The present invention relates to a golf club head and a method for manufacturing the same, and more particularly to a golf club head in which strength and hardness of a face surface is increased by pressing crystal grains at the face surface to fine the crystal grains thereby obtaining high hardness and forming fined fiber flows, and a method for manufacturing the same.
Ball hitting sound and ball hitting feeling are major factors of the properties of golf clubs. For an iron club head, a head manufactured by hot forging of low-carbon steel, that is, manufactured by forging so called soft iron is regarded to provide good ball hitting sound and ball hitting feeling. The main two types of the shape of the iron club head are a muscle back type in which mass is not distributed to the periphery and a cavity back type in which mass is distributed to the periphery and a cavity is formed on the rear surface side of the face to increase the sweat area.
It is generally regarded that a muscle back type is superior than a cavity back type as for hitting sound and hitting feeling. This is because it is said that robust structure (thickness), manufacturing method (fining), softness of material are mixed to generate an effect that a soft feeling can be obtained while providing a stable response. Mass is distributed to the periphery of the head in a cavity back type, so that the thickness of the face is relatively thinner than that of a muscle back type.
Accordingly, it is said that a cavity back type does not provide good ball hitting feeling relatively. Since it is also said that the sweet area of a muscle back type is smaller than that of a cavity back type, a muscle back type is considered to be favorable for the experienced. This is due to necessity for a shot of a sliced ball or a hooked ball and handling ability. However, it is required to further improve ball hitting sound and ball hitting feeling also in a cavity back type. In order to improve ball hitting properties, superior advantages of a muscle back type should be applied also to a cavity back type.
To this end, it is effective to increase the hardness of the face without quenching to provide a golf club which can give good shot feeling. The present applicant proposed a golf club in which a plurality of recesses are formed by forging on the rear surface of the face to improve the strength of the face in order to reduce the thickness of the face and to increase the sweet area in a golf club head (see Japanese Patent Application Laid-open No. H9-38252: Patent Document 1). The invention described in Patent Document 1 achieved to reduce the thickness of the face but failed to improve ball hitting feeling. A golf club was also proposed in which the hitting surface of the face is modified to have hardness distribution of a striped pattern along score lines in order to apply large rolling capability to a ball for long distance (e.g., see Japanese Patent Application Laid-open No. H10-108927: Patent Document 2).
In the invention described in Patent Document 2, two or more materials having different hardness are overlapped and joined by diffusion or subjected to heat treatment by irradiation of laser beam for heat treatment in a striped manner to give hardness distribution of a striped pattern to the hitting face. Since heat treatment is performed with laser beam in order to increase the hardness, composition near the surface of the hitting face is hardened but forging effects may be reduced by the heat of the laser beam. Moreover, a technique for distributing fiber flows in a face portion is known (e.g., see Japanese Patent Application Laid-open No. 2009-261908: Patent Document 3). Further, a golf club head is known in which the face surface is subjected to carburizing treatment to increase surface hardness and hardness of the face surface is differentiated in a stepwise manner in the thickness direction (e.g., see Japanese Patent Application Laid-open No. 2005-319019: Patent Document 4). Furthermore, a case is known in which the face portion is subjected to blast processing after engraving score lines (e.g., see Japanese Patent Application Laid-open No. 2004-141277: Patent Document 5).
In recent years, attention has been paid to ball hitting sound and ball hitting feeling with the change of the rule about spring-like effect (SLE). That is, comfortability of ball hitting sound and ball hitting feeling has been emphasized as well as rebound characteristics, directional property, carry, etc. In order to quantitatively evaluate the ball hitting sound and ball hitting feeling, a research for measuring bending strain of a shaft and vibration transmitted to hand has been conducted. However, there is no decisive definition as for ball hitting sound and ball hitting feeling that brings confotability. It has been attempted to give quantitative evaluation in various ways in addition to giving qualitative evaluation by players. As an example, it has been known that vibration of a shaft in circumferential direction is measured with a three-axis acceleration meter and the data is analyzed to evaluate ball hitting feeling (e.g., see Japanese Patent Application Laid-open No. 2008-125722: Patent Document 6). Also, in Patent Document 3, results of evaluation by ball hitting sound whose frequency is relative low and which leaves lingering sound are also disclosed. In any case, to increase the hardness of the face without quenching is effective for ball hitting sound and ball hitting feeling, so that a proposal concerning the relationship has been desired.
The present invention has been conceived in light of the above-mentioned technical back ground and attains the objects to be described below.
An object of the present invention is to provide a golf club head improved in ball hitting sound and ball hitting feeling even when the thickness of the face portion is thin by subjecting the face to forging for forming portions of irregularity in a golf club head manufactured by forging metal such as low carbon steel and having a face and a neck, in particular, in a golf club head of a cavity back type in which a cavity is formed on the side opposite to the hitting surface of the face and a method for manufacturing the same. Another object of the invention is to provide a golf club head that is highly hardened in the hitting face by pressing crystal grains near the surface of the hitting face for fining, high hardening and formation of fiber flows parallel with the hitting face, and a method for manufacturing the same.
The invention is equipped with the following means to achieve the above mentioned objects.
