22 and 29). In these embodiments, moving one or more weights from a mounting location near the striking face 34 to a mounting location near the rear end 42 of the club head may increase the club head moment of inertia (MOI) about the head CG. CG , increasing the dynamic loft or launch angle of the golf ball. Conversely, moving one or more weights from a mounting location near the rear end 42 to a mounting location near the striking face 34 of the club head can decrease the dynamic loft or launch angle of the golf ball.

[0089] Club head embodiments having adjustable weighting systems described herein maximize head CG depth 10130 and club head moment of inertia (or minimize the reduction in head CG depth 10130 and club head moment of inertia typically associated with the introduction of adjustability compared to non-adjustable club heads). In many embodiments, maximum head CG depth and club head moment of inertia are achieved with a first adjustable weight having a relatively low mass, thereby enhancing design efficiencies for maintaining club head performance characteristics (e.g., forgiveness, low backspin, high launch) while allowing user adjustability of ball spin and / or trajectory.

[0090] Referring to Relation 3 below, a club head with an adjustable weighting system includes a depth-to-mass ratio that is the depth 10130 of the head CG relative to the mass Wm of the first weight. In many embodiments, the depth-to-mass ratio of the club head can be greater than 0.060 in / gram, greater than 0.070 in / gram, greater than 0.080 in / gram, greater than 0.090 in / gram, greater than 0.100 in / gram, greater than 0.110 in / gram, greater than 0.120 in / gram, or greater than 0.130 in / gram. In some embodiments, the depth-to-mass ratio can be between 0.070 and 0.13 inches / gram, between 0.080 and 0.13 inches / gram, between 0.090 and 0.13 inches / gram, between 0.070 and 0.11 inches / gram, between 0.080 and 0.11 inches / gram, or between 0.090 and 0.11 inches / gram. In these embodiments, the mass of the first weight can be less than 25 grams, less than 24 grams, less than 23 grams, less than 22 grams, less than 20 grams, less than 19 grams, less than 18 grams, less than 17 grams, less than 16 grams, or less than 15 grams. In some embodiments, the mass of the first weight can be between 6 and 20 grams, between 10 and 20 grams, between 12 and 20 grams, between 14 and 20 grams, between 16 and 20 grams, between 10 and 18 grams, between 12 and 18 grams, or between 14 and 18 grams.

number

[0091] Referring to Relation 4 below, a club head having an adjustable weighting system has a resultant moment of inertia (MOI) about the head CG relative to the mass (Wm) of the first weight. CG In many embodiments, the first inertia-to-mass ratio can be defined as 400 cm 2 Super, 410cm 2 Super, 420cm 2 Super, 430cm 2 Super, 440cm 2 Super, 450cm 2 Super, 460cm2 Super, 470cm 2 Super, 480cm 2 Super, 490cm 2 Super, 500cm 2 Super, 510cm 2 Super, 520cm 2 Super, 530cm 2 Super, 540cm 2 Super, 550cm 2 Super, 560cm 2 Super, 570cm 2 Super, 580cm 2 Super, 590cm 2 Super, 600cm 2 Super, 610cm 2 Super, 620cm 2 Super, 630cm 2 Super, 640cm 2 Super, 650cm 2 Super, 660cm 2 Super, 670cm 2 Super, 680cm 2 Super, 690cm 2 Over or 700cm 2 In some embodiments, the first inertial mass ratio is between 400 and 700 cm 2 Between 510 and 750 cm 2 Between 520 and 750 cm 2 Between 530 and 750 cm 2 Between 540 and 750 cm 2 Between 550 and 750 cm 2 Between 500 and 700 cm 2 Between 510 and 700 cm 2 Between 520 and 700 cm 2 Between 530 and 700 cm 2 Between 540 and 700 cm 2 Between 550 and 700 cm 2In these embodiments, the mass of the first weight can be less than 25 grams, less than 24 grams, less than 23 grams, less than 22 grams, less than 20 grams, less than 19 grams, less than 18 grams, less than 17 grams, less than 16 grams, or less than 15 grams. In some embodiments, the mass of the first weight can be between 6 and 20 grams, between 10 and 20 grams, between 12 and 20 grams, between 14 and 20 grams, between 16 and 20 grams, between 10 and 18 grams, between 12 and 18 grams, or between 14 and 18 grams.

number

[0092] Embodiments of club heads having adjustable weighting systems described herein are capable of maximizing the total shift in head CG by adjusting one or more weights for multiple mounting locations on the members. In many embodiments, the maximum total shift in head CG is achieved by a first adjustable weight having a relatively low mass, thereby enhancing design efficiencies for maintaining club head performance characteristics (e.g., forgiveness, low backspin, high launch) while allowing user adjustability of ball spin and / or trajectory.

[0093] Referring to Relation 5 below, a club head having an adjustable weighting system includes a head CG-to-mass ratio, defined as the total or maximum head CG shift relative to the mass of the first weight. In many embodiments, the head CG-to-mass ratio can be greater than 0.008 in / gram, greater than 0.009 in / gram, greater than 0.010 in / gram, greater than 0.011 in / gram, greater than 0.012 in / gram, greater than 0.013 in / gram, greater than 0.014 in / gram, or greater than 0.015 in / gram. In some embodiments, the head CG-to-mass ratio can be between 0.008 and 0.015 in / gram, between 0.009 and 0.015 in / gram, between 0.010 and 0.015 in / gram, between 0.008 and 0.013 in / gram, between 0.009 and 0.013 in / gram, or between 0.010 and 0.013 in / gram. In these embodiments, the mass of the first weight can be less than 25 grams, less than 24 grams, less than 23 grams, less than 22 grams, less than 20 grams, less than 19 grams, less than 18 grams, less than 17 grams, less than 16 grams, or less than 15 grams. In some embodiments, the mass of the first weight can be between 6 and 20 grams, between 10 and 20 grams, between 12 and 20 grams, between 14 and 20 grams, between 16 and 20 grams, between 10 and 18 grams, between 12 and 18 grams, or between 14 and 18 grams.

number

[0094] One or more weights in the adjustable weighting system are weights CGW CG In many embodiments, the weight CGW CG is located near the rear perimeter or skirt 74 of the club head and at the greatest distance from the geometric center 140 of the striking face 34 when viewed from the top or bottom. CGPositioning the weight CGW can increase the perimeter weight and moment of inertia of the club head, thereby improving the club head's tolerance for off-center hits compared to closer-located adjustable weights. CG Positioning the adjustable weight closer to the rear perimeter 74 or further away from the striking face 34 allows for a lower and more rearward head CG position, which increases the club head moment of inertia and reduces backspin compared to adjustable weights located closer to the striking face.

[0095] In these embodiments, the weights CGW of one or more weights CG is located a distance D1 from the rear perimeter 74 of the club head. Distance D1 may be measured as the smallest projected distance from the weights CG to the perimeter 74 when the club head is viewed from the bottom, perpendicular to the x'z' plane 10126. Additionally, distance D1 may be measured in a direction parallel to the x'z' plane 10126. For example, weights CGW of one or more weights may be CG can be positioned within 0.7 inches, 0.65 inches, 0.6 inches, 0.55 inches, 0.5 inches, 0.45 inches, 0.4 inches, 0.35 inches, 0.3 inches, 0.25 inches, or 0.2 inches of the rear perimeter 74 of the club head. In a further example, weight CGW of one or more weights CG can be located between 0.10 and 0.50 inches, between 0.25 and 0.5 inches, between 0.10 and 0.25 inches, between 0.10 and 0.35 inches, or between 0.10 and 0.45 inches from the rear perimeter 74 of the club head.

[0096] Furthermore, in these embodiments, the weights CGW of one or more weights CG is located a distance D2 from the geometric center 140 of the striking face 34 of the club head. For example, one or more weights CGW CGcan be positioned at a distance D2 greater than 2.0 inches, greater than 2.25 inches, greater than 2.5 inches, greater than 2.75 inches, greater than 3.0 inches, greater than 3.25 inches, greater than 3.5 inches, or greater than 3.75 inches from the geometric center of the striking face. CG The weight CGW can be positioned at a distance D2 between 3.0 and 3.75 inches, between 3.0 and 4.0 inches, between 3.2 and 4.0 inches, or between 3.5 and 4.0 inches from the geometric center 140 of the striking face 34. CG By moving the weight CGW away from the geometric center 140 of the striking face 34, the perimeter weight and moment of inertia of the club head can be increased, which makes the club head more forgiving of off-center hits compared to adjustable weights located closer to the striking face. CG By moving the adjustable weight further away, the head CG position can be lower and further back, which increases the club head's moment of inertia and reduces backspin compared to adjustable weights located closer to the striking face.

[0097] In many embodiments, the weight CGW CG protrudes from the outer contour or outer surface 10146 of the sole 30, is positioned flush with the outer contour 10146 of the sole 30, and / or is positioned minimally inward relative to the outer contour 10146 of the sole 30. CG By minimally fitting, flush with, or positioning outwardly relative to the outer contour 10146 of the sole 30, less structural support material is required to accommodate the weight or weights, thereby maintaining a low profile, adjustable weighting system. CGBy minimally fitting, flush with, or externally locating the weight CGW relative to the exterior contour 10146 of the sole 30, the perimeter weight and moment of inertia of the club head can be increased, which makes the club head more forgiving of eccentric hits compared to internal adjustable weights or adjustable weights embedded in the club head. CG By minimally fitting, flush with, or positioned outwardly relative to the exterior contour 10146 of the sole 30, the head CG can be positioned lower and more rearward, thereby increasing the club head moment of inertia and reducing backspin compared to internal adjustable weights or adjustable weights embedded in the club head.

[0098] In these embodiments, the weights CGW of one or more weights CG is positioned a distance D3 from the outer contour 10146 of the sole 30, the distance D3 being measured in a direction parallel to the y-axis 66. For example, the weight CGW of one or more weights CG may protrude from the outer contour 10146 of the sole by up to 0.10 inches, up to 0.15 inches, up to 0.20 inches, up to 0.25 inches, or up to 0.30 inches. In some embodiments, the weight CGW of one or more weights CG may protrude between 0.10 and 0.25 inches, between 0.15 and 0.25 inches, between 0.15 and 0.25 inches, or between 0.15 and 0.30 inches from the outer contour 10146 of the sole 30. In a further example, the weight CGW CG can be recessed relative to the outer contour 10146 of the sole 30 by a distance D3 of less than 0.15 inches, less than 0.14 inches, less than 0.13 inches, less than 0.125 inches, less than 0.12 inches, less than 0.11 inches, less than 0.10 inches, less than 0.09 inches, less than 0.08 inches, or less than 0.07 inches. In some embodiments, the weight CGW of one or more weights CGis fitted relative to the outer contour 10148 of the sole 30 by a distance D3 between 0.05 and 0.15 inches, between 0.05 and 0.125 inches, between 0.05 and 0.15 inches, between 0.10 and 0.15 inches, between 0.10 and 0.125 inches, or between 0.10 and 0.15 inches.

