The present invention relates to a power twister, and more particularly to a power twister with adjustable resistance that can help users in different builds with arm and chest workouts.
A power twister is an equipment of simple structure for a user to train his/her arms and chest. With reference to
However, the conventional power twister has the following shortcomings. Because of an overall length of the conventional power twister, a diameter of the rod that is used to make the elastic component 80 and a radius of the helix of the elastic component 80 are both fixed, and the resistance provided by the conventional power twister is thereby fixed. When the user tries to bend the conventional power twister, the user should provide a force larger than the resistance. When the user is strong enough to provide a larger force, bending the conventional power twister repeatedly for exercise is easy. On the contrary, if the user is less strong, then the user may not be able to bend the conventional power twister for workout.
To conclude, the resistance provided by the conventional power twister is fixed and not adjustable, so the conventional power twister may not be useful to users in different builds.
The main objective of the present invention is to provide a power twister with adjustable resistance, so as to solve the problem of the conventional power twister. The power twister of the present invention has a first elastic component, a first handle, a first adjusting component, a second elastic component, a second handle, a second adjusting component, and a positioning assembly. The first elastic component is made of a rod rolled up spirally, is hollow, and has two ends. The first handle is a bar, and has two ends, wherein one of the two ends of the first handle is inserted into one of the two ends of the first elastic component, and is fixed with the first elastic component. The first adjusting component is fixed with the other one of the two ends of the first elastic component, and has a first socket. The first socket has an upper surface, a first through hole disposed through the first socket, and a first toothed portion having multiple teeth protruding on the upper surface of the first socket and surrounding the first through hole.
The second elastic component is made of a rod rolled up spirally, is hollow, and has two ends. The second handle is a bar and has two ends, wherein one of the two ends of the second handle is inserted into one of the two ends of the second elastic component, and is fixed with the second elastic component. The second adjusting component is fixed with the other one of the two ends of the second elastic component, and has a second socket. The second socket has a lower surface, a second through hole disposed through the second socket, and a second toothed portion having multiple teeth protruding on the lower surface of the second socket, surrounding the second through hole, and engaged with the first toothed portion of the first adjusting component. The positioning assembly has an elastomer disposed between the first socket and the second socket, a threaded rod, and a knob. The threaded rod passes through the first through hole of the first adjusting component, the elastomer, and the second through hole of the second adjusting component. The knob has a threaded hole screwed with the threaded rod.
Other objectives, advantages and novel features of the invention will become more apparent from the following detailed description when taken in conjunction with the accompanying drawings.
With reference to
The first elastic component 10 is made of a rod, which is rolled up spirally, and the first elastic component 10 is thereby hollow. In other words, the first elastic component 10 is formed in a helix comprising multiple helix turns, and two adjacent said helix turns are axially in contact with each other.
The first handle 20 is an elongated straight bar and has two ends. One of the two ends of the first handle 20 is mounted with one of two ends of the first elastic component 10. The end of the first handle 20 is inserted into the first elastic component 10, and is fixed with the first elastic component 10. The other one of the two ends of the first handle 20 is sheathed with a sheath 21, so a user may grab the sheath 21 of the first handle 20 for holding the power twister. The first adjusting component 30 has one of two ends mounted with the other one of the two ends of the first elastic component 10. Similarly, the second elastic component 40 is made of a rod, which is rolled up spirally, and the first elastic component 10 is thereby hollow. In other words, the second elastic component 40 is formed in a helix comprising multiple helix turns, and two adjacent said helix turns are axially in contact with each other. The second handle 50 is an elongated straight bar and has two ends. One of the two ends of the second handle 50 is mounted with one of two ends of the second elastic component 40. The end of the first handle 50 is inserted into the second elastic component 40, and is fixed with the second elastic component 40. The other one of the two ends of the second handle 50 is sheathed with a sheath 51, so the user may grab the sheath 51 of the second handle 50 for holding the power twister. The second adjusting component 60 has one of two ends mounted with the other one of the two ends of the second elastic component 40.
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The positioning assembly 70 comprises a threaded rod 71, an elastomer 72, and a knob 73. The elastomer 72 may be a compression spring, and is disposed between the first groove 32 of the first adjusting component 30 and the second groove 62 of the second adjusting component 60. Two ends of the elastomer 72 abut the bottom portion of the first socket 31 and the top portion of the second socket 61. The threaded rod 71 passes through the first through hole 33 of the first adjusting component 30, the elastomer 72, and the second through hole 63 of the second adjusting component 60. With reference to
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With the aforementioned technical characteristics, the power twister of the present invention has the following advantages. The angle between the two elastic components 10, 40 are adjustable, and the resistance of the power twister is thereby adjustable for different users according to their capabilities. Therefore, the problem of the conventional power twister is solved, and the power twister of the present invention is widely applicable to people in different builds.
Even though numerous characteristics and advantages of the present invention have been set forth in the foregoing description, together with details of the structure and features of the invention, the disclosure is illustrative only. Changes may be made in the details, especially in matters of shape, size, and arrangement of parts within the principles of the invention to the full extent indicated by the broad general meaning of the terms in which the appended claims are expressed.
Number | Date | Country | Kind |
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108124371 | Jul 2019 | TW | national |