The present invention generally relates to baseball and softball bats. More particularly, the present invention relates to a liquid damper for a baseball or softball bat which is disposed in a knob and/or end cap of the bat for damping vibrations created when the bat hits an object, such as a ball.
Baseball and softball are very popular sports in many countries, including the United States, Mexico, japan and elsewhere. Due to the competitive nature of these sports, players are constantly seeking ways of improving their performance. An important aspect of baseball and softball is the ability to effectively hit the ball.
Typically, wooden bats are used at the professional levels, while metal, such as aluminum and other metal alloys, and composite material bats are used extensively in other leagues and levels, and particularly in baseball amateur play from little league to college levels, and also in slow and fast pitch softball. Metal and composite bats are advantageous over wood bats in that they do not break and splinter like wood bats and thus can be used repeatedly with consequent cost savings. Metal and composite bats also have a larger optimal hitting area or power zone, often referred to as the sweet spot, than wood bats.
However, these bats also have certain disadvantages. Bats comprised of metal or composite materials or combinations thereof vibrate upon impact, particularly if the ball is not hit within the sweet spot of the bat. The shock caused by the bat hitting the ball may send painful vibrations into the batter's hands and arms.
Attempts to create bats having vibration dissipating or absorbing characteristics have often been complicated in nature in assembly and formation. Oftentimes, the interconnection points between the various components of the bat intended to dissipate or absorb vibrations are prone to failure as the bat is used repeatedly. Also, many of the designs do not effectively reduce the vibrations caused when the bat hits an object, such as a baseball or softball.
Accordingly, there is a continuing need for a bat which effectively dissipates vibrations and shock caused when hitting an object, such as a baseball or softball. Such a bat should not be complex in design and not expensive to manufacture or assemble and which is not prone to structural failure. Such a bat should also maintain a rigid and durable connection between the handle and the barrel of the bat. The present invention fulfills these needs, and provides other related advantages. The present invention fulfills these needs and provides other related advantages.
The present invention resides in a baseball or softball bat. More particularly, the present invention resides in a bat having a liquid damper in a knob and/or end cap of the bat that dissipates vibrations and shock caused when the bat hits an object, such as a baseball or softball.
The bat generally comprises a handle and a barrel extending from the handle. A chamber is formed at an end of the handle and/or at an end of the barrel generally opposite the handle. A liquid or gel at least partially fills the chamber for at least partially dissipating vibrations created when the bat strikes an object.
The chamber may be formed in a knob attached to an end of the handle. Alternatively, or additionally, a chamber may be formed in an end cap attached to the barrel.
The liquid or gel fills 10% to 100% of the chamber, and more preferably between 50% to 80% of the chamber. The liquid or gel has a viscosity of at least 1800 centipoise. The chamber may include an aperture through which the liquid or gel is poured or injected into the chamber. Alternatively, the liquid or gel is contained within a flexible enclosure that is disposed within the chamber. A cover or plug is disposed over the chamber aperture so as to retain the liquid or gel within the chamber.
Other features and advantages of the present invention will become apparent from the following more detailed description, taken in conjunction with the accompanying drawings, which illustrate, by way of example, the principles of the invention.
The accompanying drawings illustrate the invention. In such drawings:
As shown in the accompanying drawings, for purposes of illustration, the present invention relates to a liquid damper for a knob and/or an end cap of a bat, such as a baseball or softball bat or the like. The violent collision between a ball and a bat causes vibration of the bat and flexural mode shapes contributing to the painful sting in one or both hands of the hitter. This results when the bat impacts the ball away from the “sweet spot”, which is typically approximately four to seven inches from the barrel end of the bat, and is most frequently felt in the small section of the handle section where the batter holds the handle. The stinging vibration is often felt between the thumb and forefinger in the top hand farthest away from the knob at the end of the handle. The liquid damper of the present invention is designed to resist dynamic forces through a combination of strength, deformation and energy absorption. The liquid damper dissipates vibration that is caused by the impact between a ball and a bat that would otherwise be transmitted to cause sting or injuries in the hands and arms of the batter.