[0099] B. Adjustable Weighting System Embodiments 4A and 4B, one embodiment of an adjustable weighting system 500 is shown. The adjustable weighting system 500 includes a single port, channel, or grooved track 504 located in the sole 30 of the club head 10. In the illustrated embodiment, the channel 504 is located proximal or closer to the rear 42 of the club head 10 than the face plate 34. However, in other embodiments, the channel 504 can be located in any suitable location on the sole 30 of the club head 10 relative to the face plate 34. Furthermore, the channel 504 is shown as having an arcuate or curved shape. However, in other embodiments, the channel 504 can have any suitable shape (e.g., linear, geometric, etc.). As shown in FIG. 4A, the channel 504 includes a width W and a height (or depth) H. The width W is defined as the distance between opposing sides of the channel 504. The height H is defined as the distance between the sole 30 and the bottom surface of the channel 504. In the illustrated embodiment, the width W and height H are constant along the channel 504 (i.e., are the same at different locations along the channel 504). In other embodiments, the bottom surface of the channel 504 can be sloped or stepped such that the height H varies or changes along the channel 504. In yet other embodiments, the distance between opposing sides of the channel 504 can vary (e.g., increase or decrease) so as to have a variable width W along the channel 504.

[0100] The adjustable weighting system 500 also includes a member 508 (or insert 708) configured to be received by the channel 504. The member 508 has a body width W (shown in FIG. 4B ).B and the body height (or body depth) H B The body 512 has a body width W B preferably corresponds to the width W of the channel 504 so as not to exceed the width W of the channel 504. Similarly, the height H of the body B Preferably, the body width W corresponds to the height H of the channel 504, but does not exceed the height H of the channel 504, thereby allowing the member 508 to be received by the channel 504. In other embodiments, the body width W B may be smaller than the width W of the channel 504 and / or the body height H B It should be understood that the height H of the body may be less than the height H of the channel 504. B may be greater than the height H of the channel 504, thereby allowing the member 508 to extend from the channel 504. The body 512 defines an opening 514 that extends completely through the body 512. The opening 514 is configured to align with a channel opening 78 (shown in FIG. 4B ) disposed within the channel 504. When aligned, the opening 514 and the channel opening 78 receive a fastener 510 configured to couple the member 508 to the channel 504. In the illustrated embodiment, the fastener 510 may be a threaded fastener (e.g., a screw, a bolt, etc.) or any suitable device for selectively securing the member 508 to the channel 504. Furthermore, in many embodiments, the fastener 510 may have a density that is equal to or less than the density of the club head body 10, such that the fastener 510 does not significantly contribute to the density of the club head body 10.

[0101] Referring to FIG. 4B , the body 512 includes a first end 516 and a second end 520. The first end 516 is disposed at one end of the body 512, and the second end 520 is disposed at the other end of the body 512 opposite the first end 516. Each end 516, 520 includes a respective attachment location 524, 528 configured to engage a respective weight 532, 536 in various configurations. In the illustrated embodiment, the first attachment location 524 located at the first end 516 is shown as a first protrusion 524. The first protrusion 524 includes first and second arms, each having a hook shape and defining a void or channel 525. The second attachment location 528 located at the second end 520 is shown as a second protrusion 528. The second protrusion 528 includes first and second arms, each having a hook shape and defining a void or channel 529. Each weight 532, 536 defines a void or channel 540 that corresponds in shape to the first and second protrusions 524, 528 and is configured to engage with, and more specifically receive, one of the protrusions 524, 528. In the illustrated embodiment, the weights 532, 536 further include a post 542 that can be received within the voids 525, 529 of the protrusions 524, 528 to temporarily secure the weights 532, 536 to the member 508. In these embodiments, the weights 532, 536 are configured to couple to the member 508 via a snap-fit or press-fit mechanism. In other embodiments, the weights 532, 536 can be coupled to the member using any other suitable mechanism, as described further in the following embodiments.

[0102] Each weight 532, 536 has a round geometric shape. In other embodiments, the weights 532, 536 can have a different shape, such as a square, circle, rectangle, triangle, or any suitable polygonal shape, or a shape having at least one curved surface. Additionally, the weights can have a shape suitable for adjusting the face angle at address, which is described in more detail below in connection with the face angle adjustment system 1200.

[0103] The first and second weights 532, 536 can be positioned or repositioned at any mounting location 524, 528 to adjust the weight distribution and center of gravity of the club head, as described below, to affect the trajectory and / or spin of the ball.

[0104] 5-6, an embodiment of an adjustable weighting system 700 is shown. The adjustable weighting system 700 has similar components to the adjustable weighting system 500, with similar names and / or numbers identifying the similar components. The adjustable weighting system 700 includes a single port, channel, or grooved track 704 disposed in the sole 30 of the club head 10. In the illustrated embodiment, the channel 704 is disposed proximal to or closer to the rear 42 of the club head 10 than the face plate 34. However, in other embodiments, the channel 704 may be disposed in any suitable location on the sole 30 of the club head 10. Furthermore, the channel 704 is shown as having an arcuate or curved shape. However, in other embodiments, the channel 704 may have any suitable shape (e.g., linear, geometric, etc.). As shown in FIG. 6, the channel 704 includes a width W and a height (or depth) H. The width W is defined as the distance between opposing sides of the channel 704. Height H is defined as the distance between sole 30 and the bottom of channel 704. In the illustrated embodiment, width W and height H are constant along channel 704 (i.e., are the same at different locations along channel 704). In other embodiments, the bottom of channel 704 can be sloped or stepped such that height H varies or changes along channel 704. In yet other embodiments, the distance between opposing sides of channel 704 can vary (e.g., increase or decrease) to have a width W that varies along channel 704.

[0105] 5-6, adjustable weighting system 700 also includes a member 708 (or insert 708) configured to be received by channel 704. Member 708 has a body width W (shown in FIG. 5). B and the body height (or body depth) H B The body 712 has a body width W B preferably corresponds to the width W of the channel 704 so as not to exceed the width W of the channel 704. Similarly, the height H of the body B Preferably, the body width W corresponds to the height H of the channel 704, but does not exceed the height H of the channel 704, thereby allowing the member 708 to be received by the channel 704. In other embodiments, the body width W B may be smaller than the width W of the channel 704 and / or the body height H B It should be understood that the height H of the body may be less than the height H of the channel 704. B may be greater than the height H of the channel 704, thereby allowing the member 708 to extend from the channel 704. The body 712 defines an opening 714 extending completely through the body 712. The opening 714 is configured to align with a channel opening 78 (shown in FIG. 11 ) disposed within the channel 704. When aligned, the opening 714 and the channel opening 78 (shown in FIG. 11 ) receive a fastener (not shown in FIGS. 5-6 , but shown as 810, 910, and 1010 in FIGS. 7 , 9 , and 11 , respectively) configured to couple the member 708 to the channel 704. In the illustrated embodiment, the fastener may be a threaded fastener (e.g., a screw, a bolt, etc.) or any suitable device for selectively fastening the member 708 to the channel 704. Furthermore, in many embodiments, the fastener 710 may include a density that is equal to or less than the density of the club head body, such that the fastener 710 does not significantly contribute to the weight distribution of the club head 10.

[0106] As shown in FIG. 6 , the body 712 includes a first end 716 and a second end 720. The first end 716 is located at one end of the body 712, and the second end 720 is located at the other end of the body 712 opposite the first end 716. Each end 716, 720 includes a respective attachment location 724, 728 configured to engage a respective weight 732, 736 in various configurations. In the illustrated embodiment, the first attachment location 724 located at the first end 716 is shown as a first protrusion 724 (or first post 724). The second attachment location 728 located at the second end 720 is shown as a second protrusion 728 (or second post 728). Each weight 732, 736 can define an opening 740 (or hole 740) configured to engage, and more specifically, receive, one of the protrusions 724, 728. Each protrusion 724, 728 can be threaded to form a threaded connection with corresponding threads disposed within each opening 740. In other embodiments, each protrusion 724, 728 can have a smooth (or relatively smooth) surface such that each opening 740 slidably receives one of the protrusions 724, 728 to slidably mount one of the mounting locations 724, 728. The openings 740 are shown extending partially into each weight 732, 736. In other embodiments, the openings 740 can extend completely through one or more of the weights 732, 736. Although each weight 732, 736 is shown as being removably coupled to body 712, in other embodiments, each weight 732, 736 can be attached to body 712 such that the weight 732, 736 cannot be intentionally removed from body 712 by a user. For example, weights 732, 736 can be further attached to body 712 by adhesive or any other permanent or semi-permanent attachment material.

[0107] Each weight 732, 736 has a geometric or polygonal shape. For example, in the embodiment shown in FIG. 6, each weight 732, 736 has a triangular cross-sectional shape. The triangular cross-sectional shape of each weight 732, 736 can have sides of different lengths (e.g., isosceles, scalene, acute, right, obtuse, etc.). In other embodiments, the triangular cross-sectional shape of each weight 732, 736 can be equilateral (i.e., each side of the triangle has the same length). In still other embodiments, weights 732, 736 can have a conical pyramidal (or triangular truncated pyramidal) shape or can have a different cross-sectional shape. For example, in the embodiment shown in FIGS. 7-10, described below, each weight 832, 836, 932, 936 has a generally rectangular shape. In yet other embodiments, each weight corresponds to the cross-sectional shape of body 712, is larger than the cross-sectional shape of body 712, is smaller than the cross-sectional shape of body 712, corresponds to the shape of channel 704 (i.e., such that each weight is received by channel 704), and has a dimension smaller than the width W and / or height H of channel 704 or a dimension larger than the height H of channel 704 (e.g., such that the weight extends outside channel 704 and protrudes from sole 30). In still other embodiments, one or more weights may be square, round, rectangular, triangular, or any suitable polygonal shape. Additionally, the weights may have a shape suitable for adjusting the face angle at address, which will be described in further detail below in connection with face angle adjustment system 1200.

