1. Field of the Invention
The present invention relates to a weight assembly for a golf club head. In particular, the present invention relates to a weight assembly that is detachably mounted to a golf club head.
2. Description of Related Art
Conventionally, a weight is applied to a golf club head for adjusting a center of gravity of the golf club head. The weight can be reliably fixed inside a body of the golf club head by welding, brazing, or gluing. Disadvantageously, changes in the weigh for adjusting of the center of gravity of the golf club head cannot be achieved due to a fixed relationship between the weight and the golf club head.
U.S. Patent Publication No. 2002/0137576A1 discloses a golf club head with adjustable weights, wherein at least one screw or weight is thread-engaged in a corresponding number of tubular sleeves in the club head, and a lid is fastened to the opening of each tubular sleeve for better appearance. Each weight can be mounted in the associated tubular sleeve and adjusted to a desired depth therein for determining the center of gravity of the club head, as the weight has a length smaller than that of the associated tubular sleeve.
In readjusting operation, the user must initially remove the lids and adjust the screws (weights) one by one and then resealing the lids. Further, there is a widely adjustable range of both of the lids and the weights with respect to the depths of the tubular sleeves. As a result, it is difficult to control the precise location of the center of gravity. Further, a hitting stress may loosen the screw-engagement of the screws with the golf club head during striking a golf ball, resulting in odd sounds and/or a change in the center of gravity. Further, manufacturing of the tubular sleeves, the weights, and the lids require relatively high precision, resulting in complicated manufacturing processes and difficulty.
An object of the present invention is to provide a weight assembly for a golf club head that allows easy adjustment of the center of gravity of the golf club head.
Another object of the present invention is to provide a weight assembly that can be mounted to a golf club head via a simple assembling procedure.
A further object of the present invention is to provide a weight assembly that includes a vibration-absorbing member for improving the vibration-absorbing effect.
Still another object of the present invention is to provide a weight assembly that provides a golf club head with reliable assembling effect.
Yet another object of the present invention is to provide a weight assembly for a golf club head with increased convenience to adjustment of the center of gravity.
Still another object of the present invention is to provide a weight assembly for a golf club head with more flexible adjustment of the center of gravity.
In accordance with a first aspect of the present invention, a golf club head comprises a body, a weight, and a positioning resilient member. The body includes an engaging seat having a perimeter wall. A perimeter groove is defined in the perimeter wall. The weight is mounted in the engaging seat and includes a main body having a perimeter wall with a plurality of latching grooves corresponding to the perimeter groove of the engaging seat. The positioning resilient member is initially mounted in the perimeter groove of the engaging seat prior to receiving the weight. The positioning resilient member includes at least one engaging point pressing against a perimeter bottom wall of the perimeter groove. The positioning resilient member is further engaged in the latching grooves of the weight to thereby resiliently retain the weight in the engaging seat.
In accordance with a second aspect of the present invention, a golf club head comprises a body, a weight, a positioning resilient member, and an unlatching member. The body includes an engaging seat having a perimeter wall. A perimeter groove is defined in the perimeter wall. The weight is mounted in the engaging seat and includes a main body having a perimeter wall with a plurality of latching grooves corresponding to the perimeter groove of the engaging seat. The positioning resilient member is initially mounted in the perimeter groove of the engaging seat prior to receiving the weight. The positioning resilient member includes at least one engaging point pressing against a perimeter bottom wall of the perimeter groove. The positioning resilient member is further engaged in the latching grooves of the weight to thereby resiliently retain the weight in the engaging seat when assembled. The unlatching member includes a plurality of unlatching rods. Each unlatching rod can be inserted into an associated one of the unlatching holes of the weight in attempting to expand the positioning resilient member radially outward, thereby allowing removal of the weight from the engaging seat.
Preferably, each unlatching rod includes an inclined face on a distal end thereof for pushing the positioning resilient member radially outward, thereby disengaging the positioning resilient member from the latching grooves of the weight and allowing removal of the weight.
In an embodiment of the invention, the engaging seat includes a bottom wall, and a vibration-absorbing member is mounted between the bottom wall of the engaging seat and the weight.
In another embodiment of the invention, the engaging seat includes a bottom wall from which an extension extends longitudinally inward. The weight includes a shank that extends from the main body and that is received in the extension of the engaging seat. The extension of the engaging seat includes an opened or closed bottom end. A vibration-absorbing member may be mounted to the closed bottom end of the extension. In an embodiment, the shank of the weight includes a plurality of sections having different lengths. In another embodiment, the shank of the weight includes a plurality of sections having different specific densities.
