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首页> 外文期刊>Advances in Mechanical Engineering >Design, analysis and experiment of finger soft actuator with nested structure for rehabilitation training
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Design, analysis and experiment of finger soft actuator with nested structure for rehabilitation training

机译:用嵌套结构设计,分析和试验康复培训结构

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Compared with the rigid hand rehabilitation robot, the soft hand rehabilitation robot has the advantages of good flexibility, which is of great significance to its research. In order to make the soft hand rehabilitation robot have the advantages of high stiffness and simple manufacturing process, a nested structure is proposed for finger soft actuator in this paper. The nested structure consists of outer restraint structure and inner core structure. The inner core structure can realize deformation under the action of air pressure. The outer restraint structure can improve bending efficiency by restraining deformation in non-functional direction of inner core structure. On this basis, the processing technology of nested structure is designed, and the effect of structural parameters on performance is analyzed. In order to illustrate the advantages of nested structure, the performance of nested structure and fiber-constrained structure is compared by simulation, which includes bending angle, gripping force and expansion amount (by measuring the deformation of the cross section). The simulation results show the advantages of the nested structure. A prototype of the soft hand rehabilitation robot is developed with nested structure as finger soft actuator, and the experimental results prove the feasibility of design. The results of this study provide a reference for the structure design of soft hand rehabilitation robot.
机译:与刚性手工康复机器人相比,柔软的手工康复机器人具有良好的灵活性,这对其研究具有重要意义。为了使软手康复机器人具有高刚度和简单的制造工艺的优点,本文提出了一种嵌套结构,用于手指软致动器。嵌套结构包括外部约束结构和内核结构。内芯结构可以在空气压力作用下实现变形。外部约束结构可以通过限制内芯结构的非功能方向的变形来提高弯曲效率。在此基础上,设计了嵌套结构的加工技术,分析了结构参数对性能的影响。为了说明嵌套结构的优点,通过模拟比较嵌套结构和光纤约束结构的性能,包括弯曲角度,夹持力和膨胀量(通过测量横截面的变形)。仿真结果表明嵌套结构的优点。软手康复机器人的原型是用嵌套结构开发的,作为手指软执行器,实验结果证明了设计的可行性。本研究的结果为软手康复机器人的结构设计提供了参考。

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