[0108] The first and second weights 732, 736 may be positioned or repositioned at any mounting location 724, 728 to adjust the weight distribution and center of gravity of the club head to affect ball trajectory and / or spin, as described below.

[0109] 7-8 illustrate another embodiment of an adjustable weighting system 800. The adjustable weighting system 800 has similar components to the adjustable weighting system 700, and similar names and / or numbers identify similar components. As shown in FIG. 7, the adjustable weighting system 800 includes a channel 804 and a member 808. The channel 804 is substantially identical to the channel 704 except for its shape. More specifically, the channel 804 has a "U-shape" such that it has different widths at different locations. For example, a first width W1 at the end of the channel 804 is greater than a second width W2 at the center (or midpoint) of the channel 804. The member 808 also has a "U-shape" corresponding to the shape of the channel 804 so that it can be received by the channel 804. The member 808 is coupled to the channel 804 by a fastener 810. More specifically, opening 814 aligns with channel opening 78 (shown in FIG. 11 ), and opening 814 and channel opening 78 (shown in FIG. 11 ) receive fastener 810 to attach member 808 to channel 804. Furthermore, in many embodiments, fastener 810 can include a density that is equal to or less than the density of the club head body so as not to significantly contribute to the weight distribution of club head 10.

[0110] Member 808 also carries a first weight 832 and a second weight 836 in various configurations. Weights 832, 836 are substantially similar to weights 732, 736 except for their shape (e.g., weights 832, 836 are attached to member 808 by protrusions 828, etc.). As shown in FIG. 7, weights 832, 836 have a weight width W W is the weight height W H It has a generally rectangular shape, being larger (or longer) than the

[0111] 9-10 illustrate another embodiment of an adjustable weighting system 900. The adjustable weighting system 900 has similar components to the adjustable weighting systems 700 and 800, and similar names and / or numbers identify similar components. As shown in FIG. 9, the adjustable weighting system 900 includes a channel 904 and a member 908. The channel 904 is substantially similar to the channels 704 and 804, except for its shape. More specifically, the channel 904 has an "M-shape" such that the channel 904 has different widths at different locations. The member 908 also has a corresponding "M-shape" that is received by the channel 904. The member 908 couples to the groove 904 with a fastener 910. More specifically, the opening 914 (shown in FIG. 10) aligns with the channel opening 78 (shown in FIG. 11), and the opening 914 and the channel opening 78 (shown in FIG. 11) receive the fastener 910 to attach the member 908 to the channel 904. Additionally, in many embodiments, the fastener 910 may include a density that is equal to or less than the density of the club head body so as not to significantly contribute to the weight distribution of the club head 10 .

[0112] Member 908 also carries a first weight 932 and a second weight 936 in various configurations. Weights 932, 936 are substantially similar to weights 732, 736, 832, 836, including having the same rectangular shape as weights 832, 836.

[0113] FIG. 11 illustrates another embodiment of an adjustable weighting system 1000. The adjustable weighting system 1000 has similar components to the adjustable weighting systems 700, 800, and 900, with similar names and / or numbers identifying similar components. As shown in FIG. 11 , the adjustable weighting system 1000 includes a channel 1004 and a member 1008. The channel 1004 is substantially similar to the channel 704. The first weight 1032 is substantially similar to the first weight 732, except for the shape of the first weight 1032. In particular, the first weight 1032 includes a protruding tab 1044. The protruding tab 1044 serves as an engagement surface for aligning and coupling to the member 1008. More specifically, the protruding tab includes an opening 1048 extending therethrough. The member 1008 is positioned over the protruding tab 1044 so that the member opening 1014, which is substantially similar to opening 714, aligns with the protruding tab opening 1048. The member 1018 and weight 1032 are then placed into the channel 1004 so that the openings 1014, 1048 align with the channel opening 78. Once the openings 1014, 1048, 78 are aligned, they receive the fastener 1010, which is substantially similar to fasteners 810, 910. In other embodiments, the protruding tab 1044 can extend above the member 1008, or the protruding tab 1044 can be formed with the member 1008 (rather than the weight 1032). In still other embodiments, the protruding tab 1044 can extend below a portion of the member 1008, including the entire member 1008, or can extend beyond the member 1008.

[0114] FIG. 12 illustrates another embodiment of an adjustable weighting system 1100. The adjustable weighting system 1100 has similar components to the adjustable weighting systems 700, 800, 900, and 1000, with similar names and / or numbers identifying similar components. As shown in FIG. 12, the adjustable weighting system 1100 includes a channel 1104 and a member 1108. The channel 1004 is substantially similar to the channel 704, and the member 1108 is substantially similar to the member 708. The difference is that the body 1112 of the member 1108 is configured to engage multiple weights, shown as four different weights. Similar to the adjustable weighting system 700, a first weight 1132 is attached to a first mounting location at a first end 1116 of the body 1112, and a second weight 1136 is attached to a second mounting location at a second end 1120 of the body 1112. However, in this embodiment of adjustable weighting system 1100, a third weight 1152 is attached to a first side 1156 of the body 1112 at a third mounting location, and a fourth weight 1160 is attached to an opposite second side 1164 of the body 1112 at a fourth mounting location. Each weight 1132, 1136, 1152, 1160 may be substantially identical to weights 732, 736 and may be attached to the body 1112 in a similar manner as described above. Additionally, the first, second, third, and fourth weights 1132, 1136, 1152, 1160 may be positioned at or repositioned between any of the mounting locations on the member to adjust the weight distribution and club head center of gravity to affect ball trajectory and / or spin, as described below.

[0115] FIG. 13 illustrates one embodiment of a face angle adjustment system 1200. The illustrated system 1200 is structurally similar to adjustable weighting system 700, with like names and / or like numbers identifying like components. The difference is that in this embodiment, each end member 1232, 1236 is not weighted, but instead has a geometry (or shape) suitable for enabling resting face angle adjustment. While this embodiment is described separately from adjustable weighting systems 500, 700, 800, 900, 1000, and 1100 disclosed herein, it should be understood that the features of face angle adjustment system 1200 can be incorporated into any of the embodiments of adjustable weighting systems 500, 700, 800, 900, 1000, and 1100 to provide a system that allows for both adjustable weighting and resting face angle adjustment. Thus, in other embodiments, each end member 1232, 1236 may be a weight (e.g., weights 732, 736, 832, 836, 932, 936, 1132, 1136, 1152, 1160, etc.) that also includes features that allow for static face angle adjustment as disclosed herein.

[0116] As shown in FIG. 13 , the face angle adjustment system 1200 includes a channel 1204 disposed in the sole 30 and a member 1208 having a body 1212. The body 1212 defines an opening 1214 configured to receive a fastener (not shown, shown as 810, 910, and 1010 in FIGS. 7, 9, and 11, respectively) to couple the member 1208 to the channel 1204. The body 1212 includes a first end 1216 and a second end 1220, the first end 1216 and the second end 1220 being disposed at opposite ends of the body 1212. A first attachment location 1224 (or a first protrusion 1224 or a first post 1224) is disposed at the first end 1216, and a second attachment location 1228 (or a second protrusion 1228 or a second post 1228) is disposed at the second end 1220. The first end member 1232 is removably coupled to the first attachment location 1224, and the second end member 1236 is removably coupled to the second attachment location 1228. Each end member 1232, 1236 has multiple side surfaces 1268a, 1268b. At least one side surface 1268a can have a length greater than the length of the second side surface 1268b (or at least one side surface 1268a can have a length less than the length of the second side surface 1268b). Thus, when one or both of the end members 1232, 1236 are rotated relative to the body 1212 (or relative to their respective attachment locations 1224, 1228), one of the multiple side surfaces 1268a, 1268b can be oriented to extend from the channel 1204, to be flush with the sole 30 (e.g., not extend or protrude from the channel 1204), and / or to be recessed within the channel 1204. It should be appreciated that each end member 1232, 1236 may include an opening 1240 that is substantially similar to opening 740. Thus, end members 1232, 1236 may be attached to body 1212 in the same manner as weights 732, 736 are attached to body 712, as described above.

[0117] In operation of the adjustable weighting system 500, 700, 800, 900, 1000, 1100, a user can remove a member 508, 708, 808, 908, 1008, 1108 from the associated channel 504, 704, 804, 908, 1004, 1104 by unscrewing the fastener 510, 810, 910, 1010. The user can then remove and replace one or more of the weights 532, 536, 732, 736, 832, 836, 932, 936, 1032, 1036, 1132, 1136, 1152, 1160 and reattach the members 508, 708, 808, 908, 1008, 1108 to the channels 504, 704, 804, 908, 1004, 1104.

[0118] In embodiments without removable weights, a user can remove a member 508, 708, 808, 908, 1008, 1108 from the associated channel 504, 704, 804, 908, 1004, 1104 and then attach a second member configuration having a different weight (i.e., one or more of weights 532, 536, 732, 736, 832, 836, 932, 936, 1032, 1036, 1132, 1136, 1152, 1160 have a different mass than the member that was removed).

[0119] Alternatively or additionally, member 508, 708, 808, 908, 1008, 1108 can be removed, reoriented, and reinstalled in channel 507, 704, 804, 908, 1004, 1104. For example, member 508, 708, 808, 908, 1008, 1108 can be removed from a first orientation in which first weight 532, 732, 832, 932, 1032, 1132 is positioned closer to toe end 18 than to heel end, reoriented (e.g., rotated 180 degrees, flipped over, etc.), and reattached in a second orientation in which first weight 532, 732, 832, 932, 1032, 1132 is positioned closer to heel end 22 than toe end 18.

[0120] The center of gravity 58 can be adjusted (or moved) by changing the weight of one or more of the weights 532, 536, 732, 736, 832, 836, 932, 936, 1032, 1036, 1132, 1136, 1152, 1160 and / or by reorienting the members 508, 708, 808, 908, 1008, 1108. For example, the distance the center of gravity 58 can be adjusted (or moved) can be within a range of 0.01 inch to 0.50 inch, resulting in a change in ball trajectory of 0.46 yards to 23 yards. In other embodiments, the club head center of gravity 58 can be adjusted (or moved) within a range of 0.050 inch to 0.200 inch, resulting in a change in ball trajectory of 2.3 yards to 9.2 yards.

