The present invention relates to a torque measuring device for a flywheel, and more particularly to a torque measuring device that is used in measuring torque of a flywheel.
To perform physical training without being affected by outdoor weather, people will ride exercise bikes indoors for physical training.
An exercise bike has a frame, a flywheel, a resistance adjusting assembly, and a transmission mechanism. The flywheel is rotatably mounted on the frame. The resistance adjusting assembly is mounted on the frame and used for providing resistance to the flywheel. The transmission mechanisms is connected to the flywheel through a belt or a chain. In the first place, a user can pedal the transmission mechanism to rotate the flywheel, and adjust the resistance adjusting assembly to provide the resistance to the flywheel according to his physical condition and training demand, to achieve the effect of fitness and training.
To measure exercise status of the user when using the exercise bike, a conventional torque measuring device is mounted on a shaft that is for mounting the flywheel and measures rotation of the flywheel when the flywheel rotates, so as to calculate output power of the user. Wherein, the conventional torque measuring device comprises a magnet fixed on the shaft and a measuring assembly. The measuring assembly has a sleeve, multiple measuring apparatuses, a transmission member, and a housing. The sleeve is mounted around the shaft. The multiple measuring apparatuses are disposed on and arranged around an outer circumferential surface of the sleeve. The transmission member is assembled to an end of the sleeve and connected to the belt or the chain of the transmission mechanism. The housing is mounted on an outside of the sleeve and fixed on the flywheel.
When the user pedals, the transmission mechanism simultaneously drives the transmission member of the measuring assembly and the flywheel to rotate, thereby causing relative rotation of the magnet fixed on the shaft and the measuring apparatuses of the measuring assembly, such that torque can be measured. However, due to the way to assemble the sleeve, the transmission member, and the housing of the measuring assembly, structure of the conventional torque measuring device is complicated, such that it is inconvenient to assemble the conventional torque measuring device. Moreover, when the transmission mechanism drives the transmission member to rotate, the sleeve, the transmission member, and the housing may rotate relative to each other, thereby affecting accuracy of the torque measured by the conventional torque measuring device.
To overcome the shortcomings, the present invention provides a torque measuring device for a flywheel to obviate the aforementioned problems.
The main objective of the invention is to provide a torque measuring device for a flywheel to solve the problem that the conventional torque measuring device is complicated in structure, is inconvenient for assembling, and is inaccurate in measuring torque.
The torque measuring device is mounted on a frame of an exercise bike which has a flywheel, a wheel shaft mounted through the flywheel, and a transmission mechanism driving the flywheel. The torque measuring device connects the flywheel, the wheel shaft, and the transmission mechanism. The torque measuring device comprises a base, a measuring assembly, a communication module, and a power module. The base is rotatably mounted on the wheel shaft and has a combination portion, a connection portion, and a transmission portion. The combination portion has a first side and a second side. The first side is fixed to the flywheel. The second side is opposite to the first side. The connection portion is attached to the first side of the combination portion and has an outer peripheral surface. The transmission portion is disposed next to the connection portion and connected to the transmission mechanism.
The measuring assembly is mounted on the wheel shaft and the base and has a magnet and multiple torque measuring apparatuses. The magnet is mounted on the wheel shaft. The multiple torque measuring apparatuses are mounted on and arranged around the outer peripheral surface of the connection portion of the base.
The communication module is mounted on the second side of the combination portion of the base. The communication module receives and outputs measurement data measured by the measuring assembly.
The power module is mounted on the second side of the combination portion of the base and provides electricity to the communication module and the multiple torque measuring apparatuses.
Therefore, the torque measuring device in accordance with the present invention has the following advantages.
1. Convenience of assembly and maintenance: as the measuring assembly, the communication module, and the power module are mounted on the base, and the base can be directly assembled on the exercise bike, installation convenience can be improved. Moreover, the communication module and the power module are mounted on the second side of the combination portion and are exposed without being shielded so that ease in maintenance can be facilitated.
2. Increasing the torque force measurement accuracy: since the measuring assembly, the communication module, and the power module are mounted on the base, the transmission mechanism can drive the base to rotate by direct transmission so that the multiple torque measuring apparatuses located on the base can rotate simultaneously along with the base. Influence of the assembly tolerance between components during the process of the torque measurement can be avoided, and accordingly, the accuracy of the torque measurernent can be improved.
Other objects, advantages and novel features of the invention will become more apparent from the following detailed description when taken in conjunction with the accompanying drawings.
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Accordingly, in the torque measuring device of the present invention, with the simplified structure that the measuring assembly 20, the communication module 30, and the power module 40 are mounted on the base 10, the user can directly assemble the torque measuring device on the exercise bike 50 to improve installation convenience and facilitate inspection or replacement. In addition, the transmission mechanism 54 can drive the base 10 to rotate by direct transmission so that the multiple torque measuring apparatuses 22 located on the base 10 can rotate simultaneously along with the base 10. Influence of the assembly tolerance between components during the process of the torque measurement can be avoided, and accordingly, the accuracy of torque measurement can be improved.