According to a first aspect of the invention, a golf club head is provided in which a cavity (2c) is formed on the rear side of the face (2), wherein a hitting surface (2a) to hit a ball and/or the surface opposite to the hitting surface (2a) of the face (2) are/is partially forged, and a plurality of hardened portions, which are harder by at least 10% than the Vickers hardness (Hv) of the base material constituting the hitting surface (2a) within the range of 1.0 mm in depth from the forged surface, and a plurality of portions, which are less hard relative to the hardened portions and harder than the hardness (Hv) of the base material, are distributed in the face (2).
According to a second aspect of the invention, a golf club head is provided, in the first aspect of the invention, wherein a plurality of portions of irregularity are formed partially on the hitting surface (2a) and/or the surface opposite to the hitting surface (2a), and said plurality of portions of irregularity have configuration, as viewed from the front side of the hitting surface, selected from plurality of circular shapes, plurality of spherical shapes, linear band shapes and waved band shapes and each projecting portion of the portions of irregularity has a cross-sectional shape of a mountain-like triangle or a trapezoid.
According to a third aspect of the invention, a method for manufacturing a golf club head, which is manufactured by hot forging of low-carbon steel and in which a cavity (2c) is formed on the rear side of the face (2), is provided; the method comprising the steps of: forming a plurality of portions of irregularity (5) by press processing during the hot forging in order to form the hitting surface (2a) for hitting a ball on the face (2); and flattening the forged surface of the portions of irregularity after forming the portions of irregularity so as to fine crystal grains in the portions of irregularity and the areas therearound and to form fiber flows thereby increasing strength and hardness of the hitting surface.
According to a fourth aspect of the invention, a method for manufacturing a golf club head is provided, in the third aspect, wherein the portions of irregularity have configuration, as viewed from the front side of the hitting surface, selected from plurality of circular shapes, linear band shapes and waved band shapes and each projecting portion of the portions of irregularity has a cross-sectional shape of a mountain-like triangle or a trapezoid.
According to a fifth aspect of the invention, a method for manufacturing a golf club head is provided, according to the third or fourth aspect, wherein an iron golf club is manufactured by the method in which only projecting portions are crushed to be flat by cold forging after forming the portions of irregularity and thereafter the hitting face is subjected to machining process to smooth the surface by cutting processing, and score lines are formed on the hitting surface by processing by coining after the machining process.
In the golf club head according to the invention, the hardness of the ball hitting face can be increased without quenching by forming portions of irregularity on the hitting surface of the face and performing forging for crushing and fining crystal grains. Furthermore, the strength of the face can be increased by forming fiber flows in the face during the process of forging. As a result the golf club head has toughness, can give pleasant shot feeling and becomes suitable in ball hitting sound and ball hitting feeling.
Since it is not necessary to perform quenching in the method for manufacturing the golf club head according to the invention, manufacturing of the golf club head is easy. Moreover, by performing machining process and score line forming process after the process of forging, manufacturing of the golf club head becomes easy. Furthermore, hardness of the hitting face is increased and fiber flows are formed in the process of forging, so that the strength of the hitting face can be increased.
An embodiment of the invention will be described in detail with reference to the accompanying drawings. The main parts of a golf club head body is a metallic iron head as illustrated in
It is conventionally said that the muscle back type is favorable for experienced because ball hitting sound, ball hitting feeling and handling ability are good. On the other hand, the cavity bag type is a type in which the thickness is smaller and the sweet area is larger than those of the muscle back type, so that the cavity bag type pursues easier play and has been widespread. Besides, there is a hollow type in which a hollow is provided in the iron head.
Although description with reference to a drawing is omitted, the head of the embodiment is formed by subjecting a round bar of soft low-carbon steel to deformation working through hot forging. The round bar is forged with a punch or a roll while rotating or reversing the round bar to perform stretch processing for manufacturing. So called fiber flows are generated in the forging process. Alternatively, fiber flows (metal flows) are formed in the step of manufacturing the round bar. In the forging, a dies (not shown) is generally used to perform rough forge molding by plurality of times with a punch, etc. As shown in
That is, the portions of irregularity 5 are formed by press processing of hot forging with the dies shape of a punch 4 secured to the ram of the pressing machine. Next, precision forging, namely precision cold forging is performed through cold forging. In the embodiment, a 500 ton-hydraulic press was used as the press machine used in the precision cold forging. The pressing face of the punch 6 of the hydraulic press is flat as shown in
That is, the portions of irregularity 5 formed by press processing with the punch 4 shown in
Press processing by the punch 6 is deformation processing for crushing only the projecting portions among the portions of irregularity 5 and is precision cold forging for smoothing the surface in order to generate difference in hardness. In the press processing method, only the projecting portions 5a of the face 2 is pressed to be crushed. That is, in the press processing, the thick portions which are the projecting portions 5a are pressed to be sunk into the head 1, which fines the metal crystal grains. Herewith, the hardness of the projecting portions 5a, that is, the hardness of the scattered circular shapes and therearound are increased. Although the face surface 2a becomes flat by the press processing, some roughness (gentle waved irregularity) still remains due to spring back effect or the like.