[0121] In operation of face angle adjustment system 1200, a user can remove member 1208 from channel 1204 by unscrewing fasteners 510, 810, 910, 1010. The user can then rotate, remove and replace, or otherwise reorient one or both of end members 1232, 1236, then reinstall member 1208 in channel 1204, and reattach member 1208 to channel 1204.

[0122] For example, by reorienting the end members 1232, 1236 closest to the toe end 18 so that they extend out of the channel 1204 when reinstalled, and reorienting the end members 1236, 1232 closest to the heel end 22 so that they do not extend out of the channel 1204 when reinstalled, the face angle at address (or the resting face angle of the golf club) can be reoriented to a closed position in which the toe end 18 is closer to the golf ball than the heel end 22 at address (e.g., to facilitate a draw or hook).

[0123] As another example, by reorienting the end members 1232, 1236 closest to the toe end 18 so that they do not extend out of the channel 1204 when reinstalled, and reorienting the end members 1236, 1232 closest to the heel end 22 so that they extend out of the channel 1204 when reinstalled, the face angle at address (or the resting face angle of the golf club) can be reoriented to an open position (open configuration) in which the heel end 22 is closer to the golf ball than the toe end 18 at address (e.g., to facilitate cutting or slicing).

[0124] As yet another example, by orienting the end members 1232, 1236 closest to the toe end 18 so that they do not extend out of the channel 1204 when reinstalled, and by orienting the end members 1236, 1232 closest to the heel end 22 so that they do not extend out of the channel 1204 when reinstalled, the face angle at address (or the resting face angle of the golf club) can be reoriented to a neutral position (neutral or square configuration) where either the heel end 22 or the toe end 18 are closer to the golf ball at address (e.g., to promote a straighter ball flight).

[0125] Also, while the illustrated embodiment of face angle adjustment system 1200 does not include weights, it should be understood that end members 1232, 1236 may be weights such that face angle adjustment system 1200 may be incorporated into one or more of adjustable weighting systems 500, 700, 800, 900, 1000, 1100 as disclosed herein.

[0126] 14-15, another embodiment of an adjustable weighting system 1300 is shown. The adjustable weighting system 1300 includes a single port, channel, or grooved track 1304 (shown in FIG. 15) located in the sole 30 of the club head 10. In the illustrated embodiment, the channel 1304 is located proximal or closer to the rear 42 of the club head 10 than the face plate 34. However, in other embodiments, the channel 1304 can be located in any suitable location on the sole 30 of the club head 10. The channel 1304 is shown as having an arcuate or curved shape. In other embodiments, the channel 1304 can have any suitable shape (e.g., straight, etc.).

[0127] 15 , the channel 1304 includes a first channel portion 1308, a second channel portion 1312, and a third channel portion 1316. The channel portions 1308, 1312, and 1316 can collectively define the channel 1304 (or a portion of the channel 1304). The second channel portion 1312 is disposed between the first channel portion 1308 and the third channel portion 1316. The second channel portion 1312 includes a first width W1 that defines the distance between opposing edges of the channel 1304 within the second channel portion 1312. The first channel portion 1308 includes a second width W2 that defines the distance between opposing edges of the channel 1304 within the first channel portion 1308. Similarly, the third channel portion 1316 includes a third width W3 that defines the distance between opposing edges of the channel 1304 within the third channel portion 1316. The first width W1 is smaller than the second width W2 and the third width W3, forming a taper in the channel 1304. In other words, the channel 1304 is narrower in the second channel portion 1312 than in the first and third channel portions 1308, 1316. In the illustrated embodiment, the second width W2 and the third width W3 are substantially the same (or equal). However, in other embodiments, the second width W2 and the third width W3 may be different widths (or may not be equal).

[0128] The channel 1304 includes tapered ends 1320 a, b. The tapered ends 1320 a, b define a depth taper (instead of a width taper) and are disposed at opposite ends of the channel 1304 such that the depth gradually decreases from the respective channel portions 1308, 1316 to the edges of the channel 1304. The first tapered end 1320 a is positioned within the first channel portion 1308 and has a decreasing depth. In other words, the depth along the tapered end 1320 a is less than the depth at the first channel portion 1308. The second tapered end 1320 b is substantially the same as the first tapered end 1320 a, except that it is positioned within the third channel portion 1316. In other example embodiments, the channel 1304 can have one end that either includes a tapered end 1320 or does not include a tapered end.

[0129] 14-15, adjustable weighting system 1300 also includes a member 1324 (or insert 1324) configured to be received by channel 1304. In the illustrated embodiment, member 1324 has a shape complementary to channel 1304 so as to be received by channel 1304.

[0130] As shown in FIG. 15 , the member 1324 includes a body 1328 (or central member 1328). The body 1328 includes a first end 1332 opposite a second end 1336. Each of the ends 1332, 1336 has a thickness (or depth) that is less than the thickness (or depth) of the body 1328. Each end 1332, 1336 also defines a respective opening 1340 a, b that extends completely through the end 1332, 1336. The body 1328 can include a weight (or mass). The first weight 1344 is configured to mount at the first mounting location at the first end 1332. More specifically, the first weight 1344 defines a slot 1348 configured to receive (or slidably receive) the first end 1332. The first weight 1344 also includes opposing openings 1352 a,b disposed through the first weight 1344 on either side of the slot 1348. The second weight 1356 is substantially similar to the first weight 1344, with like numbers identifying like components. It should be understood that the member 1324 includes a body 1328, a first weight 1344, and a second weight 1356.

[0131] The first weight 1344 is removably attached to the body 1328 at the first end 1332. The first weight 1344 receives the first end 1332 within the slot 1348. In other words, the first end 1332 is slidably received by the slot 1348 of the first weight 1344. The openings 1352a, 1340a, and 1352b are then aligned and positioned so that the opening 1340a of the first end 1332 is positioned between the openings 1352a, 1352b of the first weight 1344. When aligned, the openings 1352a, 1340a, and 1352b can receive a fastener (e.g., a threaded screw, etc.) (not shown). The second weight 1356 is removably attached to the body 1328 at a second attachment location of the second end 1336 in the same manner. More specifically, second weight 1356 receives second end 1336 within slot 1348. In other words, second end 1336 is slidably received by slot 1348 of second weight 1356. Openings 1352a, 1340b, and 1352b are then aligned and positioned, with opening 1340b of second end 1336 positioned between openings 1352a, 1352b of second weight 1356. When aligned, openings 1352a, 1340b, 1352b can receive a fastener (e.g., a threaded screw, etc.) (not shown).

[0132] The fasteners (not shown) that couple the weights 1344, 1356 to the body 1328 can also couple the member 1324 to the club head 10 within the channel 1324. More specifically, the fasteners (not shown) are configured to be received within (or engage with) respective holes 1360 a, b disposed within the channel 1304. More specifically, the first hole 1360 a is positioned within the first channel portion 1308, and the second hole 1360 b is positioned within the third channel portion 1316. In many embodiments, the fasteners can include a density that is equal to or less than the density of the club head body so as not to significantly contribute to the weight distribution of the club head 10.

[0133] The first and second weights 1344, 1356 can be positioned or repositioned at any mounting location to adjust the weight distribution and center of gravity of the club head to affect ball trajectory and / or spin, as described below.

[0134] 16-17 illustrate another embodiment of an adjustable weighting system 1400. The adjustable weighting system 1400 has similar components to the adjustable weighting system 1300, with like names and / or like numbers identifying like components. The adjustable weighting system 1400 is substantially similar to the adjustable weighting system 1300, with only the differences being described herein, and similar structures being referenced with the same reference numbers incremented by "100" (e.g., 1304 and 1404 both refer to channels, etc.).

[0135] 17, adjustable weighting system 1400 includes a channel 1404 having a first channel portion 1408, a second channel portion 1412, and a third channel portion 1416. Channel portions 1408, 1412, 1416 are substantially similar to channel portions 1308, 1312, 1316, but have a first width W that defines the distance between opposing edges of channel 1404 within second channel portion 1412. 1A is greater than the first width W1 of the second channel portion 1312. 1A is a second width W that defines the distance between opposing edges of the channel 1404 within the first channel portion 1408. 2A First width W 1A also defines a third width W that defines the distance between opposing edges of the channel 1404 within the third channel portion 1416. 3A Additionally, there is a taper formed in channel 1404, but it is less pronounced (or less significant) than the taper formed in channel 1304.

[0136] 18-19 show another embodiment of adjustable weighting system 1500. Adjustable weighting system 1500 has similar components to adjustable weighting systems 1300, 1400, and like names and / or like numbers identify like components. Adjustable weighting system 1500 is substantially similar to adjustable weighting system 1300, and only the differences are described herein, with like structures being referenced by the same reference numbers incremented by "200" (e.g., 1304 and 1504 both refer to channels, etc.).

[0137] 19, the adjustable weighting system 1500 includes a channel 1504 having a first channel portion 1508, a second channel portion 1512, and a third channel portion 1516. The channel portions 1508, 1512, 1516 are spaced apart such that the channel 1504 has a constant width W along the channel portions 1508, 1512, 1516. 1B The second channel portion 1512 has a first depth D1, which is substantially the same as the channel portions 1308, 1312, and 1316, except that the channel 1504 has a variable depth. More specifically, the channel depth within the second channel portion 1512 is less than the channel depth within the first channel portion 1508 and the third channel portion 1516. More specifically, the second channel portion 1512 includes a first depth D1. The first channel portion 1508 includes a second depth D2, and the third channel portion 1516 includes a third depth D3. The first depth D1 is less than the second depth D2 and the third depth D3. Thus, the channel 1504 has a greater depth in the first and third channel portions 1508 and 1516 that receive the weights 1544 and 1556, respectively, than the second channel portion 1508. It should be understood that weights 1544, 1556 are substantially the same as weights 1344, 1356.

[0138] 20-21 illustrate another embodiment of an adjustable weighting system 1600. The adjustable weighting system 1600 has similar components to the adjustable weighting systems 100, 1300, 1400, and 1500, and like names and / or like numbers identify like components. The adjustable weighting system 1600 is substantially similar to the adjustable weighting system 1500, and only the differences are described herein, with like structures being referenced by the same reference numbers incremented by "100" (e.g., 1404 and 1504 both refer to channels, etc.).

