This application claims the benefit of foreign priority to Japanese Patent Application No. JP2020-131908, filed Aug. 3, 2020, which is incorporated by reference in its entirety.
The present disclosure relates to a golf club head having an interior hollow portion therein.
The following Patent document 1 discloses a golf club head having a hollow portion therein. In order to improve rebound performance, the golf club head, on a head outer surface, is provided with a groove that extends along a peripheral edge of the striking face.
[Patent document 1] Japanese Unexamined Patent Application Publication 2010-279847
In recent years, it has been desired to provide a golf club head with further excellent rebound performance.
The present disclosure has been made in view of the above circumstances and has a major object to provide a golf club head that can be expected to further improve rebound performance.
In one aspect of the disclosure, a golf club head having a hollow portion therein, the golf club head includes a head main body including a striking face portion, a crown portion and a sole portion, the head main body being provided with a recess extending in a toe-heel direction of the club head on at least one of the crown portion and the sole portion, and a reinforcing rod being fixed to the recess and extending in the toe-heel direction of the club head.
In another aspect of the disclosure, the recess may have a groove shape depressed toward the hollow portion.
In another aspect of the disclosure, the recess may be an opening.
In another aspect of the disclosure, the reinforcing rod may include a toe-side fixing portion fixed to a toe side of the head main body, a heel-side fixing portion fixed to a heel side of the head main body, and a bar main body extending in the toe-heel direction between the toe-side fixing portion and the heel-side fixing portion, and the bar main body, at least partially, may be disposed in the recess.
In another aspect of the disclosure, an entire region of the bar main body may be disposed in the recess.
In another aspect of the disclosure, the bar main body and the recess may be separated from one another.
In another aspect of the disclosure, a filler made of an elastic material may be placed between the bar main body and the recess.
In another aspect of the disclosure, the recess may be provided on the sole portion.
In another aspect of the disclosure, the recess may be provided on the crown portion.
Some embodiments of the present disclosure will be explained below with reference to the accompanying drawings. It should be understood that the drawings contain exaggerated expressions and expressions different from the dimensional ratio of the actual structure in order to help the understanding of the present disclosure.
Further, the same or common elements are denoted by the same reference numerals throughout the specification, and duplicate explanations are omitted. Furthermore, the specific configurations shown in the embodiments and drawings are for understanding the contents of the present disclosure, and the present disclosure is not limited to the specific configurations shown.
[Definition of Reference State]
In
As used herein, the “virtual shaft central axis CL” is defined by the central axis of the shaft insertion hole 5a of the hosel 5 of the head 1. Unless otherwise noted, all club head dimensions described herein are taken with the head 1 in the reference state.
As used herein, in the reference state of the head 1, “front-rear direction” of the head (x-direction in
[Basic Structure of Head]
The head 1 in accordance with the present embodiment is configured as, for example, a wood type. Such a wood type head includes, for example, various heads called drivers, fairway woods, etc. In other embodiments, the head 1 may be configured as an iron type, a hybrid type, and the like.
The head 1 according to the present embodiment includes a head main body 10 and a reinforcing rod 20 (shown in
[Head Main Body]
The head main body 10, for example, includes the striking face portion 2, a crown portion 3, a sole portion 4 and the hosel 5 integrally, and has a hollow portion therein which is omitted in
The striking face portion 2 is formed on the front side of the head 1 and has a striking face 2a for striking a ball. The striking face 2a may be provided with a plurality of grooves or so-called facelines (not illustrated) extending in the toe-heel direction.
The crown portion 3 extends rearward from an upper edge of the striking face portion 2 to form a top surface of the head 1. The hosel 5 is provided on a heel-side of the crown portion 3. The hosel 5 has the shaft insertion hole 5a for fixing a club shaft (not illustrated).
The sole portion 4 extends rearward from a lower edge of the striking face portion 2 to form a bottom surface of the head 1. For convenience, the sole portion 4 is a portion that can be seen in the bottom view of the head except for the hosel 5.