With reference now to
In accordance with the present invention, a liquid or gel damping material is disposed and contained within a chamber within the bat 100. Typically, as will be more fully described herein, the liquid or gel damping material is disposed within the chamber of a knob 106 attached to an end of the handle 102 or end cap 108 attached to an open end of the barrel 104. The liquid damper can be any liquid or gel which has a minimum viscosity of 1800 centipoise (cps). Typically, the liquid or gel material is a silicone-based gel or polymer gel or thick oil having a minimum viscosity of 1800 cps. The viscosity of the liquid or gel could be greater than 1800 cps, such as having a dynamic viscosity of 30,000-300,000 cps. The liquid or gel damping material typically has a Shore A hardness of 0-2 (unit: A). The flowability of the liquid or gel damping material in accordance with a cone penetration test may be 100-300 (unit: 1/10 mm), as an indicator of flowability or dynamic viscosity of materials, such as gel materials which may be used in accordance with the present invention.
With reference now to
The chamber 114 may be partially filled or fully filled, such as having a volume ratio of 10% to 100% of the chamber 114. It has been found, however, that when the liquid or gel 112 fills less than 20% of the chamber 114, while there is a vibration damping effect, the damping is not as great as would be desired. Thus, preferably the liquid or gel 112 has a volume ratio or fills at least 25% of the chamber 114, and more preferably fills at least 50% of the chamber 114. It has also been found that the vibration damping effect is slightly reduced if the chamber 114 is 100% filled. Accordingly, for maximum vibration damping effect, the chamber 114 is filled between 25% to 95%, and more preferably 50% to 80%. Within these volume ratios, the vibrations caused when the bat hits a ball or other object is significantly dissipated by the liquid or gel damping material 112.
A cover or plug 116 is disposed over the chamber aperture 110 so as to retain the liquid or gel damping material 112 within the chamber 114. The cover 116, which may be in the form of a plug, lid or the like, may have a thin layer of adhesive applied to an outer surface which may be threaded or unthreaded, and then attached to the end cap 108 so as to completely cover the aperture 110 through which the liquid or gel 112 is inserted through. In the embodiments illustrated in
With reference again to
With reference now to
As discussed above, with respect to
A bat 100 may be equipped with a knob 106 having the liquid or gel damping material therein and/or an end cap 108 having the liquid or gel damping material. As the liquid or gel 112 has a relatively high viscosity, it has a significant vibration damping effect when the bat 100 strikes an object, such as a ball. It is believed that the frequency of the gel or liquid matches the frequency of the bat so as to provide such vibration damping or dissipating effects. The energy from the vibrations of the bat are transferred into the liquid or gel instead of into the hands and arms of the batter.
With reference now to
With reference now to
A larger cover 132 is then attached to the knob 106 so as to cover the aperture 126 and retain the liquid or gel filled enclosure 130 within the chamber 120. The cover may be adhesively attached to the knob 106. Alternatively, or additionally, the cover 132 may have a threaded attachment, such as by having external threads 134 which are received into internal threads 136 of the knob, as illustrated. A thin layer of adhesive may be applied to the external threads 134 of the cover 132 to securely attach the cover 132 to the knob 106 and retain the gel or liquid filled flexible enclosure 130 within the knob 106. The cover 132 may include recesses 138 for mechanically and physically rotating the cover 132 with respect to the knob 106 so as to securely attach and couple the cover 132 and knob 106 to one another. The assembled knob 106 is then attached to the handle 102, as illustrated in
With reference now to
When the bat 100 strikes an object, such as a ball, and vibrations are created, the energy of the vibrations are transferred through the flexible enclosure and into the liquid or gel damping material and thus avoid the energy from the vibrations going into the hands and arms of the batter, causing pain. It is believed that a minimum amount of gel or liquid is necessary to maximize the vibration dissipating or damping effects of the invention. However, the weight of the liquid or gel material should preferably be between 0.5-2.5% of the overall weight of the bat. While the damping material 112 has been illustrated and described above as being disposed within chambers formed in the knob and/or end cap, the present invention also contemplates that chambers could be formed in other areas of the bat, including the barrel, handle or taper section therebetween.
Although several embodiments have been described in detail for purposes of illustration, various modifications may be made without departing from the scope and spirit of the invention. Accordingly, the invention is not to be limited, except as by the appended claims.
Number | Name | Date | Kind |
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5772541 | Buiatti | Jun 1998 | A |
5785617 | MacKay, Jr. | Jul 1998 | A |
20180086420 | Schenck | Mar 2018 | A1 |
Number | Date | Country |
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2432286 | Aug 2007 | CA |
212107440 | Dec 2020 | CN |
2247932 | Mar 1992 | GB |
WO-2017173095 | Oct 2017 | WO |
Number | Date | Country | |
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20220305359 A1 | Sep 2022 | US |