[0139] As shown in FIG. 21 , the adjustable weighting system 1600 includes a channel 1604 having a first channel portion 1608, a second channel portion 1612, and a third channel portion 1616. The channel portions 1608, 1612, 1616 are substantially similar to the channel portions 1508, 1512, 1516, except that the channel 1604 includes tapered transitions between the second channel portion 1612 and the first channel portion 1608, and between the second channel portion 1612 and the third channel portion 1616. More specifically, the channel 1604 includes a first tapered depth transition portion 1664a between the second channel portion 1612 and the first channel portion 1608. The first tapered depth transition portion 1664a is an incremental increase in channel depth from the second channel portion 1612 to the first channel portion 1608. In other words, the first tapered depth transition 1664a is the slope between the second channel portion 1612 and the first channel portion 1608. The channel 1604 also includes a second tapered depth transition 1664b between the second channel portion 1612 and the third channel portion 1616. The second tapered depth transition 1664b is substantially the same as the first tapered depth transition 1664a, except that it is disposed between the second channel portion 1612 and the third channel portion 1616.

[0140] 22 illustrates another embodiment of an adjustable weighting system 1700. The adjustable weighting system 1700 has similar components to the adjustable weighting systems 1300, 1400, 1500, and 1600, with like names and / or like numbers identifying like components. The adjustable weighting system 1700 is substantially similar to the adjustable weighting system 1300, and only the differences are described herein, with like structures being referred to by the same reference numbers incremented by "400" (e.g., 1304 and 1704 both refer to channels, etc.).

[0141] Adjustable weighting system 1700 includes a member 1724 (or insert 1724) configured to be received by channel 1704 (shown in dashed lines). In the illustrated embodiment, member 1724 has a shape complementary to channel 1704 so as to be received by channel 1704. Member 1724 includes a first weight 1744 and a second weight 1756. Member 1724 is substantially similar to member 1324, and weights 1744, 1756 are generally similar to weights 1344, 1356. However, member 1724 differs in that it has a "T-shape." More specifically, member 1724 includes a body portion 1728 and a leg portion 1768 oriented generally perpendicular to body portion 1728. Thus, channel 1704 has a corresponding additional channel portion (not shown) oriented approximately perpendicular to the second channel portion (not shown) and configured to receive leg 1768. Leg 1768 includes a third weight 1772 that is substantially identical to first and second weights 1344, 1356. Additionally, third weight 1772 removably couples to leg 1768 in the same manner that first and second weights 1344, 1356 removably couple to body 1328.

[0142] The operation of adjustable weighting systems 1300, 1400, 1500, 1600, and 1700 is substantially similar, and therefore operation will be described with reference to adjustable weighting system 1300. The same steps apply to the other embodiments of weighting systems 1400, 1500, 1600, and 1700.

[0143] A user can remove the member 1324 from the channel 1324 by removing fasteners (not shown) from respective holes 1360 disposed within the channel 1304. Once removed from the channel 1304, the user can unscrew (or otherwise remove) one or more weights 1344, 1356 from the body 1328. To remove each weight 1344, 1356, the user removes a fastener (not shown) from the aligned openings 1352a, 1340, 1352b. The respective weight 1344, 1356 is then free to detach from the body 1328. The user can then replace the body 1328 or the weight 1344, 1356 with another having a different mass (e.g., lighter or heavier) to change the weight characteristics of the golf club head 10. The body 1328 and / or weight 1344, 1356 having a different mass can then be re-engaged (or re-attached). More specifically, weights 1344, 1356 slidably receive portions of body 1328 (e.g., first end 1332, second end 1336, etc.) to align openings 1352a, 1340, 1352b. Once openings 1352a, 1340, 1352b are aligned, fasteners (not shown) can be reinserted through openings 1352a, 1340, 1352b. Member 1324 can then be positioned (or repositioned) within channel 1304, and each fastener (not shown) can be engaged (or reengaged) with its respective hole 1360 within channel 1304. It should be understood that the above operations apply not only to the removal of weights 1344, 1356, but also to embodiments having three weights 1744, 1756, 1772.

[0144] By altering the body 1328 and / or one or more of the weights 1344, 1356 (or weights 1744, 1756, 1772), the center of gravity 58 can be adjusted (or moved). For example, the distance the center of gravity 58 can be adjusted (or moved) can be within a range of 0.01 inches to 0.50 inches, resulting in a change in ball trajectory of 0.46 yards to 23 yards. In other embodiments, the club head center of gravity 58 can be adjusted (or moved) within a range of 0.050 inches to 0.200 inches, resulting in a change in ball trajectory of 2.3 yards to 9.2 yards.

[0145] 23-24 , one embodiment of an adjustable weighting system 1800 is shown. The system 1800 includes a single port, channel, or grooved track 1804 configured to accept multiple weights in various configurations. The channel 1804 is an arcuate or curved channel 1804 located in a portion of the sole 30. In other words, the channel 1804 is located toward the rear 42 of the club head 10 adjacent the rail 74, or is located closer to the rear 42 of the club head 10 than the face plate 34. In other embodiments, the channel 1804 can be located in the skirt 74, in both the skirt 74 and the sole 30, and / or in any other suitable location on the club head 10. While the channel 1804 is shown as having a generally arcuate shape, in other embodiments, the channel 1804 can have any shape (e.g., linear, geometric, etc.).

[0146] As shown in FIG. 24 , the channel 1804 includes a first channel portion 1808, a second channel portion 1812, and a third channel portion 1816. The channel portions 1808, 1812, and 1816 can collectively define the channel 1804 (or a portion of the channel 1804). The second channel portion 1812 is disposed between the first channel portion 1808 and the third channel portion 1816. The second channel portion 1812 includes a curved or arcuate shape, while the first and third channel portions 1808, 1816 are generally straight. Thus, the channel 1804 is shown as having portions with arcuate or curved shapes. In other embodiments, the channel 1804 can have any suitable shape (e.g., straight, etc.). The channel 1804 is shown as having various channel widths. More specifically, the channel 1804 can have a different width at the first channel portion 1808 or the third channel portion 1816 than the second channel portion 1812 (e.g., the first and third channel portions 1808, 1816 can be narrower (or wider) than the second channel portion 1812). In other embodiments, the channel 1804 can have a constant (or substantially the same) width through the channel portions 1808, 1812, 1816.

[0147] 23-24 , adjustable weighting system 1800 also includes a member 1824 (or insert 1824) configured to be received by channel 1804. In the illustrated embodiment, member 1824 has a shape complementary to channel 1804 so as to be received by channel 1804.

[0148] 24 , the member 1824 includes a body 1828. The body 1828 includes a first end 1832 opposite a second end 1836. The body 1828 also includes a plurality of attachment points or locations 1876. More specifically, the body 1828 includes a first attachment location 1876a (disposed at the first end 1832), a second attachment location 1876b (disposed between the first and second ends 1832, 1836), and a third attachment location 1876c (disposed at the second end 1836). In the illustrated embodiment, the second attachment location 1876b is disposed approximately equidistant from the first and second ends 1832, 1836 (or at an approximately central location along the body 1828). In other embodiments, the second attachment location 1876b can be located anywhere between the first end 1832 and the second end 1836. Furthermore, multiple second attachment locations 1876b can be located at any suitable locations between the first end 1832 and the second end 1836.

[0149] In the illustrated embodiment, each mounting location 1876 has a thickness (or depth) that is less than the thickness (or depth) of the remainder of the body 1828. Thus, each weight couples to the body 1828 at each mounting location 1876. As shown, each weight can slide (or clip) into engagement with the body 1828 at each mounting location 1876. As shown in FIG. 24 , a first weight 1844 is removably coupled to the first mounting location 1876a, a second weight 1856 is removably coupled to the second mounting location 1876b, and a third weight 1872 is removably coupled to the third mounting location 1876c. To facilitate engagement, each weight 1844, 1856, 1872 includes a channel 1880. More specifically, each weight 1844, 1856, 1872 has a U-shaped configuration to define the channel 1880. The channel 1880 is configured to receive a respective mounting location 1876 (i.e., a thinner or thinner portion of the body 1828) for coupling or otherwise attaching the respective weights 1844, 1856, 1872 to the body 1828. Each weight 1844, 1856, 1872 may also include aligned openings 1852a, b disposed on either side of the channel 1880. Each mounting location 1876 may also include an opening 1852c. The openings 1852a, c, b are positioned to align in response to each weight 1844, 1856, 1872 being coupled to the body 1828 at the respective mounting location 1876. The aligned openings 1852a, 1852b, 1852b may receive a fastener (e.g., a screw, bolt, etc.) (not shown). The fastener (not shown) may further couple the member 1824 to the club head 10 within the channel 1804. More specifically, the fasteners (not shown) are configured to be received within (or engage with) respective holes (not shown) disposed within the channels 1804. In many embodiments, the fasteners may have a density that is equal to or less than the density of the club head body so as not to significantly contribute to the weight distribution of the club head 10.

[0150] The body 1828 and each weight 1844, 1856, 1872 has a geometric or polygonal shape. In other embodiments, the body 1828 and / or each weight 1844, 1856, 1872 can have any shape suitable for being removably attached (e.g., weight 1844, 1856, 1872) and received by the channel 1804.

[0151] The first, second, and third weights 1844, 1856, 1872 may be positioned or repositioned at any mounting location to adjust the weight distribution and center of gravity of the club head, as described below, and to affect the trajectory and / or spin of the ball.

[0152] 25 shows another embodiment of an adjustable weighting system 1900. The adjustable weighting system 1900 has similar components to the adjustable weighting system 1800, with like names and / or like numbers identifying like components. The adjustable weighting system 1900 is substantially similar to the adjustable weighting system 1800, with only the differences being described herein, and like structures being referenced with the same reference numbers incremented by "100" (e.g., 1804 and 1904 both refer to channels, etc.).

