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Development of a dipping wire method to improve the abrasion resistance of a plastic wire

机译:开发浸渍线方法以提高塑料线的耐磨性

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In this study, the concept of a self-repairing wire for tendon-driven robots was proposed. A wire in a tendon-driven robot is worn by friction between the tendon and pulley and also between the tendon and guide rail. A worn tendon may lead to breakage of the tendon and makes it difficult to control the robot. In this study, a method to continuously protect the wire surface was proposed to inhibit tendon abrasion. A polymer layer was formed around the catalyst by coating the surface of the wire with a catalyst and supplying liquid resin to the surface. The layer protected the wire from abrasion and the wire re-formed itself when it was worn by abrasion. Specifically, when the wire was abraded, the catalysts reacted with the liquid resin to re-form the coating. In the study, three experiments were conducted and the results confirmed that the wire was protected from abrasion by re-coating itself.
机译:在这项研究中,提出了用于肌腱驱动机器人的自修复线的概念。肌腱驱动机器人中的钢丝由于肌腱与滑轮之间以及肌腱与导轨之间的摩擦而磨损。肌腱磨损可能会导致肌腱断裂,并使其难以控制机器人。在这项研究中,提出了一种连续保护金属丝表面的方法来抑制肌腱磨损。通过用催化剂涂覆线的表面并向该表面供应液态树脂,在催化剂周围形成聚合物层。该层保护金属丝免受磨损,并且当金属丝被磨损磨损时,金属丝自身重新形成。具体地,当金属丝被磨蚀时,催化剂与液态树脂反应以重新形成涂层。在这项研究中,进行了三个实验,结果证实,通过重新涂覆自身,可以保护金属丝免受磨损。

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