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首页> 外文期刊>Biomimetics >Structure and Frictional Properties of the Leg Joint of the Beetle &i&Pachnoda marginata&/i& (Scarabaeidae, Cetoniinae) as an Inspiration for Technical Joints
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Structure and Frictional Properties of the Leg Joint of the Beetle &i&Pachnoda marginata&/i& (Scarabaeidae, Cetoniinae) as an Inspiration for Technical Joints

机译:甲虫腿部腿部的结构和摩擦性质。pachnoda marginata& / i& (Scarabaeidae,Cetoniinae)作为技术关节的灵感

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摘要

The efficient locomotion of insects is not only inspiring for control algorithms but also promises innovations for the reduction of friction in joints. After previous analysis of the leg kinematics and the topological characterization of the contacting joint surfaces in the beetle &i&Pachnoda marginata,&/i& in the present paper, we report on the measurement of the coefficient of friction within the leg joints exhibiting an anisotropic frictional behavior in different sliding directions. In addition, the simulation of the mechanical behavior of a single microstructural element helped us to understand the interactions between the contact parts of this tribological system. These findings were partly transferred to a technical contact pair which is typical for such an application as joint connectors in the automotive field. This innovation helped to reduce the coefficient of friction under dry sliding conditions up to 17%.
机译:有效的昆虫运动的运动不仅鼓励控制算法,而且还承诺为减少关节摩擦的创新。在先前分析腿运动学和甲虫中的接触关节表面的晶体表征之后.Pachnoda Marginata,& / i&在本文中,我们报告了在不同滑动方向上表现出各向异性摩擦行为的腿部接头中的摩擦系数的测量。另外,单个微结构元件的力学行为的模拟有助于我们理解该摩擦学系统的接触部分之间的相互作用。这些发现部分转移到技术接触对中,这是典型的,因为这种应用是汽车领域的关节连接器。这种创新有助于减少干燥滑动条件下的摩擦系数,高达17%。

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