[0153] As shown in FIG. 25 , the adjustable weighting system 1900 includes a channel 1904 configured to receive a member 1924 (or insert 1924). The member 1924 may include at least one connecting member 1928 (or body 1928) and at least one weight 1944. More specifically, as shown in FIG. 25 , the member 1924 includes a plurality of connecting members 1928 a, 1928 b and a plurality of weights 1944, 1956, 1972. Each weight 1944, 1956, 1972 is in a keyed relationship with at least one connecting member 1928 a, 1928 b. More specifically, each weight 1944, 1956, 1972 is configured to couple with one of the connecting members 1928 a, 1928 b to define the member 1928. To facilitate the interlocking connection, connecting members 1928a, 1928b each include at least one pin 1984, more specifically, pins 1984 located at opposite ends of each member 1928a, 1928b. Pin 1984 may include a head 1988 connected to member 1928 by a shaft 1990. Head 1988 has a different thickness than shaft 1990. Pin 1984 is configured to be received in a corresponding opening 1992 in each weight 1944, 1956, 1972. Each weight includes an opening 1992 located at opposite ends of weight 1944, 1956, 1972. This facilitates a chain-like arrangement of alternating weights and connecting members to define member 1924. More specifically, first weight 1944 is removably connected to one end of first connecting member 1928a, and a first end of second weight 1956 is removably connected to an opposite second end of first connecting member 1928a. Second weight 1956 is removably connected to a first end of second connecting member 1928b. Second connecting member 1928b connects to a second end of second weight 1956 opposite the first end. Third weight 1972 is also removably connected to a second end of second connecting member 1928b opposite the first end. Thus, connecting members 1928a, 1928b and weights 1944, 1956, 1972 are removably connected via a keyed interlocking relationship.It should be understood that connecting members 1928a, 1928b and weights 1944, 1956, 1972 can be constructed of similar materials and / or have similar masses, as described above in connection with body 1828 and weights 1844, 1856, 1872. Additionally, member 1924 can be removably coupled to club head 10 within channel 1804 by one or more fasteners (not shown). The fasteners (not shown) are configured to be received by (or engage with) openings 1952 and holes 1960 when openings 1952 in each weight 1944, 1956, 1972 and holes 1960 in the channel are positioned so that they are aligned.

[0154] 26 illustrates another embodiment of an adjustable weighting system 2000. The adjustable weighting system 2000 has similar components to the adjustable weighting systems 1800, 1900, and like names and / or like numbers identify like components. The adjustable weighting system 2000 is substantially similar to the adjustable weighting system 1800, and only the differences are described herein, with like structures being referenced by the same reference numbers incremented by "200" (e.g., 1804 and 2004 both refer to channels, etc.).

[0155] The adjustable weighting system 2000 includes a channel 2004 that removably receives a member 2024. The member 2024 includes a body 2028. A plurality of weights 2044, 2056, 2072 are configured to removably couple to the body 2028 at different locations on the body 2028. As shown, the body 2028 includes three attachment locations (or edges) (not shown), each configured to couple to one of the weights 2044, 2056, 2072. The weights 2044, 2056, 2072 are substantially the same shape (or geometric shape) and / or size, thereby allowing each weight 2044, 2056, 2072 to be connected to any one of the attachment locations (not shown). For example, each weight 2044, 2056, 2072 may have a channel (not shown) along its periphery. For example, a channel can be located on each edge of weights 2044, 2056, 2072 such that the channel can be located along the edge including the entire perimeter as defined by the edge, thereby allowing the appropriate edge of weights 2044, 2056, 2072 to be coupled to the appropriate mounting location (such as by a keyed relationship as disclosed with respect to adjustable weighting system 1900) by reorienting weights 2044, 2056, 2072 to the orientation required for coupling to the desired mounting location (not shown).

[0156] 27 illustrates another embodiment of an adjustable weighting system 2100. The adjustable weighting system 2100 has similar components to the adjustable weighting systems 1800, 1900, and 2000, and like names and / or like numbers identify like components. The adjustable weighting system 2100 is substantially similar to the adjustable weighting system 2000, and only the differences are described herein, with similar structures being referenced by the same reference numbers incremented by "100" (e.g., 2004 and 2104 both refer to channels, etc.).

[0157] The adjustable weighting system 2100 includes a channel 2104 that removably receives a member 2124. The member 2124 includes a body 2128. A plurality of weights are removably coupled to the body 2128 at different locations on the body 2128. The body 2128 has a general "U-shape" to provide three, four, or five weight attachment locations. For example, the body 2128 can include three attachment locations (not shown) for weights 2144, 2156, and 2172. The body 2128 can also add additional attachment locations (not shown) for two additional weights 2172a and 2172b. The weights 2144, 2156, 2172, 2172a, and 2172b can be removably coupled to the body 2128 as described in connection with the adjustable weighting system 2000. Additionally, the weights 2144, 2156, 2172, 2172a, 2172b can be substantially the same shape (or geometry) and / or size, thereby allowing each weight 2144, 2156, 2172, 2172a, 2172b to be connected to one of any number of attachment locations (not shown). In other embodiments, the body 2128 can include one, two, three, four, or five weight attachment locations, including any one or combination of the attachment locations disclosed herein.

[0158] 28 illustrates another embodiment of an adjustable weighting system 2200. The adjustable weighting system 2200 has similar components to the adjustable weighting systems 1800, 1900, 2000, and 2100, and like names and / or like numbers identify like components. The adjustable weighting system 2200 is substantially similar to the adjustable weighting system 2000, and only the differences are described herein, with like structures being referred to by the same reference numbers incremented by "200" (e.g., 2004 and 2204 both refer to channels, etc.).

[0159] The adjustable weighting system 2200 includes a channel 2204 that removably receives a member 2224. The member 2224 includes a body 2228. A plurality of weights are removably coupled to the body 2228 at different locations on the body 2228. The body 2228 has a general "O" shape to provide four, five, or six weight attachment locations. For example, the body 2228 can include four attachment locations (not shown) for weights 2244, 2256, 2272, and 2272a. The body 2228 can also add additional attachment locations (not shown) for two additional weights 2272b and 2272c. The weights 2244, 2256, 2272, 2272a, 2272b, and 2272c can be removably coupled to the body 2228 as described in connection with the adjustable weighting system 2000. Additionally, weights 2244, 2256, 2272, 2272a, 2272b, 2272c can have substantially the same shape (or geometry) and / or size, thereby allowing each weight 2244, 2256, 2272, 2272a, 2272b, 2272c to be connected to any one of the mounting locations (not shown). In other embodiments, body 2228 can include 1, 2, 3, 4, 5, or 6 weight mounting locations, including any one or combination of the mounting locations disclosed herein.

[0160] 29 illustrates another embodiment of an adjustable weighting system 2300. The adjustable weighting system 2300 has similar components to the adjustable weighting systems 1800, 1900, 2000, 2100, and 2200, and like names and / or like numbers identify like components. The adjustable weighting system 2300 is substantially similar to the adjustable weighting system 1800, and only the differences are described herein, with like structures being referred to by the same reference numbers incremented by "500" (e.g., 1804 and 2304 both refer to channels, etc.).

[0161] The adjustable weighting system 2300 includes a channel 2304 that removably receives a member 2324. The member 2324 includes a body 2328. Weights 2344, 2356 removably couple to opposite ends of the body 2328. The member 2324 is oriented to extend in a plane that intersects both the face plate 34 and the back 42 of the club head 10. Thus, removing and readjusting the weights 2344, 2356 relative to the body 2328 can affect the spin rate (e.g., backspin) of a golf ball struck by the club head 10.

[0162] It should be understood that the body 2328 and weights 2344, 2356 can be constructed of similar materials and / or have similar masses, as described above in connection with the body 1828 and weights 1844, 1856. Additionally, the member 2324 can be removably coupled to the club head 10 within the channel 2304 by one or more fasteners (not shown). The fasteners (not shown) are configured to be received by (or engage with) the openings 2352 and holes (not shown) in the channel 2304 when the openings 2352 in each weight 2344, 2356 and the holes (not shown) in the channel 2304 are positioned so that they are aligned.

[0163] The operation of adjustable weighting systems 1800, 1900, 2000, 2100, 2200, and 2300 is substantially similar, and therefore, operation will be described with respect to adjustable weighting system 1800. The same procedure applies to the other embodiments of weighting systems 1900, 2000, 2100, 2200, and 2300, among others.

[0164] A user can remove member 1804 from channel 1804 by removing fasteners (not shown) from respective holes (not shown) disposed within channel 1804. Once removed from channel 1804, a user can unscrew (or otherwise remove) one or more weights 1844, 1856, 1872 from body 1828. To remove each weight 1844, 1856, 1872, a user removes a fastener (not shown) from the aligned openings 1852a, 1852c, 1852b. Each weight 1844, 1856, 1872 can then be freely removed (e.g., by sliding) from body 1828. A user can then replace body 1828 or one or more weights 1844, 1856, 1872 with another having a different mass (e.g., lighter or heavier) to change the weight characteristics of golf club head 10. Body 1828 and / or weights 1844, 1856, 1872, having different masses, can then be re-engaged (or re-attached). More specifically, weights 1844, 1856, 1872 slidably receive portions of body 1328 at attachment points 1876. Openings 1852a, 1852c, 1852b can then be aligned, and fasteners (not shown) can be re-inserted through openings 1852a, 1852c, 1852b. Member 1824 can then be positioned (or re-positioned) within channel 1804, and each fastener (not shown) can be engaged (or re-engaged) with its respective hole (not shown) in channel 1304. It should be understood that the above operations apply not only to the removal of weights 1844, 1856, 1872, but also to embodiments having more than three weights (e.g., 3, 4, 5, or more weights).

[0165] The center of gravity 58 can be adjusted (or moved) by modifying the body 1828 and / or one or more of the weights 1844, 1856, 1872. For example, the distance the center of gravity 58 can be adjusted (or moved) can be within a range of 0.01 inches to 0.50 inches, resulting in a change in ball trajectory of 0.46 yards to 23 yards. In other embodiments, the club head center of gravity 58 can be adjusted (or moved) within a range of 0.050 inches to 0.200 inches, resulting in a change in ball trajectory of 2.3 yards to 9.2 yards.

[0166] C. Adjustable weighting system. 30-33 illustrate exemplary means for coupling one or more weights to an insert or member of the adjustable weighting systems 700, 800, 900, 1000, 1100, 1300, 1400, 1500, 1600, 1700, 1800, 1900, 2000, 2100, 2200, 2300 disclosed herein. The weight to member or insert coupling mechanisms described with reference to FIGS. 30-33 can be used with any of the adjustable weighting systems 700, 800, 900, 1000, 1100, 1300, 1400, 1500, 1600, 1700, 1800, 1900, 2000, 2100, 2200, 2300 described herein. Furthermore, the mechanisms for coupling weights to members or inserts described with reference to Figures 30-33 can be used in addition to or instead of the mechanisms described with respect to adjustable weighting systems 700, 800, 900, 1000, 1100, 1300, 1400, 1500, 1600, 1700, 1800, 1900, 2000, 2100, 2200, and 2300.

