PUTTING TRAINING DEVICE
20190255401 ยท 2019-08-22
Inventors
Cpc classification
A63B53/0441
HUMAN NECESSITIES
A63B53/028
HUMAN NECESSITIES
A63B53/08
HUMAN NECESSITIES
A63B60/32
HUMAN NECESSITIES
A63B71/0622
HUMAN NECESSITIES
International classification
A63B71/06
HUMAN NECESSITIES
A63B53/08
HUMAN NECESSITIES
Abstract
A golf club device for improving one's golf abilities is disclosed. The device includes a head, and a shaft where the head is rotatably connected to at least an upper portion of the shaft. Rotation is achieved with an angular rotation mechanism. The angular rotation mechanism may include a variable resistance feature. The angular rotation mechanism may be positioned in or on the head, or it may be positioned in the shaft. One or more visual alignment indicators may also be employed.
Claims
1. A putter comprising: a shaft; a head having a shape that is not symmetrical about a center between a front surface and a back surface of the head; an angular rotation mechanism including a rolling element located in the head to allow the head to rotate relative to the shaft in a plane parallel to a bottom surface of the head; and a variable resistance mechanism to adjust the resistance of rotation of the angular rotation mechanism.
2. The putter of claim 1, wherein the variable resistance mechanism is configured to vary an amount of rotational resistance of the angular rotation mechanism such that the amount of rotational resistance can be variably increased or variably decreased; wherein when the resistance of rotation of the angular rotation mechanism is variably increased by the variable resistance mechanism, the degree of rotation of the head is decreased in response to a miss hit of a golf ball, which results in a decreased amount of rotation of the head, wherein when the resistance of rotation of the angular rotation mechanism is variably decreased by the variable resistance mechanism, the degree of rotation of the head is increased in response to a miss hit of the golf ball, which results in an increased amount of rotation of the head
3. The putter of claim 2, wherein the resistance of rotation of the angular rotation mechanism can be increased to a level of resistance such that the head does not rotate relative to the shaft.
4. The putter of claim 1, wherein the angular rotation mechanism comprises a bearing.
5. The putter of claim 1, wherein the grip includes a plurality of uniformly spaced graduation marks.
6. The putter of claim 1, wherein the head is detachably coupled to the shaft.
7. The putter of claim 1, wherein the rolling element is embedded in the head flush with or below a top surface of the head.
8. The putter of claim 1, wherein the top surface of the head is planar.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0020] The accompanying drawings, which are included to provide a further understanding of the disclosure and are incorporated in and constitute a part of this specification, illustrate embodiments of the disclosure and together with the description serve to explain the principles of the disclosure.
[0021] In the drawings:
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DETAILED DESCRIPTION OF THE ILLUSTRATED EMBODIMENTS
[0041] Reference will now be made in detail to exemplary embodiments of the present invention as illustrated in the accompanying drawings. The disclosed device, in accordance with these embodiments, provides direct sensory feedback to a golfer working to improve his or her putting through the use of a TFT (Tempo-Focus-Trust) approach. Mastering these three elements will improve the golfer's putting.
[0042] Tempo is the rate of motion of the putting stroke including the backswing, forward swing through impact with the golf ball, and follow through after impact. The stroke tempo may vary based on the length of the putt, location of the golf ball relative to the hole, and conditions of the putting surface. The proper acceleration and deceleration of the putter head through the stroke may be learned by using the disclosed training device.
[0043] Variable rotational resistance adjustment provides a means for a golfer to fine tune and progressively improve the putting tempo. By virtue of the variable rotational resistance, the sensitivity of the putting head to rotation caused by an improper stroke can be adjusted based on the ability of the golfer. A novice golfer with poor putting stroke mechanics may become discouraged or frustrated at their inability to show or maintain improvement. To mitigate this, a golfer may increase the rotational resistance to de-sensitize the putter head's reaction to improper strokes and be more forgiving of miss hits. As a golfer's ability improves, the rotational sensitivity can be increased to require a more precise putting stroke without causing putting head rotation.
[0044] Focus refers to the golfer's attention to the putting line. The direction of the line a ball will travel following impact with the putter head is extremely important. A club head that deviates from the optimal orientation relative to the putting line during the stroke becomes obvious to the golfer using the disclosed device because the ball will travel off the intended line and not at the intended speed. The disclosed device trains a golfer's muscles to maintain the proper club head orientation through the swing path to achieve the desired result so the golfer can focus on the optimal putting line, one that will send the golf ball to the hole.
[0045] Trust is the golfer's confidence in his or her swing mechanics. The disclosed device trains the mind and body to maintain optimal stroke mechanics and allow the golfer to focus on the environmental conditions of the putt. Proper mechanics may be achieved if the putter head of the disclosed device does not spin as a result of the putting stroke. For example, if the acceleration/deceleration is excessive, the rotation mechanism will send instant mechanical feedback to the golfer's brain through sensory feedback.
