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[0001] The invention relates to the field of golf. It relates more specifically to heads' of golf clubs of the “iron” type. It is aimed more specifically at irons which have a rear cavity, the geometry of which optimizes the distribution of mass while at the same time maintaining excellent striking qualities.
[0002] In general, golf clubs in which the head is made of cast or forged metal are known as “irons”. Iron heads all have a flat striking face, the inclination of which varies with the number of the iron in the set. Thus, irons with low numbers, that is to say from 1 to 4, also known as “long irons” have a striking face which is not as inclined with respect to the vertical as irons known as “short irons”, which have a high number in the set, that is to say 8, 9 and PW.
[0003] One of the objectives in improving the tolerance of an iron consists in distributing the weight of the head at the perimeter, around the center of the striking face. The center of the striking face, corresponding to the ideal zone of impact, also known as the “sweet spot” is wider, the more the weight is distributed around the perimeter.
[0004] This is why a certain number of clubs have already been proposed in which the head has a rear cavity delimited by walls extending backward behind the striking face. This cavity can also, as a side issue, accommodate various decorative or functional elements.
[0005] Amongst the walls delimiting the rear cavity, the lower wall forms what is generally known as the “sole”, the lower face of which faces the ground at the time of the strike. The cavity is also delimited by an upper wall that the golfer has in his field of view when he prepares the hit and strikes the ball. The cavity is also delimited by two lateral walls, the first being situated on the side of the head connecting to the shaft, also known as the “heel”, the second wall being situated on the opposite side, generally known as the “toe”. The set of walls delimiting the cavity is generally known as the “perimeter”.
[0006] The peripheral shape of the perimeter distributes some of the mass of the head at the perimeter, thus widening the “sweet spot” and increasing the tolerance of accuracy.
[0007] It has already been proposed for the perimeter to be given special shapes intended to improve the mass distribution still further, particularly by increasing the mass of the lower wall that forms the sole, and as a counterpart, by reducing the mass of the upper wall. Thus, document U.S. Pat. No. 5,048,834 describes a golf club which has a rear cavity, in which the lower wall of the perimeter has a protuberance directed toward the interior of the cavity, and which therefore increases the mass of the bottom part of the head. This solution increases the weight of the bottom part of the head, but has the disadvantage of stiffening the central zone of the striking face and therefore of reducing the “sweet spot” and therefore of providing results which are merely mediocre in terms of tolerance.
[0008] It has also been proposed, in document U.S. Pat. No. 5,437,456, for the walls of the perimeter to be hollowed out to the rear of the striking face, at the zone where they meet the bottom of the cavity. This solution decreases the mass of the head in the immediate vicinity of the striking face and offsets some of this mass further toward the rear of the striking face. The head described in that document also comprises slots opening onto the upper and lower surfaces of the head. These slots produce a marked separation between the upper, lower and lateral walls. This solution has the disadvantage of weakening the perimeter through the presence of these slots. The rear walls thus separated also have a greater tendency to vibrate, which may constitute an impediment for the golfer. In addition; the slots located on the upper face of the head are visible to the golfer, and are a visual annoyance to him.
[0009] The objective of the invention is to provide a golf club head which simultaneously makes it possible to distribute the mass within the perimeter with preference to the lower wall forming the sole, while at the same time maintaining a good width of sweet spot in order to ensure good tolerance. It is also important that such a distribution is optimized for each club of a set.
[0010] The invention therefore relates to a set of golf clubs of the “iron” type, the rear face of the head of each club has a cavity delimited by walls, namely at least one lower wall forming the sole and an upper wall.
[0011] The upper wall has several faces, namely a rear face, an upper face, a lower face facing the cavity and lateral faces.
[0012] According to the invention, several golf clubs of the set has a head which has at least one recess made in the upper wall and opening onto a single face of said upper wall, away from the upper and lower faces.
[0013] In other words, the upper wall delimiting the cavity is hollowed out to reduce the weight of this upper part. In consequence, the distribution of mass within the perimeter privileges the lower wall. By opening onto a single wall, the characteristic recesses do not weaken the perimeter.
[0014] The recesses made in the upper wall may open at various points, except for the upper face, this being so as not to be visible in the field of view of the golfer, so as not to disturb him as he prepares and makes the hit.
[0015] Thus, the characteristic recess or recesses may open either onto the rear face of the upper wall or alternatively onto a lateral face of this wall, that is to say onto the lateral face of the head.
[0016] In other words, the opening of these recesses is located either at the rear of the head or on one of these lateral sides.
[0017] If the recess opens onto a lateral face of the head, it will be preferable, for manufacturing reasons, for this to be the lateral face on the toe side of the head.
[0018] The characteristic recesses may adopt highly varying shapes, if they open onto a single face of the upper wall. Thus, the recess may be elongate in the main direction of the upper wall. In other words, in the case of recesses opening onto the rear face of the upper wall, the opening of the recess has a longer dimension which is more or less parallel to the upper wall, or which follows its slight curvature when the latter wall is not straight.
[0019] When the recess is produced in such a way that it opens onto a lateral face of the club head, it is then hollowed into the actual thickness of the wall, parallel to the upper and lower faces of the upper wall, and also parallel to the striking face.
