1. Fields of the Invention
The invention relates to an integrated folding mechanism of a treadmill, and more particularly, to a folding mechanism that provides an excellent auxiliary and supporting force when the platform frame is moved upward in a folded position and downward in a flat position. Meanwhile, a handrail assembly is movable to create a synchronic folding and extending action.
2. Description of the Related Art
As well-known, the treadmill has a large volume and a great weight. It is therefore common to provide the platform frame of the treadmill with a fold-up function for facilitating the transportation and the storage. In view of the basic accessories of the treadmill, the fold-up mechanism can be divided into an electric and a manual folding configuration. The invention is intended for the manual folding configuration.
In fact, the conventional treadmills are not able to provide an excellent auxiliary supporting force for helping the operator to complete the fold-up or fold-down process when the platform frame is moved either in a storage position or in an operation position. Thus, the women often regard the fold-up or fold-down process of the treadmill as an impossible mission because any careless action would cause injuries to the body.
The worry about the above-mentioned operation of the treadmill can be attributed to the improper or insufficient design of the treadmill in addition to the bulky platform frame. This is the key point of the problems.
It is a primary object of the invention to eliminate the above-mentioned drawbacks and to provide a folding mechanism of a treadmill that employs a pneumatic cylinder and a slide pusher to provide an effective auxiliary and supporting force when the platform frame is moved in a vertical position or in a horizontal position. Meanwhile, a connecting rod is interposed between the rear support and the handrail assembly such that the handrail assembly can synchronically move with the platform frame in an a folded or an extended position.
According to the invention, a folding mechanism of a treadmill includes a slide pusher supported by a pneumatic cylinder at the bottom of a platform frame thereof, thereby pushing the rear support in an opposing direction to keep a ground-touching slide action at all times. Meanwhile, a connecting rod is interposed between the rear support and the handrail assembly such that the handrail assembly can synchronically move with the platform frame in an extracted or an extended position.
The present invention will now be described in more detail hereinafter with reference to the accompanying drawings that show various embodiments of the invention.
Referring to
Moreover, a slide rail 22 providing the sliding surfaces for a slide pusher 21 is interposed between a first and a second strengthening bar 101, 102. The other end of the slide pusher 21 is pivotally connected to the rear support 20. A third strengthening bar 103 of the platform frame 10 is pivotally coupled with a pneumatic cylinder 23 at the bottom thereof in such a way that the other end of the pneumatic cylinder 23 directly rests against a tail of the slide pusher 21.
Besides, a connecting rod 24 is interconnected between the rear support 20 and the handrail assembly 19 such that the handrail assembly 19 can synchronically move with the platform frame 10 in a folded or an extended position.
An engaging mechanism 30 is disposed at the bottom of a strengthening bar 104 of the platform frame 10. The engaging mechanism 30 applies a proper engaging force to a positioning plate 26 fixed at the bottom of the internal side of the handrail assembly 19 when the platform frame 10 is brought to a horizontal application position. The engaging mechanism 30 consists of an operating lever 31, an elongated coupling rod 32, a quadruple connecting mechanism 33, two protruding studs 34 and two elastic elements 35. An external member 341 of the protruding studs 34 is engaged into a first insertion hole 261 of the positioning plate 26 in place (see
Likewise, the quadruple connecting mechanism 33 is returned back to the original position under the influence of the resilience of the elastic elements 35 when the platform frame 10 is lowered from the upright folded position to the horizontal application position. In this way, the external members 341 of the protruding studs 34 are engaged into the first insertion holes 261 of the positioning plates 26 again.
As shown in
Likewise, the guide wheels 201 of the rear support 20 are also brought into a ground-touching rotation under the influence of the shock mitigation provided by the pneumatic cylinder 23 when the platform frame 10 is compressed downward until the platform frame 10 is moved in a horizontal position. Accordingly, a stable and effort-saving effect is achieved.
As shown in
Furthermore, as shown in
Many changes and modifications in the above-described embodiments of the invention can, of course, be carried out without departing from the scope thereof. Accordingly, to promote the progress in science and the useful arts, the invention is disclosed and is intended to be limited only by the scope of the appended claims.
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Number | Date | Country | |
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20090176627 A1 | Jul 2009 | US |