[0046] As mentioned above, the present invention involves the use of an angular rotation mechanism, where the putter head rotates about a top portion of the training device held in a golfer hands (e.g. the golf club grip). This angular rotation mechanism may employ variable resistance, as mentioned above, adjusted to match to a golfer's ability level as further described below. The TFT training approach is to adjust the resistance component of the angular rotation mechanism as the golfer's putting stroke improves, thus providing progressive, fine-tuned, direct muscular and neural sensory feedback to the golfer so that the putting stoke is modified each time a stroke is completed. A regular training regimen of steady use over time with the putter training device should lead to consistent improvement.
[0047] Sensory feedback is achieved by comparing actual results to the intended result immediately after completing a putting stroke. Visual feedback occurs by perceiving the speed and path of the ball following impact with the head of the putter and the position of the golf ball and putting head after the stroke is completed. Audible feedback occurs by noticing different sounds caused by the putting head face striking the golf ball or by the rotation of the putter head. Touch feedback may occur by the feel in the golfer's hands throughout the stroke and putting head impact with the golf ball.
[0048] The learning and improvement process is iterative in that adjustments to putting technique during subsequent strokes may be made based on previous results. The disclosed putting training device provides feedback to the user, who, as a result learns proper breathing, body position, back swing, forward swing, ball strike, and follow-through.
[0049]
[0050] In the exemplary embodiment of
[0051] The shaft 2 is preferably cylindrical in shape and may be constructed of any suitable material including, but not limited to, variations of wood, metal, fiberglass, graphite, plastic, or combinations thereof. The shaft 2 may vary in length to accommodate the height and preference of the golfer. The shaft 2 may be straight, bent, stepped, double bent, or any variation thereof.
[0052] The putting head 3 may be constructed of any suitable material including, but not limited to, variations of wood, metal, plastic, graphite, ceramic, glass, or combinations thereof. Typically the face 6 of the head 3 is flat or substantially flat, as it is this surface that makes contact with the golf ball. The face 6 may include an insignia 4. The insignia 4 may assist the golfer to more accurately align and strike the golf ball. The insignia 4 may be made of a different material than the face 6. A triangle shape is shown for the insignia 4, but the insignia 4 could have any shape or design. The insignia 4 may also be any design, stamp, or logo that could be for ornamental or branding purposes or combinations thereof.
[0053] The overall shape of head 3 may vary. For example, it may be triangular, rectangular, blade-shaped, hemispheric, oval, or any other suitable shape.
[0054] The head 3 may be symmetrically weighted about the rotational axis of the angular rotational mechanism 5. However, the head 3 may include means (not shown) by which the golfer may alter the weight of the head 3, including a means for adjusting the weight such that the weight of head 3 is not symmetric about the rotational axis of the angular rotational mechanism 5. This may be accomplished using any means weights may be fastened at different locations on the head 3.
[0055] In the exemplary embodiment of
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[0057] However, as shown in
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[0059] The putting training device, in accordance with exemplary embodiments, may include a rotational alignment system 9 that indicates the angular position of the head 3 about its rotational axis. The rotational alignment system 9 may include alignment marks, such as reference dots, lines, holes, or any other suitable indicator that visually conveys the angular position of the head 3. For example,
[0060] Turning our attention back to
[0061] The putting training device also may include a mechanism (not shown) to adjust the resistance of rotation of the angular rotation mechanism 5. As one skilled in the art will readily appreciate, adjusting the resistance will make the angular rotation mechanism 5 more or less sensitive to rotation. Greater resistance will cause less rotation in response to a miss hit and less resistance will cause a greater amount of rotation in response to a miss hit, assuming all other factors are equal. The resistance adjustment mechanism (not shown) may be integrated into the angular rotation mechanism 5 and allow a golfer, caddy, or technician to adjust the sensitivity according to the golfer's preference level or skill. The variable resistance mechanism may employ a spring, belt, set screw, collapsible collet, or any other suitable means. The resistance adjustment may be accomplished by hand or by using a tool such as a hand tool, golf shoe cleat wrench, divot repair tool, or the like.
[0062] Further the variable resistance mechanism may include any means to visualize or aid in determining the relative sensitivity of the adjustment. For example, there may be a graduated dial, scale, alignment mark, audible click, detent position, or any other means.
[0063] Alternate designs for varying the resistance are also possible. One alternative is to provide separate heads 3 each with a different angular rotation mechanism 5 exhibiting a different degree of resistance. The heads 3 may be removable so that the golfer can change heads to change the rotational resistance. Alternatively, golf clubs may be manufactured in a series, each having a rotating head 3 with a different rotational resistance fixed during manufacturing.
[0064] In another exemplary embodiment, the angular rotation mechanism 5 may be located on or in the shaft 2, as shown in
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[0068] In a further exemplary embodiment, the shaft 2 may be removable and replaced with another shaft. In accordance with this embodiment, the golfer may be able to adjust the angle of the shaft 2 relative to the head 3.
[0069] In still another exemplary embodiment, the head 3 may be removable and replaced by another head 3, where each head 3 may exhibit a different shape, rotational resistance, and/or visual indicators.
[0070] Similarly, exchangeable shafts may be employed, each exhibiting a different angle , angular rotational resistance, and/or visual indicators.
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[0072] It will be apparent to those skilled in the art that various modifications and variation can be made in the present invention without departing from the spirit or scope of the invention. Thus, it is intended that the present invention cover the modifications and variations of this invention provided they come within the scope of the appended claims and their equivalents.