Optimization design of microstroke table for gecko adhesives actuating

Jiayu Ye, Zhongyi Chu, Jing Cui
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Abstract

Gecko-inspired adhesive pads have a wide range of application with their characteristics of low preload, strong adhesion and easy detachment. However, the appearance of adhesive force needs adhesive pads with a micro-scale displacement to engage. Therefore, the microstroke table must be designed. In order to have a better adaptability for several surface structures, it is necessary to optimize the microstroke table. In this paper, the relationship between the model of the microstroke table and three kinds of surface structures has been presented. On this basis, key parameters of the model has been optimized by the Sequential Quadratic Programming (SQP) method. With the optimized parameters, the microstroke table can have a better adaptability for different kinds of surface structures and improve the efficiency of the driving energy.
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壁虎胶粘剂驱动微行程工作台的优化设计
壁虎胶垫具有预紧力低、附着力强、易剥离等特点,应用范围广。然而,粘接力的出现需要粘接垫以微尺度位移接合。因此,必须设计微冲程工作台。为了对多种表面结构具有更好的适应性,有必要对微行程工作台进行优化。本文给出了微冲程工作台的模型与三种表面结构的关系。在此基础上,采用序列二次规划方法对模型的关键参数进行了优化。优化后的微行程工作台对不同表面结构具有更好的适应性,提高了驱动能量的效率。
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