[0167] 30 , in some embodiments, the insert or member 2508 can include a hole 2540 that can receive a protrusion 2528 on one or more weights 2532 to temporarily couple the one or more weights 2532 to the member 2508. In the illustrated embodiment, the hole 2540 and protrusion 2528 are cylindrical. In other embodiments, the hole 2540 and protrusion 2528 can have any corresponding shape. In some embodiments, the one or more weights 2532 can further include a lip 2544 positionable in or above a groove 2546 of the member to further secure the weight to the member when the adjustable weighting system is positioned in the channel of the club head.

[0168] 31 , in some embodiments, the insert or member 2608 can include one or more cavities 2610 defined by a first side wall 2612, a second side wall 2614, and a rear wall 2616. The one or more cavities 2610 can receive one or more weights 2632. In the illustrated embodiment, the rear wall 2616 of the member has holes 2640 that can receive protrusions (not shown) on the weights 2632. Additionally, in the illustrated embodiment, the first side wall 2612 of the member 2608 includes ribs or rails 2644 that are positionable through channels 2646 on the weights 2632. The holes and protrusions, and the ribs and channels of the adjustable weighting system temporarily couple the weights 2632 to the member 2608.

[0169] 30-31 , the adjustable weighting system is secured within the channel by threaded fasteners (not shown) positionable through holes 2548, 2648 in one or more weights 2532, 2632. In other embodiments, the adjustable weighting system may be secured within the channel by one or more threaded fasteners positionable through one or more holes in the member. In still other embodiments, other mechanisms may be used to secure the adjustable weighting system within the channel.

[0170] 32 , in some embodiments, the insert or member 2708 can include one or more cavities 2710 defined by a first side wall 2712, a second side wall 2714, and a top wall 2716. The one or more cavities 2710 can receive one or more weights 2732. In the illustrated embodiment, the first and second side walls 2712, 2714 are tapered such that the width of the cavities is greater near the top wall 2716 than near the open bottom. The weights 2732 include tapered side walls 2734 that correspond to the tapered first and second side walls 2712, 2714 of the cavities 2710 of the member 2708. The tapered wall configuration of the member void and weight provisionally secures the weight 2734 within the void 2710 of the member 2708 and prevents the weight 2734 from becoming dislodged from the member 2708 when the adjustable weighting system is removed from the club head. Additionally, in the illustrated embodiment, the member 2708 includes a hole 2748 capable of receiving a threaded fastener for coupling the adjustable weighting system to the club head.

[0171] 33 , in some embodiments, the insert or member 2808 can include one or more cavities 2810 defined by a first side wall 2812, a second side wall 2814, and a top wall 2816. The one or more cavities 2810 can receive one or more weights 2832. In the illustrated embodiment, the first and second side walls 2812, 2814 are tapered such that the width of the cavities is greater near the top wall 2816 than near the open bottom. The weights 2832 include tapered side walls 2834 that correspond to the tapered first and second side walls 2812, 2814 of the cavities 2810 of the member 2808. The member's void and weight's tapered wall configuration provisionally secures weight 2834 within void 2810 of member 2808 and prevents weight 2834 from becoming dislodged from member 2808 when the adjustable weighting system is removed from the club head. Additionally, in the illustrated embodiment, member 2808 includes holes 2848 that correspond to holes 2850 on weight 2834. Holes 2848, 2850 can receive threaded fasteners for coupling the adjustable weighting system to the club head.

[0172] Example 1 According to one example, the golf club head 10 with adjustable weighting system 1800 shown in Figures 23 and 24 includes a member 1824 configured to be received by the channel 1804. The member 1824 includes a body 1828 and a plurality of mounting locations 1876, including a first mounting location 1876a, a second mounting location 1876b, and a third mounting location 1876c. The plurality of mounting locations are configured to receive a plurality of weights, including a first weight 1844, a second weight 1856, and a third weight 1872, in various configurations.

[0173] The first weight 1844 of the exemplary adjustable weighting system 1800 has a mass of 15 grams, the second weight 1856 of the exemplary adjustable weighting system 1800 has a mass of 0.5 grams, and the third weight 1872 of the exemplary adjustable weighting system 1800 has a mass of 0.5 grams.

[0174] When adjustable weighting system 1800 is positioned within channel 1804, the first weight may be positioned at a first mounting location near the toe of the club head, a second mounting location near the center of the club head, or a third mounting location near the heel of the club head. Referring to Table 1 below, the center of gravity W of the first weight when the first weight is positioned at the first, second, or third mounting location is CG is located a distance D1 of 0.342 inches to 0.641 inches from the rear perimeter 74 of the club head 10. Furthermore, when the first weight is positioned in the first, second, or third mounting location, the center of gravity W of the first weight is CG is positioned a distance D2 between 2.912 inches and 3.926 inches from the geometric center 140 of the striking face 34.

[0175] With further reference to Table 1 below, the club head 10 includes a head CG depth 10130 between 1.626 inches and 1.817 inches when the first weight is positioned in the first, second, or third mounting location, and a head CG height 10132 between 0.206 inches and 0.210 inches above the head depth plane 10120. The exemplary club head 10 further includes a head CG depth 10132 between 3,665 and 4,052 g·cm when the first weight is positioned in the first, second, or third mounting location. 2 Moment of inertia I about the x-axis between xx , 5,419 to 5,710 g·cm 2 Moment of inertia I about the y-axis between yy , 9,722~1,1026g·cm 2 Moment of inertia I around the hosel axis between hh The resultant moment of inertia about the club head CG of the exemplary club head 10 (i.e., the sum of the moment of inertia about the x-axis and the moment of inertia about the y-axis) is between 9,084 and 9,664 g cm when the first weight is positioned in the first, second, or third mounting location. 2 The club head CG and the resultant moment of inertia about the hosel axis (i.e., the sum of the moment of inertia about the x-axis, the moment of inertia about the y-axis, and the moment of inertia about the hosel axis) of the exemplary club head 10 are between 18,806 and 20,690 g cm when the first weight is positioned in the first, second, or third mounting location. 2 It is between.

[0176] With further reference to Table 1 below, for the exemplary club head with adjustable weighting system 1800, when the first weight is positioned in the first, second, or third mounting location, the depth-to-mass ratio, which is the club head CG depth relative to the mass of the first weight, is between 0.108 inches and 0.121 inches. Additionally, for the exemplary club head with adjustable weighting system 1800, the first inertia-to-mass ratio, which is the club head's composite moment of inertia about the head CG relative to the mass of the first weight, is between 606 and 644 cm. 2Furthermore, the example club head with adjustable weighting system 1800 has a head CG to mass ratio, which is the maximum shift of head CG relative to the mass of the first weight, of 0.015 inches / grams. Thus, the adjustable weighting system 1800 of example club head 10 maximizes head CG depth, moment of inertia, and head CG movement by the user without using large, heavy weights that require significant weight construction. [Table 1]

[0177] Moving the weight between the first, second, and third mounting locations results in a shift in the club head's center of gravity of up to 0.2 inches. The maximum shift in the center of gravity of the exemplary club head 6710 results in a total trajectory change of up to 9.3 yards (i.e., when shifting the first weight from the first mounting location to the second mounting location, or from the second mounting location to the first mounting location). Thus, moving the weight from the third mounting location to the second mounting location can change the golf ball's trajectory by 4.6 yards to correct a slice or create a draw. Additionally, moving the weight from the third mounting location to the first mounting location can change the golf ball's trajectory by 4.6 yards to correct a hook or create a fade.

[0178] Clause 1: A golf club head, comprising: a club body having a crown opposite a sole, a toe end opposite a heel end, a butt end, and a hosel, the club body having a channel formed therein; and an adjustable weighting system, the adjustable weighting system comprising: a member configured to be received by the channel and to be removably coupled to the club body, the member body having a first end and a second end, the member further including a first attachment location disposed at the first end, a second attachment location disposed between the first end and the second end, and a third attachment location disposed at the second end; a first weight configured to be removably coupled to the first mounting location of the member body and having a first mass; a second weight configured to be removably coupled to the second mounting location of the member body and having a second mass less than the first mass; and a third weight configured to be removably coupled to the third mounting location of the member body and having a third mass less than the first mass, wherein the first weight, the second weight, and the third weight are removable and repositionable from the member to change the center of gravity of the club head.

[0179] Clause 2: The golf club head described in clause 1, wherein the first weight has a mass between 6 grams and 20 grams, and the second weight and the third weight have masses between 0.25 grams and 4 grams.

[0180] Clause 3: The golf club head according to clause 2, wherein the club head further has a club head center of gravity depth greater than 1.6 inches.

[0181] Clause 4: The golf club head of clause 3, wherein the club head further has a depth-to-mass ratio, the depth of the center of gravity of the club head relative to the mass of the first weight, greater than 0.060 inches / gram.

[0182] Clause 5: The golf club head of clause 1, wherein the channel has a height between 0.1 inches and 0.5 inches.

[0183] Clause 6: The golf club head of clause 5, wherein the height of the channel varies from near the heel end of the club head to near the toe end of the club head such that the cross-sectional area of the channel varies.

[0184] Clause 7: The golf club head of clause 1, wherein each of the weights has a weight center of gravity located within 0.50 inches of the circumference of the club head.

[0185] Clause 8: The golf club head of clause 1, wherein the first weight includes a first opening, the first attachment location of the member body includes a second opening aligned with the first opening, the aligned first and second openings configured to receive a first fastener, the second weight includes a third opening, the second attachment location of the member body includes a fourth opening aligned with the third opening, the aligned third and fourth openings configured to receive a second fastener, the third weight includes a fifth opening, the third attachment location of the member body includes a sixth opening aligned with the fifth opening, the aligned fifth and sixth openings configured to receive a third fastener.

[0186] Clause 9: The golf club head of clause 8, wherein the channel includes a first hole, a second hole, and a third hole, the first hole configured to receive the first fastener, the second hole configured to receive the second fastener, and the third hole configured to receive the third fastener to secure the member to the club body, and the first fastener, the second fastener, and the third fastener have a density equal to or less than that of the club head body.

