1. Field of the Invention
The present invention relates to sports equipment, and more particularly to a fitness equipment with simple structure, easy installation and low manufacturing cost.
2. Description of the Related Art
A conventional fitness equipment (US 2013/0053218) is known comprising a frame, a pedal unit, a driving unit and a vertical damping unit. The frame comprises a bottom frame member, an upright column affixed to the bottom frame member, a supporting rack connected to the upright column and the bottom frame member, and an axle connected between the upright column and the supporting rack. The pedal unit comprises a pair of linking members respectively rotatably sleeved onto two opposite ends of the axle, a pair of sleeves respectively sleeved onto the linking members, a pair of swing arms respectively connected to the sleeves, and a pair of pedal levers respectively pivotally connected to the swing arms. The driving unit comprises a pair of detent ropes respectively coupled between the linking members and the pedal levers and slidably inserted through the supporting rack. The damping unit is mounted at the frame, and drivable by the driving unit to impart a damping to the pedal levers.
This design of fitness equipment allows the user to exercise via fitness stepping actions. However, in this prior art design, the axle is fixed and immovable, the linking members of the pedal unit are respectively rotatably mounted on the two opposite ends of the axle and the sleeves are respectively sleeved onto the linking members. Thus, the conventional fitness equipment has many component parts which require a complicated installation procedure, and also has a high manufacturing cost.
The present invention has been accomplished under the circumstances in view. It is the main object of the present invention to provide a fitness equipment, which has the characteristics of simple structure, ease of installation and low manufacturing cost.
To achieve this and other objects of the invention, a fitness equipment comprises a frame, a pedal unit, a driving unit, and a vertical damping unit. The frame comprises a bottom frame member, an upright column affixed to the bottom frame member, a supporting rack connected to the upright column and the bottom frame member, and a pair of rotating shafts rotatably mounted between the upright column and the supporting rack. The pedal unit comprises a pair of sleeves respectively rotatably sleeved onto the rotating shafts, a pair of swing arms respectively connected to the sleeves, a pair of pedal levers respectively pivotally connected to the swing arms, and a pair of pedals respectively mounted at the pedal levers. Each pedal lever comprises a front end portion pivotally connected to one respective swing arm, and an opposing rear end portion movable up and down relative to one respective swing arm. The driving unit comprises a pair of detent wheels respectively fixedly connected to the rotating shafts, and a pair of flexible members respectively connected between the detent wheels and the pedal levers and adapted for mechanically resisting the rotation of the rotating shafts. The vertical damping unit is mounted at the frame near the upright column, and drivable by the driving unit to provide a damping to each pedal lever in response to the vertical vector.
The present invention has the following effects: by means of rotatably mounting the rotating shafts between the upright column and the supporting rack and rotatably mounting the sleeves on the respective rotating shafts, the detent wheels can mechanically resist the rotation of the rotating shafts when driven by the flexible detent members, thus achieving generation of the expected damping. Further, the mating arrangement of the component parts simplifies the structure of the fitness equipment and significantly reduces its manufacturing cost.
Other advantages and features of the present invention will be fully understood by reference to the following specification in conjunction with the accompanying drawings, in which like reference signs denote like components of structure.
It should be noted that the drawing figures are not necessarily drawn to scale, but instead are drawn to provide a better understanding of the components thereof, and are not intended to be limiting in scope, but rather to provide exemplary illustrations. It should further be noted that the figures illustrate exemplary embodiments of the present invention and the components thereof, and in no way limits the structures, configurations and components thereof according to the present disclosure.
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The driving unit 30 comprises a pair of detent wheels 31 respectively affixed to the rotating shafts 14 and respectively partially inserted in the openings 133, a pair of flexible detent members 32 connected between the detent wheels 31 and the pedal levers 23, a pair of driven wheels 33 respectively affixed to the rotating shafts 13, and a pair of flexible linking members 34 respectively connected between the driven wheels 33 and the frame 10. The detent wheels 31 are adapted to mechanically resist the rotation of the rotating shafts 14. Each flexible detent member 32 comprises a detent end 321 affixed to and wound round the outer perimeter of the associating detent wheel 31, a connection end 322 connected to the rear end portion 232 of one associating pedal lever 23, and a middle body portion 323 connected between the detent end 321 and the connection end 322 and is inserted through the U-shaped, tubular top frame bar 131 of the supporting rack 13 and extended over the associating pulley 132. The driven wheels 33 are respectively rotatable by the respective rotating shafts 14. Each flexible linking member 34 has a driven end 341 affixed to and wound round the outer perimeter of one associating driven wheel 33, and a positioning end 342 connected to the bottom frame member 11. Further, the flexible linking members 34 are respectively extended over the respective guide wheels 121.
The vertical damping unit 40 is mounted in the frame 10 near the upright column 12 and drivable by the driving unit 30 to impart a damping to the pedal levers 23 in response to the vertical vector Y. The vertical damping unit 40 comprises a brake wheel 41 mounted at the upright column 12 of the frame 10, a driving wheel 42 mounted at the bottom frame member 11 at one side relative to the brake wheel 41, a transmission member 43 connected between the brake wheel 41 and the driving wheel 42, a crankshaft 44 fixedly connected to the driving wheel 42, and a pair of guide wheels 45 respectively pivotally mounted at two opposite ends of the crankshaft 44 in an eccentric manner relative to the driving wheel 42. The flexible linking members 34 are respectively extended over the guide wheels 45 for mechanically resisting the rotation of the guide wheels 45, driving the driving wheel 42 to rotate and causing the brake wheel 41 to produce a damping in response to the vertical vector Y.
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When the operator steps on the pedals 24 and alternately gives a forward pressure to the pedals 24, in addition to the generation of the aforesaid damping in response to the vertical vector Y, the front end portions 231 of the pedal levers 23 drive the bottom ends of the respective swing arms 22. Accordingly, the swing arms 22 alternately move the respective sleeves 21 back and forth relative to the respective rotating shafts 14 and the frame 10. At the same time, the linking-up rods 211 of the respective sleeves 21 drive the respective linking-up rods 53 of the linking-up unit 50 to oscillate the rocker arm 51 relative to the upright column 12, causing the rocker arm 51 to move the drag members 52 back and forth. Thus, the transmission member 62 can be driven to rotate the damping wheel 61 in generating a damping in response to the horizontal vector X, and the operator can therefore train the muscles of the legs.
Thus, the operator can operate the fitness equipment under different operating modes to generate: (1) damping in response to the horizontal vector X, (2) damping in response to the vertical vector Y, and (3) the combination of damping in response to the horizontal vector X and damping in response to the vertical vector Y. The present invention allows the operator to select different operating modes to meet different requirements, such as: the operating mode of forward-backward sliding, the operating mode of stepping up and down, and the operating mode of forward-backward and up-down elliptical trajectory.
In conclusion, the present invention has the rotating shafts 14 rotatably mounted between the upright column 12 and the supporting rack 13, and the sleeves 21 of the pedal unit 20 respectively and rotatably sleeved onto the rotating shafts 14. This arrangement provides for simplifying the linking structure between the pedal unit 20 and the driving unit 30, facilitating the installation process and reducing the number of component parts and the cost of equipment.
Although a particular embodiment of the invention has been described in detail for purposes of illustration, various modifications and enhancements may be made without departing from the spirit and scope of the invention. Accordingly, the invention is not to be limited except as by the appended claims.
Number | Date | Country | Kind |
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103122685 | Jul 2014 | TW | national |