1. Field of the Invention
The present invention relates generally to a training machine, and more particularly to an exercise bike for rehabilitation.
2. Description of the Related Art
Exercise bike is an indoor training machine with a structure similar to a bicycle. Typically, a conventional exercise bike includes a frame, a seat, a handle, two pedals, and a damping device. A user may sit on the seat and step on the pedals to exercise. The damping device provides a loading when the user steps on the pedals to train muscles. The user holds the handle to keep balanced when he/she steps on the pedals.
The conventional exercise bike only trains muscles on the user's feet. An improved exercise bike is equipped with two swinging handle bars that a user may move his/her hands with the handle bars when he/she steps on the pedals. However, the handle bars only swing freely that it is less effective in training hands' muscles. One may provide a damping device on the handle bars to increase loading for training muscles. It will raise the cost and enlarge the size. One may connect the damping device of the pedals to the handle bars through a belt. However, the handle bars will be restricted in moving synchronously with the pedals. That is, the handle bars will move whenever user steps on the pedals, or the pedals will turn whenever user swings the handle bars. It affects the exercise when user only wants to train his/her hands or feet.
Besides, the conventional bike only works when the user steps on the pedals or swings the handle bars in a predetermined direction. The damping device will not work in a reverse direction. Sometime, user may have to turn the pedals or swing the handle bars in the reverse direction for a specific purpose, and the conventional bike can't provide such function.
For a bike with handle bars, the bars are pivoted on a crank directly that the angle of swing of the handle bars is too big for a normal user. The user has to over-flex his/her elbows and wrists when he/he holds the handle bars and moves with them. It may cause musculoskeletal injury when a user takes exercise with the handle bars for a long time.
The primary objective of the present invention is to provide an exercise bike that can train hands' and feet's muscles individually.
The secondary objective of the present invention is to provide an exercise bike with a design that conforms to ergonomics to provide a comfortable exercise condition.
According to the objectives of the present invention, an exercise bike includes a frame, on which a first exercise module, a second exercise module, and a damping device are provided. The first exercise module includes a main axle, a driving wheel mounted on the main wheel, and a forward one-way clutch between the main axle and the driving wheel. The main axle is driven to rotate in a forward direction and a backward direction that the driving wheel is driven to rotate in the forward direction through the forward one-way clutch when the main axle rotates in the forward direction. The second exercise module includes a main axle, a driving wheel mounted on the main wheel, and a forward one-way clutch between the main axle and the driving wheel. The main axle is driven to rotate in a forward direction and a backward direction that the driving wheel is driven to rotate in the forward direction through the forward one-way clutch when the main axle rotates in the forward direction. The damping device has a driven wheel connected to the frame. The driving wheel of the first exercise module and the driving wheel of the second exercise module are connected to the driven wheel respectively for driving the driven wheel to rotate.
In an embodiment, the first exercise module further includes an operation set, which includes a linkage with an end connected to the main axle, a connector pivoted on an opposite end of the linkage, and a crank pivoted on the connector to provide user a comfortable holding posture.
As shown in
The frame 10 includes a base 11, a movable base 12 connected to the base 11 for free movement, a seat 13 fixed to a top of the movable base 12, and a support frame 14 with a plurality of bars fixed to the base 11. The frame 10 further has an axle 15, a wheel 16, a first case 17, a second case 18, and an orienting device 19. The axle 15 passes through the conjunction of the first case 17 and the second case 18. The wheel 16, which is mounted on the axle 15, has an outer wheel 16a and an inner wheel 16b of concentricity. The orienting device 19 is a cylinder including a cylinder member 19a and a shaft 19b. The cylinder member 19a is pivoted on the support frame 14, and the shaft 19b is pivoted on the first case 17 that it may adjust an angle between the first case 17 and the second case 18 by activating the cylinder 19 to locate the first case 17 at a desired position.
The damping device 20, which is connected to the support frame 14 of the frame 10, includes a driven wheel 21 and a belt 22. The belt 22 is wound around the driven wheel 21 and the inner wheel 16b of the wheel 16. The damping device 20 is a conventional device with which user may adjust the loading value.
The first exercise module 30 is designed for manual operation. The first exercise module 30 is provided on the first case 17 distal to the axle 15 including a main axle 31, a driving wheel 32, a forward one-way clutch 33, a transmission gear 34, a backward one-way clutch 35, a positioning axle 36, a turning gear 37, a belt 38, and two operation sets 39.