[0187] Clause 10: The resultant moment of inertia of said club head about its center of gravity, defined as the sum of the crown-to-sole moment of inertia and the heel-to-toe moment of inertia, is 8,000 g cm 2 A golf club head as set forth in clause 2, which is larger.

[0188] Clause 11: The ratio of the resultant moment of inertia of said club head about the center of gravity of said club head to the mass of said first weight is 400 cm 2 10. A golf club head as set forth in clause 10, which is larger than

[0189] Clause 12: A golf club head comprising: a club body having a crown opposite a sole, a toe opposite a heel, a butt end, and a hosel, the club body having a channel formed therein; and an adjustable weighting system, the adjustable weighting system comprising: a member configured to be received by the channel and to be removably coupled to the club body, the member having a member body having a first end and a second end; a first weight configured to be removably coupled to the first end of the member body and having a first mass; and a second weight configured to be removably coupled to the second end of the member body and having a second mass less than the first mass, the first weight and the second weight being removable from the member and repositionable to change the center of gravity of the club head.

[0190] Clause 13: The golf club head of clause 12, wherein the first weight includes a first opening, the first end of the body includes a second opening aligned with the first opening, and the aligned first and second openings are configured to receive a fastener.

[0191] Clause 14: The golf club head of clause 13, wherein the channel includes a hole configured to receive the fastener to secure the member within the channel of the club body.

[0192] Clause 15: The golf club head of clause 13, wherein the fastener is a first fastener, the second weight includes a third opening, the second end of the body includes a fourth opening aligned with the third opening, and the aligned third and fourth openings are configured to receive a second fastener.

[0193] Clause 16: The golf club head of clause 15, wherein the channel includes a first hole and a second hole, the first hole configured to receive the first fastener and the second hole configured to receive the second fastener to secure the member to the club body.

[0194] Clause 17: A golf club head comprising: a club body having a crown opposite a sole, a toe end opposite a heel end, a butt end, and a hosel; and a face angle adjustment system disposed on the sole, the face angle adjustment system having a single channel and a member removably received by the channel, the member having a member body including a first end member and a second end member, the member being configured to be repositioned within the channel to adjust a static face angle of the golf club head.

[0195] Clause 18: The golf club head of clause 17, wherein the member has a body, the first end member is coupled to the body and configured to rotate relative to the body, and the second end member is coupled to the body and configured to rotate relative to the body.

[0196] Clause 19: The golf club head of clause 18, wherein the first end member and the second end member are configured to rotate relative to the body between a first configuration, a second configuration, and a third configuration, wherein in the first configuration, the first end member extends from the channel and the second end member does not extend from the channel, in the second configuration, the second end member extends from the channel and the first end member does not extend from the channel, and in the third configuration, the first end member and the second end member do not extend from the channel.

[0197] Clause 20: The golf club head of clause 17, wherein each of the end member and the second end member includes a first side and a second side, the first side being longer than the second side.

[0198] The substitution of one or more claimed elements constitutes a rearrangement, not a repair. Furthermore, benefits, other advantages, and solutions to problems have been described above with respect to particular embodiments. However, the benefits, advantages, solutions to problems, and any element(s) that may give rise to or make more apparent any benefit, advantage, or solution should not be construed as a key, necessary, or essential feature or element of any claim unless such benefit, advantage, solution, or element is expressly recited in any or all of the claims.

[0199] Because the Rules of Golf may change from time to time (e.g., new Rules may be adopted, or old Rules may be eliminated or modified, by golf's standards organizations and / or governing bodies, such as the United States Golf Association (USGA), the Royal and American Golf Association (R&A), etc.), golf equipment related to the devices, methods, and articles of manufacture described herein may or may not conform to the Rules of Golf at any particular time. Accordingly, golf equipment related to the devices, methods, and articles of manufacture described herein may be advertised, marketed, and / or sold as conforming or non-conforming golf equipment. The devices, methods, and articles of manufacture described herein are not limited in this respect.

[0200] Although the above examples may be described in the context of a wood-type golf club, the devices, methods, and articles of manufacture described herein may also be applied to other types of golf clubs, such as driver wood-type golf clubs, fairway wood-type golf clubs, hybrid-type golf clubs, iron-type golf clubs, wedge-type golf clubs, or putter-type golf clubs. Alternatively, the devices, methods, and articles of manufacture described herein may also be applied to other types of sports equipment, such as hockey sticks, tennis rackets, fishing rods, ski poles, etc.

[0201] Furthermore, embodiments and limitations disclosed herein are not available to the public under the doctrine of public domain if the embodiment and / or limitation (1) is not explicitly claimed in the claims and (2) is a potential equivalent of an explicit element and / or limitation of the claims under the doctrine of equivalents.

[0202] Various features and advantages of the disclosure are set forth in the following claims.

Claims

1. A golf club head, a club body having a sole and a crown opposite to the sole, a toe end opposite to the heel end, a butt end, and a hosel, the club body having a channel formed therein; It has an adjustable weighting system and The adjustable weighting system comprises: a member configured to be received by the channel and to be removably coupled to the club body, the member having a member body having a first end and a second end, the member further including a first attachment location disposed at the first end, a second attachment location disposed between the first end and the second end, and a third attachment location disposed at the second end; a first weight configured to be removably coupled to the first mounting location of the member body, the first weight having a first mass; a second weight configured to be removably coupled to the second mounting location of the member body, the second weight having a second mass less than the first mass; a third weight configured to be removably coupled to the third mounting location of the member body, the third weight having a third mass less than the first mass; The golf club head, wherein the first weight, the second weight, and the third weight are removable from the member and repositionable to change the center of gravity of the club head.

2. the first weight has a mass between 6 grams and 20 grams; The golf club head of claim 1 , wherein the second weight and the third weight have a mass between 0.25 grams and 4 grams.

3. The golf club head of claim 2 , wherein the club head further comprises a club head center of gravity depth greater than 1.6 inches.

4. The golf club head of claim 3 , wherein the club head further comprises a depth-to-mass ratio, the depth of the center of gravity of the club head relative to the mass of the first weight, greater than 0.060 inches / gram.

5. The golf club head of claim 1 , wherein the channel has a height between 0.1 inches and 0.5 inches.

6. The golf club head of claim 5 , wherein the height of the channel varies from near the heel end of the club head to near the toe end of the club head such that the cross-sectional area of the channel varies.

7. The golf club head of claim 1 , wherein each of the weights has a weight center of gravity located within 0.50 inches of the perimeter of the club head.

8. the first weight includes a first opening, the first attachment location of the member body includes a second opening aligned with the first opening, the aligned first and second openings configured to receive a first fastener; the second weight includes a third opening, the second attachment location of the member body includes a fourth opening aligned with the third opening, the aligned third and fourth openings configured to receive a second fastener; 2. The golf club head of claim 1, wherein the third weight includes a fifth opening, the third attachment location of the member body includes a sixth opening aligned with the fifth opening, and the aligned fifth and sixth openings are configured to receive a third fastener.

9. the channel includes a first hole, a second hole, and a third hole; the first hole is configured to receive the first fastener, the second hole is configured to receive the second fastener, and the third hole is configured to receive the third fastener to secure the member to the club body; The golf club head of claim 8 , wherein the first fastener, the second fastener, and the third fastener have a density equal to or less than that of the club head body.

10. a composite moment of inertia of the club head about the center of gravity of the club head, defined as the sum of the crown-to-sole moment of inertia and the heel-to-toe moment of inertia, of 8,000 g cm 2 The golf club head of claim 2 .

11. the ratio of the composite moment of inertia of the club head about the center of gravity of the club head to the mass of the first weight is 400 cm 2 The golf club head of claim 10 , wherein

12. A golf club head, a club body having a sole and a crown opposite to the sole, a toe end opposite to the heel end, a butt end, and a hosel, the club body having a channel formed therein; It has an adjustable weighting system and The adjustable weighting system comprises: a member configured to be received by the channel and removably coupled to the club body, the member having a member body having a first end and a second end; a first weight configured to be removably coupled to the first end of the member body, the first weight having a first mass; a second weight configured to be removably coupled to the second end of the member body, the second weight having a second mass less than the first mass; The golf club head, wherein the first weight and the second weight are removable from the member and repositionable to change the center of gravity of the club head.

13. 13. The golf club head of claim 12, wherein the first weight includes a first opening, the first end of the body includes a second opening aligned with the first opening, and the aligned first and second openings are configured to receive a fastener.

14. The golf club head of claim 13 , wherein the channel includes a hole configured to receive the fastener to secure the member within the channel of the club body.

15. the fastener is a first fastener; 14. The golf club head of claim 13, wherein the second weight includes a third opening, the second end of the body includes a fourth opening aligned with the third opening, and the aligned third and fourth openings are configured to receive a second fastener.

16. the channel includes a first hole and a second hole; 16. The golf club head of claim 15, wherein the first hole is configured to receive the first fastener and the second hole is configured to receive the second fastener to secure the member to the club body.

17. A golf club head, a club body having a crown opposite a sole, a toe end opposite a heel end, a butt end, and a hosel; a face angle adjustment system disposed on the sole, The face angle adjustment system includes: A single channel; a member removably received by the channel; the member has a member body including a first end member and a second end member; The member is configured to be repositioned within the channel to adjust a static face angle of the golf club head.

18. The member has a body; the first end member is configured to couple to the body and rotate relative to the body; The golf club head of claim 17 , wherein the second end member is configured to couple to the body and rotate relative to the body.

19. the first end member and the second end member are configured to rotate relative to the body between a first configuration, a second configuration, and a third configuration; In the first configuration, the first end member extends from the channel and the second end member does not extend from the channel; In the second configuration, the second end member extends from the channel and the first end member does not extend from the channel; The golf club head of claim 18 , wherein in the third configuration, the first end member and the second end member do not extend from the channel.

20. 18. The golf club head of claim 17, wherein the end member and the second end member each include a first side and a second side, the first side being longer than the second side.

Citation Information

Patent Citations

  • Iron type golf club

    JP2014000410A

  • Golf club structure and golf club head structure

    JP2014524343A

  • Golf club heads

    JP2016019731A

  • Golf club with adjustable weight assembly

    US20150306473A1

  • Golf club head with customizable center of gravity

    WO2007076304A2