The present invention relates to an interactive tennis racket. Specifically, the present invention relates to the tennis racket with flexible joints and the strings tension mechanism.
The tennis racket of the present invention allows one to select the direction of the head angle and the strings tension for users preferences.
The tennis racket head is split and assembled with flexible spherical joints, pulleys and flexible balls. Such flexible assembly controls and minimizes the oscillation, shock impact, decreases the muscles stress, and improves the comfort for the player by a dampening effect during the period of such control and minimization.
The strings tension in the flexible head assembly results in less vibration and more sufficient impact of the tennis ball.
The frame of the head racket is assembled in the nest of the handle and creates the flexible joint that reduces the impact from the striking tennis ball.
The flexible handle assembly provides the gripping to control the oscillation, twisting torque from racket frame, and as a result minimizes wrist injures.
The strings tension mechanism allows the user to adjust the desired level of the string tension during tennis play.
The flexibility of the tennis racket facilitates less muscle stress and offers more enjoyment, and enables a technically oriented pattern of the tennis play.
The optional criteria for the tennis racket is to maximize the performance while minimizing the risk of injury.
In general, tennis rackets employ a frame with strings, or a frame, a head, a handle, and strings. Such construction of the tennis racket affects the load to the hand, the arm, and the shoulder of the tennis player. The loads by the incoming tennis ball on the tennis racket results—vibration, shock, and twisting
These loads are determinates of the risk for injury.
The vibrations result from the strings and from the oscillation of the racket frame. These types of oscillations create an adequate level of resulting energy and require the muscle activation to withhold such reaction. The frame structure has influence on the amplitude of the vibration. Therefore, gripping the handle tighter decreases the oscillation of the energy, but transforms the energy to the forearm muscles and results in lessening the risk of injury.
When the tennis ball strikes the tennis racket, a shock develops that causes a reaction in the hand and the arm to the shock. To withstand and remove shock energy, the muscles have to be activated and act as the shock absorber. This reaction results in lessening of the risk of injury.
Another reaction is when the tennis ball strikes the center of the tennis racket, and this results in a twisting torque. The muscles react to control this condition and therefore result in lessening the risk of the wrist to injury.
It an object of the present invention to provide an interactive tennis racket, with personalized parameters; the head angle, the hardness of flexible balls, and the strings tension.
It is an object of the present invention to provide the tennis racket, with the selection of the angle of the head in respect to the handle, and can be selected by the user, as desired.
It is an object of the present invention to provide the tennis racket, in which the head is split, and assembled by spherical joints and flexible balls.
It is an object of the present invention to provide the spherical nest, to assemble the head and the handle.
It is an object of the present invention to provide the tennis racket with a flexible head assembly.
It is an object of the present invention to provide the tennis racket with a flexible handle assembly.
It is an object of the present invention to provide the tennis racket with the strings tension mechanism, where the strings are in the contact with a pulley, and in such, a pattern to allow better sliding of the strings in the tension process.
It is an object of the present invention to provide the tennis racket with the retractable handle to apply the torque during the strings tension process.
It is an object of the present invention to provide the means to apply the dial torque wrench to monitor the level of strings tension.
Exemplary embodiments of the present invention may be further understood with reference to the following description and related appended drawings.
Referring to the
The tennis racket in
As shown in
As shown in
The typical spherical joint assembly is explained in
The typical assembly of flexible ball 15 with the bottom segment 6, and top segment 7 is explained in
The tennis racket handle 2 of
As shown on in
As shown on
As shown on
In
The main shaft 50 is in a cylindrical shape and has the spherical extrusion 80 for the guide in the groove 36, has the cylindrical inner hole to fit the inner shaft 52, and has the inner spherical surface 59 to fit with the middle clamp 57. The main shaft 50 has the acme thread and the helical slot 72 for the coarse movement.
The inner shaft 52 has the outside spherical shape 70 to fit with the upper clamp 58, and has the hole for the pin 87 to assemble with the middle clamp 57. On the other side, the inner shaft 52 has the hole for the pin 77 to assemble with the lower clamp 53, and the socket for the dial torque wrenches.
The lower clamp 53,
As shown in
As shown in
With respect to
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It should be understood that for foregoing description in only illustrative of the invention. Various alternatives and modifications can be devised by those skilled in the art without departing from the invention. Accordingly, the present invention is intended to encompass all such alternatives, modifications and variances that fall within the scope of appended claims.
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Number | Date | Country | |
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20160310804 A1 | Oct 2016 | US |