As shown in
The driving wheel 32 is mounted on the main axle 31 including a first gear 32a and a second gear 32b. The first gear 32a is connected to the outer wheel 16a of the wheel 16 through a belt 32c.
The forward one-way clutch 33 is mounted on the main axle 31 between the main axle 31 and the driving wheel 32. In the present invention, the forward one-way clutch 33 is a one-way bearing that the driving wheel 32 will be turned in a forward direction, i.e., clockwise, through the forward one-way clutch 33 when the main axle 31 is turned in the forward direction, and the driving wheel 32 will not be driven to rotate when the main axle 31 is turned in a backward direction, i.e., counterclockwise.
The transmission gear 34 is mounted on the main axle 31, and the backward one-way clutch 35 is between the main axle 31 and the transmission gear 34. The transmission gear 34 will be turned in a backward direction through the backward one-way clutch 35 when the main axle 31 is turned in the backward direction, and the transmission gear 34 will not be driven to rotate when the main axle 31 is turned in a forward direction. In the present invention, backward one-way clutch 35 is a one-way bearing.
The first positioning axle 36 passes through the first case 17 while being parallel to the main axle 31.
The turning gear 37 is mounted on the first positioning axle 36 including a first gear 37a and a second gear 37b. As shown in
The operation sets 39 are mounted at the opposite ends of the main axle 31. As shown in
The sheath 39a is fitted to the end of the main axle 31. The sheath 39a has a guiding protrusion 39f. The linkage 39b has a slot 39g to receive the fastener 39c. The fastener 39c is screwed into the threaded hole 31a of the main axle 31 to fix the linkage 39b to the main axle 31. The linkage 39 is adjustable along the slot 39g when the fastener 39c is turned loose. The connector 39d is an L-shaped plate with an end pivoted on the linkage 39c and an opposite end pivoted on the crank 39e. The linkage 39b is adjusted to a desired position, with which adjustment the position of the crank 39e will be changed, too. When a user holds the cranks 39e, the user may apply a comfortable posture to operate the first exercise module 30 through the pivotal connection between the connector 39d and the linkage 39b and between the crank 39e and the connector 39d that the user's wrists and elbows will not overly flex.
As shown in
When a user turns the cranks 39e in a forward direction, i.e., clockwise, as shown in
The exercise bike 100 of the present invention provides user the first exercise module 30 for training their hand. It provides user a comfortable posture to operate the first exercise module 30, and the damping device 20 works no matter which direction user turns the main axle 31 in.
The second exercise module 40 is designed for training feet. The second exercise module 40 is mounted on the second case 18 distal to the axle 15. As shown in
Basically, the second exercise module 40 is the same as the first exercise module 30. The corresponding elements of the main axle 41, the driving wheel 42, the forward one-way clutch 43, the transmission gear 44, the backward one-way clutch 45, the positioning axle 46, the turning gear 47, and the belt 48 of the second exercise module 40 are the main axle 31, the driving wheel 32, the forward one-way clutch 33, the transmission gear 34, the backward one-way clutch 35, the positioning axle 36, the turning gear 37, and the belt 38 of the first exercise module 30. They have the same structures and functions, so we do not describe the details of the second exercise module 40 here.
Each of the operation sets 49 of the second exercise module 40 has a crank 49a and a pedal 49b. The crank 49a has an end connected to the main axle 41 and the pedal 49b is pivoted on a distal end of the crank 49a. The driving wheel 42 is connected to the outer wheel 16a of the wheel 16 through a belt 42a that the main axle 41 drives the transmission gear 44 rotating in the backward direction through the forward one-way clutch 45 when a user steps on the pedals 49b and turns them in the backward direction, and then the transmission gear 44 drives the driving wheel 42 rotating in the forward direction to drive the wheel 16 rotating in the forward direction through the belt 42a. The damping device 20 provides a loading to train user's feet. On the contrary, the wheel 16 is rotated in the forward direction through the belt 42a also when the user steps on the pedals 49b and turns them in the forward direction to train his/her feet.
The first exercise module 30 and the second exercise module 40 of the present invention provide the one-way clutches 33, 35, 43, 45 to transmit power in opposite directions that the motions of one exercise modules will not be transmitted to the other module. In other words, the main axle of one exercise module will keep still when the other exercise module is operated. User may independently operate the first exercise module 30 and the second exercise module 40 without interference. That is, user may operate the exercise bike 100 of the present invention to train his/her hand or feet individually.
The description above is a few preferred embodiments of the present invention and the equivalence of the present invention is still in the scope of claim construction of the present invention.
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