The present invention relates to a treadmill, in particular to a treadmill with a slope changeable treadmill platform.
Treadmills are placed indoors for satisfying the needs of the user to exercise indoors. A conventional treadmill, as shown in
However, when the treadmill platform of the conventional treadmill is lifted, the distance between the user on the treadmill and the handlebar is increased. As a result, the user cannot hold the handlebar conveniently. Hence, when the user runs on the treadmill, the user might fall on the treadmill, adversely affecting the user's safety.
One object of the present invention is to provide a treadmill in which the front end of the treadmill platform can be moved upward and downward along the standing bracket to change the slope of the treadmill, so that a user can still hold the handlebar of the standing bracket wheat the slope of the treadmill platform is changed. Therefore, when the user runs on the treadmill, the safety of the user is improved.
In view of this, a treadmill is provided and comprises a bottom bracket assembled with a standing bracket extending upward, and the standing bracket being assembled with a handlebar; a movable unit movably connected on the standing bracket, a driving unit being assembled with the bottom bracket for driving the movable unit to slide along an extension direction of the standing bracket; and a treadmill platform having a front end and a rear end, the front end being pivotally connected on the movable unit, so that the front end is moved along with a movement of the movable unit at the same time.
Wherein, the movable unit is slidable along the standing bracket to a position higher and lower than a height of the rear end.
In one embodiment, the movable unit is a sleeve fitted over an outer periphery of the standing bracket.
In another embodiment, the standing bracket is assembled with a rail extending along the extension direction of the standing bracket, and the movable unit is slider slidably assembled on the rail.
In one embodiment, a bottom end of the standing bracket is pivotally connected to the bottom bracket so as to be swung relative to the bottom bracket.
Please refer to
Furthermore, a movable unit 3 is assembled on each of the elongated bars 21 of the standing bracket 2, and the bottom bracket 1 is assembled with a driving unit 4. The driving unit 4 can drive each of the movable units 3 to slide along the extension direction of the corresponding elongated bar 21. The movable unit 3 may be connected with the elongated bar 21 in different ways. In one embodiment, as shown in
Moreover, the two movable units 3 on the two elongated bars 21 are fixed and connected with each other by a transversal bar 31, and the driving unit 4 is connected to the transversal bar 31. In addition, the driving unit 4 drives the movable units 3 to move by pushing, so that the movable units 3 can be moved at the same time.
Furthermore, the present invention further comprises a treadmill platform 5 for a user to run thereon. The treadmill platform 5 has a front end 51 and a rear end 52, the left and right sides of the front end 51 are pivotally connected with the two movable units 3, respectively, and the rear end 52 is assembled with a wheel 53 for rolling against the ground. In another embodiment shown in
Accordingly, in the present invention, the aforementioned components are applied to lift the treadmill platform 5 so as to change the slope of the treadmill Therefore, the training strength provided by the treadmill can be changed when the user runs on the treadmill. In detail, as shown in
The slope of the treadmill platform 5 is determined by the difference between the height of the front end 51 and the height of the rear end 52. As shown in
According to the aforementioned components, when the treadmill platform 5 is adapted to simulate the uphill scenario, the user is lifted by the treadmill platform 5, so that the user leans backward; in this case, the standing bracket 2 is adjusted to swing toward the treadmill platform 5, so that the handlebar 22 comes close to the user and spaced from the user by a proper distance. Conversely, when the treadmill platform 5 is adapted to simulate the downhill scenario, the user leans forward; in this case, the standing bracket 2 is adjusted to swing away from the treadmill platform 5, so that the handlebar 22 goes away from the user and spaced from the user by a proper distance.
Based on the above, the feature of the embodiment of the present invention is that the front end 51 of the treadmill platform 5 is connected with the movable units 3 that are capable of being moved upward and downward along the standing bracket 2. Therefore, when the treadmill platform 5 is lifted or descended, the front end 51 of the treadmill platform 5 is always connected to the standing bracket 2. In addition, the standing bracket 2 can be swung relative to the bottom bracket 1 to adjust the position of the handlebar 22. Therefore, the distance between the user on the treadmill platform 5 and the handlebar 22 does not change.
Accordingly, the user can conveniently hold the handlebar 22 no matter what the slope of the treadmill platform 5 is, thus improving the safety for the operation of the treadmill and reducing the occurrence of accidents.