The head main body 10, for example, may be made of a metallic material. As the metallic material, for example, stainless steel, maraging steel, titanium alloy, magnesium alloy, aluminum alloy, and the like may be suitable. The head main body 10 according to the present embodiment is made of a titanium alloy. A part of the head 1 (for example, the crown portion 3) may be made of a non-metallic material such as fiber reinforced plastic.
[Recess of Head Main Body]
As illustrated in
As used herein, as to the recess 6, “extending in the toe-heel direction” means that the longitudinal direction of the recess 6 is not only parallel to the toe-heel direction of the head 1 in the head bottom view (or head plan view) as the present embodiment but also inclined at an angle equal to or less than 30 degrees with respect to the toe-heel direction of the head.
In the present embodiment, the recess 6 is formed into a groove shape which is depressed toward the hollow portion (inner side of the head). The groove shape, for example, includes a groove bottom 6a and a pair of groove walls 6b.
The sole portion 4 provided with the recess 6 tends to deflect easily in the front-rear direction of the head. Thus, when hitting a ball, the head main body 10 can deflect significantly in the front-rear direction of the head starting from the recess 6, which helps to improve rebound performance of the head 1.
In order to further improve the above effect, the recess 6 preferably has a width W equal to or more than 5 mm, more preferably equal to or more than 6 mm, still more preferably equal to or more than 7 mm. Similarly, the recess 6 preferably has a length L equal to or more than 20 mm, more preferably equal to or more than 25 mm, still more preferably equal to or more than 30 mm.
When the recess 6 becomes excessively large, durability of the head 1 may deteriorate. From this point of view, the recess 6 preferably has a width W equal to or less than 20 mm, more preferably equal to or less than 17 mm, still more preferably equal to or less than 15 mm. Similarly, the recess 6 preferably has a length L equal to or less than 120 mm, more preferably equal to or less than 110 mm, even more preferably equal to or less than 100 mm.
[Reinforcing Rod]
As illustrated in
The reinforcing rod 20 according to the present embodiment has a rod shape defining a longitudinal direction thereof. In this embodiment, the reinforcing rod 20 extends in the toe-heel direction. As used herein, the reinforcing rod 20 “extends in the toe-heel direction” means that the longitudinal direction of the reinforcing rod 20 is not only parallel to the toe-heel direction but also inclined at an angle equal to or less than 30 degrees with respect to the toe-heel direction in a bottom view of the head (or a plan view of the head).
The reinforcing rod 20 can increase rigidity in the toe-heel direction of the head main body 10 and suppress deformation in this direction. In order to exert such effect, it is preferable that the reinforcing rod 20, for example, is made of a metallic material or a fiber reinforced plastic.
[Effect of Reinforcing Rod]
The impact energy when hitting a ball causes the head 1 to deflect in the front-rear direction of the head and to vibrate the sole portion 4 in the toe-heel direction (deformation). This vibration in the toe-heel direction corresponds to an energy loss from the viewpoint of improving rebound performance. The head 1 according to the present embodiment which includes the reinforcing rod 20 extending in the toe-heel direction can suppress the vibration in the toe-heel direction of the sole portion 4 when hitting a ball, so that the impact energy can intensively be used for deforming the head main body 10 in the front-rear direction. As a result, the head 1 according to the present embodiment can obtain a larger deflection along the flight direction of hit ball, and rebound performance of the head can further be improved.
[Example of Reinforcing Rod]
Preferably, the reinforcing rod 20, for example, is made of a material having a specific gravity greater than that of the head main body 10. In such an embodiment, the reinforcing rod 20 functions as a weight member which is capable of lowering the center of gravity of the head 1. In particular, the reinforcing rod 20 is preferably made of a metallic material having a specific gravity greater than that of the head main body 10. Further, by adjusting rigidity of the reinforcing rod 20, hitting sound of the head 1 can be adjusted, for example.
The bar main body 23 according to the present embodiment extends linearly, for example. The bar main body 23, for example, is formed into a cylindrical shape. In some other embodiments, the bar main body 23 may have various shapes such as a pipe, a prism, a triangular prism, and the like.
