IP Library Granted Patent US 12,485,309
Granted Patent B1
US 12,485,309 · App. 19/201,955 · Granted Dec 2, 2025

Forearm exerciser

Inventor: Zejie Lv (Jinhua, CN)
A63B23/12A63B21/4035
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Quick Facts
Patent No.
US 12,485,309
App. No.
19/201,955
Granted
Dec 2, 2025
Kind
B1
Abstract

A forearm exerciser is provided, including an exerciser body, wherein the exerciser body is of a cylindrical structure and includes a winding portion in the middle and grip portions symmetrically arranged at both ends of the winding portion. A suspension rope is connected to the winding portion, and an inner ring for allowing the rod body to pass through is formed at a central axis of the exerciser body, so as to ensure the training effect of the forearm and ensure the safe training of a trainee.

Claims (11)

1 . A forearm exerciser, comprising an exerciser body ( 1 ), wherein

the exerciser body ( 1 ) is of a cylindrical structure and comprises a winding portion ( 11 ) circumferentially arranged in the middle of the exerciser body ( 1 ) and grip portions ( 12 ) symmetrically arranged at both ends of the winding portion ( 11 ) for gripping during exercise, a suspension rope ( 2 ) for suspending a weight is connected to the winding portion ( 11 ), and an inner ring ( 13 ) for allowing a rod body ( 7 ) to pass through is formed at a central axis of the exerciser body ( 1 );

wherein the exerciser body ( 1 ) is divided into a first body ( 14 ) and a second body ( 15 ) formed in a semi-circular structure along a plane of its central axis, one side edge of the first body ( 14 ) and one side edge of the second body ( 15 ) are hinged to each other, and a pull clasp assembly ( 5 ) is connected between other side edge of the first body ( 14 ) and other side edge of the second body ( 15 ).

2 . The forearm exerciser according to claim 1 , wherein an outer diameter of the winding portion ( 11 ) is smaller than an outer diameter of the grip portion ( 12 ) and sinks to form a winding groove ( 3 ) for winding the suspension rope ( 2 ).

3 . The forearm exerciser according to claim 1 , wherein the winding portion ( 11 ) is provided with a connection port ( 111 ) where a connection post ( 112 ) arranged in a width direction of the winding portion ( 11 ) is mounted, and an end of the suspension rope ( 2 ) is connected to the connection post ( 112 ).

4 . The forearm exerciser according to claim 3 , wherein the other end of the suspension rope ( 2 ) connected to the connection post ( 112 ) is provided with a connection clasp ( 4 ) for clasping to a hook for exercising.

5 . The forearm exerciser according to claim 1 , wherein a width of the grip portion ( 12 ) is greater than a width of the winding portion ( 11 ), and a surface of the grip portion ( 12 ) is provided with an anti-slip pattern ( 121 ).

6 . The forearm exerciser according to claim 1 , wherein the pull clasp assembly ( 5 ) comprises a clasp member ( 51 ) hinged to an edge of the first body ( 14 ) and a pull rod member ( 52 ) hinged to an edge of the second body ( 15 ), the clasp member ( 51 ) is provided with a clasp opening ( 511 ), the other end of the pull rod member ( 52 ) hinged to the second body ( 15 ) being hinged in the clasp opening, wherein the first body ( 14 ) and the second body ( 15 ) are closed around the rod body ( 7 ) when the clasp member ( 51 ) is pressed to pull the pull rod member ( 52 ).

7 . The forearm exerciser according to claim 1 , wherein the first body ( 14 ) or the second body ( 15 ) is provided with a storage port ( 16 ) for receiving the pull clasp assembly ( 5 ) at a position corresponding to the winding portion ( 11 ).

8 . The forearm exerciser according to claim 1 , wherein a wall surface of an inner ring ( 13 ) of the exerciser body ( 1 ) is provided with an anti-slip pad ( 6 ).

9 . The forearm exerciser according to claim 8 , wherein a wall surface of the inner ring ( 13 ) of the exerciser body ( 1 ) is provided with a limit mounting groove ( 131 ), the anti-slip pad ( 6 ) is embedded in the limit mounting groove ( 131 ), and a top of the anti-slip pad ( 6 ) is higher than the wall surface of the inner ring ( 13 ) of the exerciser body ( 1 ).

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Cited By (1)
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