The present invention relates generally to a treadmill, and more particularly to a resistance-adjustable self-power-generating treadmill.
A treadmill includes a circulating running belt driven by electrical power to allow a user to jog or run on the circulating running belt to achieve the effect of body fitting.
However, regular treadmills consume electrical power to drive the circulating running belt to allow the user to jog or run thereon, and therefore, generating kinetic energy. Such a way, however, not only requires consumption of electrical power, but is also ineffective in utilizing the kinetic energy generated by the user. Consequently, the energy utilization is apparently very poor.
Thus, some known treadmills that are available in the market use the kinetic energy generated with user running to drive the circulating running belt to circulate, and the running belt is coupled to a power generator to generate electrical power to achieve an effect of self-power generation. However, such a kind of self-power-generating treadmills does not allow for varying the resistance value and thus does not suit for different individuals, making it hard to prevail in the market. Further, self-power-generating treadmills of which the resistance is adjustable are known, and this is achieved by adjusting the slope to be higher or lower, or adding resisting devices (such as magnetic attraction devices). This makes the kind of self-power-generating treadmills suffering deficiencies of numerous components, high fabrication cost, complicated operation, and being hard to maintain and repair.
In view of the above, to alleviate the deficiencies of the known self-power-generating treadmill of the prior art that the components are numerous, the fabrication cost is high, the operation is complicated, and maintenance and repair are hard, the present invention provides a resistance-adjustable self-power-generating treadmill, which comprises: a chassis; a power generator mounted on the chassis to convert input power into electrical power for outputting; a belt driving device including two rollers, a circulating running belt, and a power transmission unit, the two rollers being rotatably mounted on the chassis, the circulating running belt being looped around the two rollers and is acted upon by an external force to move, in a circulating manner, in order to drive the rollers to rotate, the power transmission unit being coupled between one of the rollers and the power generator to transfer rotating power of the rollers to the power generator; a controller mounted on the chassis and electrically connected with the power generator to have electrical power generated by the power generator fed into the controller, the controller being operable to control a power generation amount of the power generator, the control of the power generation amount of the power generator by the controller being achieved by directly setting a power of the power generator between a maximum power generation amount and a minimum power generation amount of the power generator in order to set a resistance of the circulating running belt; a battery mounted on the chassis and electrically connected with the controller so that the controller transmits the electrical power generated by the power generator into the battery to have the electrical power accumulated and stored in the battery and to allow the battery to supply electrical power for operation of the controller; a handlebar connected, in an erected manner, on the chassis; and a display and control unit mounted on the handlebar to allow a user to watch messages and to control, through touching the display and control unit, the controller to adjust the power generation amount of the power generator, so that through adjusting the power generation amount of the power generator, the resistance that is applied from the power generator to the circulating running belt is controlled, and the controller is operable to directly set the power of the power generator to set the resistance of the circulating running belt.
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Thus, the above provides an introduction to the components of the resistance-adjustable self-power-generating treadmill 100 provided according to the preferred embodiment of the present invention, and the assembly thereof, and in the following, the operation feature will be described.
When a user operates the present invention, firstly, the feet step up and stand on the circulating running belt 32, and a finger touches an item of power generation amount on the display and control unit 70, and then, the user starts jogging or running on the circulating running belt 32 to drive the circulating running belt 32 to move in a circulating manner and also to drive the rollers 31 to rotate in synchronization therewith, so that the rollers 31 drives the pulley 331 and the belt 332 of the power transmission unit 33 to synchronously operate to feed rotating power into the power generator 20, to thereby allow the power generator 20 to generate electrical power, and to have the electrical power transmitted by means of the controller 40 into the battery 50 for accumulation and storage, and meanwhile, electrical power is supplied from the battery 50 to provide electricity necessary for the operation of the controller 40 and the display and control unit 70, so that no external power supply is necessary and an effect of self-power generation is achieved.
In the present invention, the display and control unit 70 comprises multiple option items of power generation amount for selection by the user. With the rotating speed of the power generator becoming higher or lower, the electrical power generated thereby becomes increased or decreased, and the higher the amount of electrical power generated by the power generator, the greater the resistance of the power generator itself, meaning a greater force must be applied to enable the power generator achieves the desired amount of power generation. Consequently, the present invention utilizes such a property of the power generator to allow the user to vary the resisting effect transmitted from the power generator 20 to the circulating running belt 32 at the same time of operating the items of power generation amount.
Further, through precise control, the user is allowed, provided that the power generator 20 has a sufficient rotating speed, to determine a current amount of power generation (namely the resisting force). For example, as shown in
Next, in addition to being supplied for operation of the controller 40 and the display and control unit 70, the electrical power stored in the battery 50 can also be fed to other loadings to enhance the performance of the present invention.
As such, the present invention provides that an effect of determining the level of resistance is achieved through controlling the power generation amount of the power generator, and no excessively large quantity of parts or devices is required, so as to achieve effects of reducing parts, lowering fabrication cost, simple operation, and easy maintenance.