The toe-side fixing portion 21 and the heel-side fixing portion 22 are formed into a plate shape extending outwardly from both sides of the bar main body 23. Each of the fixing portions 21 and 22 has a thickness smaller than that of the bar main body 23. Each of the toe-side fixing portion 21 and the heel-side fixing portion 22 is fixed to the head main body 10 using a detachable fixing tool 30 such as a screw. Thus, the reinforcing rod 20 according to the present embodiment is detachable with respect to the head main body 10. Therefore, the head 1 according to the present embodiment allows users to attach and detach the reinforcing rod 20 to adjust rebound performance of the head. In some other embodiments, the toe-side fixing portion 21 and the heel-side fixing portion 22 may be fixed to the head main body 10 using a fixing means such as welding or adhesive.
As illustrates in
In the present embodiment, the recess 6 includes a pair of oblique walls extending obliquely with respect to the middle portion 6a1 from the middle portion 6a1 of the groove bottom 6a to each of the toe-side portion 6a2 and the heel-side portion 6a3. It is preferable that such a recess 6 can reduce rigidity of the head main body 10 in the front-rear direction, but it does not reduce rigidity in the toe-heel direction of the head main body 10 so much. This helps to suppress vibration of the head main body 10 in the toe-heel direction when hitting a ball.
At least a part of the bar main body 23, for example, is disposed in the middle recess. This aspect can reduce a height of the reinforcing rod 20 protruding from an outer surface of the sole portion 4. Thus, friction resistance to the ground as well as air resistance of the head 1 when swinging can be small so that reduction in head speed can be suppressed.
As apparent from
Further, in
As illustrated in
[Filler]
If there is a gap between the bar main body 23 and the recess 6, it may not comply with the Rules of Golf. From this point of view, it is preferable that a filler 40 is placed between the bar main body 23 and the recess 6. The filler 40, as illustrated in
Preferably, the filler 40 is made of an elastic material such that deflection in the front-rear direction of the head main body 10 when hitting a ball are not limited. As such an elastic material, for example, elastomer, resin, rubber and the like may be suitable.
The filler 40, for example, may be prepared as a certain shape in advance, and then may be placed between the reinforcing rod 20 and the head main body 10. In another aspect, after the reinforcing rod 20 is fixed to the head main body 10, the filler 40 may be formed by pouring a fluid material into the gap between the reinforcing rod 20 and the head main body 10 and solidifying it. In addition, instead of the filler 40, or together with the filler 40, a cover member (not illustrated) that covers the recess 6 may be attached to the head main body 10.
Preferably, the filler 40 and cover member, for example, may be made of a transparent material. In this case, users can see the reinforcing rod 20 through the filler 40 and/or the cover member. This may present some advantageous effects that the appearance of the head 1 may be improved and high functionality of the head 1 may be appealed to users.
[Modification of Recess]
In
As illustrated in
For example, receiving portions 6c and 6c for attaching the reinforcing rod 20 are formed on a toe side and a heel side of the recess 6, respectively. In a preferred embodiment, as illustrated in
The toe-side fixing portion 21 and the heel-side fixing portion 22 of the reinforcing rod 20 are fixed to the receiving portions 6c and 6c using the fixing tools 30. As a result, the bar main body 23 is fixed to the head main body 10 in a state separated from the recess 6 of the head main body 10.
Further, at least a part of the bar main body 23 of the reinforcing rod 20 is disposed in the recess 6. In this embodiment, the entire region of the bar main body 23 is disposed within the recess 6 (i.e., within the hollow portion i of the head main body 10).
Furthermore, in this embodiment, the toe-side fixing portion 21 and the heel-side fixing portion 22 of the reinforcing rod 20 are also located inside the recess 6 (i.e., inside the hollow portion i of the head main body 10). As a result, the reinforcing rod 20 does not protrude from an outer surface of the sole portion 4.
In this embodiment, since the recess 6 is an opening, the head 1 is more likely to deflect in the front-rear direction of the head when hitting a ball while suppressing vibration in the toe-heel direction of the head 1 by the reinforcing rod 20. Thus, rebound performance of the head 1 can further be improved.
