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Simulation and experimental verification of permanent magnet adsorption unit for wall-climbing robot

机译:爬壁机器人永磁吸附单元的仿真与实验验证

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In order to meet the requirements that wall-climbing robot for ship degusting can adsorb on the hull surface and move flexibly, a new track-type permanent magnetic adsorption device is presented. It is made up of a plurality of permanent magnetic adsorption units and chains, using screws to connect. In this paper, the basic structure of the permanent magnetic adsorption unit is designed and the theoretical model of static magnetic field based on finite element analysis is established. Then, based on the finite element method, we analyze the key structural parameters of the permanent magnetic adsorption unit, obtain its distribution of magnetic induction intensity and magnetic adsorption capacity. According to the results of finite element analysis, we conduct an optimized analysis on the key structure parameters of the permanent magnetic adsorption unit. The analysis shows that the width parameter of the permanent magnet has the greatest influence on the adsorption capacity. Accordingly, the structure size of the adsorption unit is determined and the experimental verification is carried out. The experimental results show that the results of finite element analysis are accurate and reliable, the permanent magnetic adsorption unit we designed can provide sufficiently large adsorption capacity.
机译:为了满足船舶除味爬壁机器人能够吸附在船体表面并灵活移动的要求,提出了一种新型的履带式永磁吸附装置。它由多个永磁吸附单元和链条组成,并通过螺钉进行连接。本文设计了永磁吸附单元的基本结构,建立了基于有限元分析的静磁场理论模型。然后,基于有限元方法,分析了永磁吸附单元的关键结构参数,得出了其磁感应强度和磁吸附容量的分布。根据有限元分析的结果,我们对永磁吸附单元的关键结构参数进行了优化分析。分析表明,永磁体的宽度参数对吸附容量的影响最大。因此,确定了吸附单元的结构尺寸并进行了实验验证。实验结果表明,有限元分析结果准确可靠,我们设计的永磁吸附单元可以提供足够大的吸附能力。

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