Preferably, the main body of the weight includes a plurality of longitudinal unlatching holes extending from a first side of the main body through a second side of the main body. Each longitudinal unlatching hole is in communication with an associated one of the latching grooves of the main body, forming a cruciform groove.
Preferably, the engaging seat includes an opening that is triangular, rhombic, or polygonal, and the main body of the weight has a shape corresponding to that of the opening of the engaging seat.
Other objects, advantages and novel features of this invention will become more apparent from the following detailed description when taken in conjunction with the accompanying drawings.
a is a perspective view illustrating a further modified embodiment of the weight of the weight assembly in accordance with the present invention;
b is a perspective view illustrating still another modified embodiment of the weight of the weight assembly in accordance with the present invention; and
c is a perspective view illustrating yet another modified embodiment of the weight of the weight assembly in accordance with the present invention.
The golf club head comprises a body 1, a weight 2, a positioning resilient member 3, and a vibration-absorbing member 4. The weight 2 can be mounted to and fastened in the body 1 in assembling operation, or unfastened and detached from the body 1 by an unlatching member 5 in disassembling operation. The body 1 is made of stainless steel, carbon steel, alloy steel, Fe—Mn—Al alloy, or carbon fiber by casting, forging, or mechanical processing. In the illustrated embodiment, the body 1 is of a wood type club head. Detail description of the body 1 is omitted to avoid redundancy.
The body 1 includes an engaging seat 11 in a sole thereof. The engaging seat 11 is preferably a recessed portion adjacent to a rear of the body 1. Preferably, the engaging seat 11 includes an opening that has a symmetric shape, such as triangular, square, rhombic, polygonal (such as pentagonal), or of other symmetric shape. The engaging seat 11 includes a perimeter wall delimiting a space for accommodating the weight 2, with a perimeter groove 111 being defined in the perimeter wall. Further, the engaging seat 11 includes an extension 113 extending longitudinally inward from a bottom wall 112 of the engaging seat 11 into the body 1. Preferably, the extension 113 is cylindrical and has an opened bottom end.
The weight 2 is made of a metal material the same as or different from that of the body 1. Preferably, the weight 2 is made of tungsten, iron, nickel, titanium, copper, or a combination thereof. The weight 2 includes a main body 21 and a shank 22 extending from the main body 21. The main body 21 has a shape corresponding to that of the opening of the engaging seat 11. Preferably, the main body 21 is triangular, square, rhombic, polygonal (such as pentagonal), or of other symmetric shape.
The main body 21 includes a perimeter wall on which a plurality of latching grooves 212 are defined. Further, the main body 21 includes a plurality of longitudinal unlatching holes 211 extending from a first side of the main body 21 through a second side of the main body 21 that is opposite to the first side of the main body 21. Each unlatching hole 21 is in communication with the associated the latching groove 212, so that the combination of the unlatching hole 21 and the latching groove 212 commonly forms a substantially cruciform groove (see
The shank 22 has a shape corresponding to that of the extension 113 of the engaging seat 11, such as cylindrical. The shank 22 has a predetermined length according to the need of adjustment of the center of gravity and moment of inertia.
In the embodiment illustrated in
The vibration-absorbing member 4 has a predetermined thickness and is made of a vibration-absorbing material, such as rubber. The vibration-absorbing member 4 is mounted between the bottom wall 112 of the engaging seat 11 and the weight member 2 to provide a vibration-absorbing effect. Preferably, the vibration-absorbing member 4 has a central hole through which the shank 22 of the weight 2 extends into the extension 113 of the engaging seat 11 for creating an assembled relationship.
Still referring to
In assembly, as illustrated in
Thus, the weight 2 can be rapidly and reliably mounted in the engaging seat 11 for adjusting the center of gravity of the golf club head. Further, the vibration-absorbing member 4 can also be mounted in the engaging seat 11 for providing a vibration-absorbing effect to thereby avoid generating odd sounds. In the illustrated embodiment, the positioning resilient member 3 can advantageously prevent from falling off the weight 2 and the vibration-absorbing member 4 from the engaging seat 11 during striking a golf ball. Since the opening of the engaging seat 11 and the main body 21 are not circular, rotational movement of the weight 2 about the engaging seat 11 is prevented, further improving the positioning effect for the weight 2.
Referring to
a, 11b, and 11c show other modified embodiments of the weight. The shanks 22 of the weights 2 in
While the principles of this invention have been disclosed in connection with specific embodiments, it should be understood by those skilled in the art that these descriptions are not intended to limit the scope of the invention, and that any modification and variation without departing the spirit of the invention is intended to be covered by the scope of this invention defined only by the appended claims.
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