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A Safe Torque Limiter Design Applied to An Assistive Walking Device against Unexpected Load

机译:安全扭矩限制器设计应用于辅助行走装置,以应对意外负载

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Considering the practical situations of the assistive device, user regularly encounters unbalance postures which induce unexpected load to break the elements of the servo motor. This study aims to design a torque limiter for protecting the assistive walking device against the unexpected load and extending the service lives. We applied sandwich structure design which arranged the material sheet between the output shaft and final gear. When the surface forces of the material sheet over the limit friction load, the output shaft slipped and protected the device simultaneously. Hence, the properties of material sheet play a key role in this torque limiter. We have developed two types (with/ without groove), and experimentally validate the friction torque performance of NBR and PVC materials by using these torque limiters. Finally, by assembling this torque limiter into our developed assistive walking device that can conduct the same actuating motions as the unmodified motor, and prevent the equipped motor broken from the unexpected load.
机译:考虑到辅助设备的实际情况,用户经常会遇到不平衡姿势,这会导致意外负载,从而损坏伺服电机的元件。这项研究旨在设计一种扭矩限制器,以保护辅助步行设备免受意外负载的影响并延长使用寿命。我们采用了三明治结构设计,将材料表布置在输出轴和最终齿轮之间。当板材的表面力超过极限摩擦载荷时,输出轴会打滑并同时保护设备。因此,材料板的性能在该扭矩限制器中起着关键作用。我们开发了两种类型(带/不带凹槽),并通过使用这些扭矩限制器实验性地验证了NBR和PVC材料的摩擦扭矩性能。最后,通过将扭矩限制器组装到我们开发的辅助步行设备中,该辅助步行设备可以执行与未修改的电动机相同的致动运动,并防止配备的电动机因意外负载而损坏。

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