[0020] In one particular embodiment, the recess may be cylindrical, whether this be when it opens onto the rear face of the upper wall or onto a lateral wall thereof. In this case, it may, for example, be achieved by machining by milling, drilling, or alternatively directly by injection.
[0021] In order to prevent the recess from becoming filled with earth or any other material that would alter the distribution of mass, it will be preferable for the recess to be filled with a low-density material, such as a polyurethane foam for example, so as to prevent the intrusion of foreign bodies. The filled material is chosen so that it has only an imperceptible effect on the mass distribution.
[0022] Advantageously in practice, the volume of the recess represents between 0.4% and 5% of the volume of the head. The volume of the recess is to be understood as meaning the volume of material that would need to be introduced into the recesses for the upper wall to have a uniform external shape. This corresponds to the volume removed from the upper wall and transferred to the lower wall so as to lower the center of gravity of the head.
[0023] For playing golf, a golfer has a set of irons of different characteristics. There are generally long irons, carrying a number from 1 to 4, intended for long-distance hitting, intermediate irons numbered from 5 to 7, and short irons numbered 8, 9 and PW intended for precision shots.
[0024] According to the invention, the volume of the recess(es) and/or their position inside the upper wall is variable within the set, so that the position of the center of gravity of the head varies from one club to another. These geometrical characteristics vary in the same sense within the set.
[0025] Thus, in a particularly advantageous embodiment, the distance separating the recess or recesses from the hosel may increase or decrease with the club number. The distance between the recesses and the hosel is to be understood as meaning the distance from the barycenter (or center of gravity) of the recess or of the set or recesses to the axis of the shaft.
[0026] Thus, in a first set, this distance increases with the club number. In other words, the distance separating the club shaft from the characteristic recess increases from long irons to short irons. By virtue of this progression, and for a constant recess volume, the shortest irons have a lower moment of inertia with respect to the axis of the shaft.
[0027] Conversely, in another set, this distance may decrease with the club number. In other words, the distance separating the shaft of the club from the characteristic recess increases from long irons to short irons. By virtue of this increase, and for a constant recess volume, the longest irons have a center of gravity which is lowered by comparison with the short irons, because of the upward inclination, from the hosel, of the upper wall of the head.
[0028] In another alternative form of embodiment, the volume of all the recesses may increase or decrease with the club number. In other words, the total volume of the recesses varies between long irons and short irons. The variation in this volume may be achieved in particular by varying the depth of the recesses or alternatively by increasing their aperture on the face of the wall onto which they open.
[0029] If the recess is transversal and opens onto a lateral face of the head, this recess may have a greater or lesser depth.
[0030] In another alternative form regarding the progressiveness of the effect of the characteristic recesses, these may decrease in number with the club number in the set. In other words, the number of recesses decreases from long irons to short irons.
[0031] In another alternative, the distance separating the recess or recesses from the upper face of the upper wall varies from one club to another. In other words, the recesses may be located at different height within the upper wall, in order to modify the position of the center of gravity of the head.
[0032] The way in which the invention is achieved and the advantages that stem therefrom will become clearly apparent from the description of the embodiments which follow, in support of the appended figures, in which:
[0033]
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[0041]
[0042]
[0043] As already stated, the invention relates to a head of a golf club of the “iron” type. In general, and as illustrated in
[0044] In its rear part, the head (
[0045] More specifically, this perimeter (
[0046] an upper face (
[0047] a lower face (
[0048] a rear face (
[0049] lateral faces (
[0050] The upper wall (
[0051] In the form illustrated in FIGS.
[0052] As illustrated in
[0053] The walls (
[0054] As illustrated in
[0055] The position and dimensions of each of these recesses (
[0056] Of course, the invention is not restricted to the sole embodiment illustrated in FIGS.
[0057] Nor is the shape of the recesses restricted to this shape illustrated in
[0058] The diameter Φ and number of these recesses (
[0059] Thus, the recesses made in this way in the upper wall (
[0060] As already stated, the characteristic recesses may be produced according to other forms of embodiment such as those illustrated in FIGS.
[0061] The influence of the recess (
[0062] By increasing the length L of the recess (
[0063] In practice, the length of the recess (
[0064] As already stated, the characteristic recesses differ from one club to another within the same set.
[0065] Thus, and as illustrated in
[0066] The intermediate club is such that the number
[0067] The barycenter of the three recesses (
[0068] In the same way, the number
[0069] Of course, the shapes and sizes of the various recesses (
[0070]
[0071] The intermediate number
[0072] In the same way, the number
[0073] Another way of varying the position of the center of gravity of the various clubs within a set is illustrated in figures
[0074] In the same way, the head (
[0075] Of course, the various methods of varying the number, the position and the volume of each of the recesses can be combined within one and the same set in order to optimize the variation in the center of gravity of each head.
[0076] It is apparent from the foregoing that the club heads according to the invention have the advantage of allowing a distribution of the mass of the perimeter of the head adapted for each club of the same set in order to optimize its performance, while at the same time maintaining adequate head rigidity.
[0077] The way in which this distribution of mass is optimized can be varied in various ways within one and the same set in order to optimize the performance of each iron.