The case when forming the projecting portions each having a circular shape has been described above. Likewise, the press processing may also be applied to the case when plurality of recessed portions are formed on the face surface in linear configuration. The description has been made above on the premise that press processing for forming the portions of irregularity is performed on the front surface of the face. Similar press processing may be performed also on the surface opposite to the front surface in order to obtain similar effects. That is, similar difference in hardness can be provided on the front surface of the face even when press processing is performed on the rear surface of the face. In this case, although there are restrictions of the thickness and shape in the face portion, forging can be easily performed, so that the face having difference in hardness along fiber flows can be obtained similar to the front surface of the face. Since the forging method of the rear surface is similar to that of the front surface, the detailed description is omitted here.
After the cold press processing, in order to remove the above-mentioned roughness of difference in level (irregularity), machining of milling is performed on the face surface 2a for flattening (machining process). The machining process is not limited to milling but other processing methods may be available. Although the flattening may be made by grinding processing, the grinding processing may destroy fined composition to lower the hardness because the processing temperature becomes locally high. Accordingly, it is preferable to avoid grinding processing. Herewith, the face surface 2a after machining process becomes a surface in which high hardness portions 2e with crystal grains fined and low hardness portions 2f with hardness lower than the projecting portion 5a side coexist in a mixed manner. Hardness of the low hardness portion 2f is increased by some degree by the influence of the press processing to the projecting portion 5a side and is not the hardness of the original material.
While projecting portions are formed on the above-mentioned face surface 2a, press processing may be performed so as to form recessed portions which are inverse in irregularity, thereby allowing partial increase in the hardness of the face surface in a same manner. The face surface 2a partially having high hardness has hardness partially higher as compared with the conventional face surface having high hardness in which quenching is performed on the entire surface, but becomes a soft and tactile face surface as a whole. After the machining process for flattening, score lines 2b are formed on the face surface 2a by coining processing (sore line forming process). Furthermore, the fiber flows on the face surface 2a is further advanced due to the coining processing for forming the score lines, which provides the head 1 having high density and strength.
Therefore, the face surface 2a provides soft feeling regardless of the hardness when hitting a ball. Furthermore, the head 1 gives a good influence on ball hitting sound and ball hitting feeling in combination with plurality of high fiber flows having high density from the face 2 to the neck 3. Herewith, even for the head of a cavity back type having thin thickness at the center portion, the head can keep strength and provide good ball hitting sound and ball hitting feeling. While the embodiment of the invention has been described above, the invention is not limited thereto but it goes without saying that modifications may be made within the range without departing from the spirit and gist of the invention.
While the description has been made on the assumption that the present invention is applied in particular to a cavity back type, the present invention may be applied to an iron golf club of a muscle back type. Moreover, the shape of the portion of irregularity is not limited but it goes without saying that the invention may also be applied to shapes other than ones mentioned above to be illustrated in the following working examples. Furthermore, the invention may also be applied to a compound type in which a face portion having a plate like shape and a head body portion are separately formed and joined. Furthermore, as for the material, not only so called soft iron such as S20C and S25C (Japanese Industrial Standards) which are SC steel, but also S45C and S50C (Japanese Industrial Standards) whose carbon content is great among the same SC steel, special steel, stainless steel, titanium, titanium alloy, etc. are applicable.
According to the data, the hardness after press processing is increased by 10% to 16% in hardness proportion in Vickers hardness (Hv) as compared with the hardness before press processing within the range of 1 mm in depth.
Data illustrated in
The data in
Each numerical data illustrated in
The numerical data shown in
Data of embossment hardness is for the process where the recessed portion is formed by using a linear shape. From the data, it was confirmed that hardness tends to increase to generate hardness difference with respect to the material depending on the depth position. It was confirmed as a result that the hardness is different depending on the forged portion of the portions of irregularity. Here, the hardness of the material was 144 Hv at the position of 0.2 mm.
While description has been made on the premise of an iron golf club as to the above-mentioned working examples, the technical concept of the invention can also be applied to the face surface of a metal wood such as a driver. An α-β type titanium alloy round bar was hot forged to forma face portion of a driver head. Plurality of projecting portions having a hemisphere shape was formed on the rear surface thereof. The projecting portions are crushed by precision cold forging. The hardness was such as 307 Hv for the base material, 339 Hv for the projecting portion and 312 Hv for an intermediate portion between the projecting portions.
Number | Date | Country | Kind |
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2011-257083 | Nov 2011 | JP | national |
Number | Name | Date | Kind |
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5026520 | Bhowal et al. | Jun 1991 | A |
5735755 | Kobayashi | Apr 1998 | A |
20030109328 | Chen | Jun 2003 | A1 |
Number | Date | Country |
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09-038252 | Feb 1997 | JP |
10-108927 | Apr 1998 | JP |
2004-141277 | May 2004 | JP |
2005-319019 | Nov 2005 | JP |
2008-125722 | Jun 2008 | JP |
2009-261908 | Nov 2009 | JP |
Number | Date | Country | |
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20130143690 A1 | Jun 2013 | US |