The impact energy when hitting a ball causes the head 1 to deflect in the front-rear direction of the head 1 and also to vibrate the crown portion 3 in the toe-heel direction (deformation). This vibration in the toe-heel direction corresponds to an energy loss from the viewpoint of improving rebound performance. The head 1 according to the present embodiment which includes the reinforcing rod 20 extending in the toe-heel direction in the crown portion 3 can suppress the vibration in the toe-heel direction of the crown portion 3 when hitting a ball, so that the impact energy can intensively be used for deforming the head main body 10 in the front-rear direction. As a result, the head 1 according to the present embodiment can obtain a larger deflection along the flight direction of hit ball, and rebound performance of the head can further be improved.
Although not illustrated, the recess 6 and the reinforcing rod 20 may be provided on both the crown portion 3 and the sole portion 4.
In addition, a plurality of the recesses 6 and the reinforcing rods 20 may be provided in the crown portion 3 and/or the sole portion 4.
While the particularly preferable embodiments in accordance with the present disclosure have been described in detail, the present disclosure is not limited to the illustrated embodiments, but can be modified and carried out in various aspects within the scope of the disclosure.
Number | Date | Country | Kind |
---|---|---|---|
2020-131908 | Aug 2020 | JP | national |
Number | Name | Date | Kind |
---|---|---|---|
1453503 | Holmes | May 1923 | A |
5435551 | Chen | Jul 1995 | A |
6126556 | Hsieh | Oct 2000 | A |
6440006 | Johnson | Aug 2002 | B1 |
9987527 | Myers | Jun 2018 | B1 |
20030125128 | Reeves | Jul 2003 | A1 |
20060094526 | Reed | May 2006 | A1 |
20070265108 | Lin | Nov 2007 | A1 |
20080153619 | Tucker | Jun 2008 | A1 |
20100273574 | Yamamoto | Oct 2010 | A1 |
20100304887 | Bennett | Dec 2010 | A1 |
20100331102 | Golden | Dec 2010 | A1 |
20120094780 | Slaughter | Apr 2012 | A1 |
20130244808 | Bennett | Sep 2013 | A1 |
20140274453 | Curtis | Sep 2014 | A1 |
20150051012 | Galvan | Feb 2015 | A1 |
20150065265 | Motokawa | Mar 2015 | A1 |
20170165533 | Knutson | Jun 2017 | A1 |
20170252614 | Yi | Sep 2017 | A1 |
20170354852 | Bennett | Dec 2017 | A1 |
20170361185 | Henrikson | Dec 2017 | A1 |
20180099189 | Sanchez | Apr 2018 | A1 |
20180133565 | Hebreo | May 2018 | A1 |
20190290976 | Bennett | Sep 2019 | A1 |
20220032135 | Kato | Feb 2022 | A1 |
Number | Date | Country |
---|---|---|
1720080 | Jan 2006 | CN |
1720081 | Jan 2006 | CN |
101199893 | Jun 2008 | CN |
102202747 | Sep 2011 | CN |
102281927 | Dec 2011 | CN |
102794003 | Nov 2012 | CN |
202605659 | Dec 2012 | CN |
104338297 | Feb 2015 | CN |
209451246 | Oct 2019 | CN |
211752306 | Oct 2020 | CN |
113491863 | Oct 2021 | CN |
215841488 | Feb 2022 | CN |
2695836 | Mar 1994 | FR |
H11188123 | Jul 1999 | JP |
2005058461 | Mar 2005 | JP |
2007007063 | Jan 2007 | JP |
2010-279847 | Dec 2010 | JP |
2011125623 | Jun 2011 | JP |
2020518361 | Jun 2020 | JP |
2020531089 | Nov 2020 | JP |
100648197 | Nov 2006 | KR |
M310020 | Apr 2007 | TW |
200911326 | Mar 2009 | TW |
WO-2007076304 | Jul 2007 | WO |
Number | Date | Country | |
---|---|---|---|
20220032135 A1 | Feb 2022 | US |