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首页> 外文期刊>Tribology in Industry >Investigation of Tribological Properties of Friction Pairs Duralumin – Fluoropolymer Used for Design and Manufacturing of Biomechatronic Devices
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Investigation of Tribological Properties of Friction Pairs Duralumin – Fluoropolymer Used for Design and Manufacturing of Biomechatronic Devices

机译:用于设计和制造生物机电设备的硬质合金-氟橡胶摩擦对的摩擦学性能研究

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This paper deals with the processes occurring on the surfaces of materials during the interaction between metal and non-metal parts of various biomechatronic devices, such as prostheses, orthoses and exoskeletons. These mechatronic systems require careful selection of materials for design and manufacturing of their parts taking into consideration not only mechanical properties of the materials, but also their tribological characteristics. Friction pairs duralumin – fluoropolymer and stainless steel 100CrMn6 – fluoropolymer were chosen for the research as the samples. Experimental research was carried out with the use of the universal friction machine MTU-1. For this research, the scheme “plate-on-plate” was used without lubricants. Friction torque, friction coefficient and the temperature in the contact area versus the runtime were obtained as a result of the experiments. Furthermore, estimation of wear of contacting samples was performed. Analysis of the results allowed us to choose suitable materials for design and manufacturing of orthoses, prostheses and exoskeletons.
机译:本文探讨了各种生物机电设备(例如假肢,矫形器和外骨骼)的金属和非金属零件之间相互作用期间材料表面上发生的过程。这些机电系统需要仔细选择材料来设计和制造其零件,不仅要考虑材料的机械性能,还要考虑其摩擦学特性。摩擦对采用硬铝-含氟聚合物和不锈钢100CrMn6-含氟聚合物作为样品。使用万能摩擦机MTU-1进行了实验研究。在这项研究中,使用“板对板”方案而不使用润滑剂。通过实验获得了摩擦扭矩,摩擦系数和接触区域的温度与运行时间的关系。此外,进行接触样品的磨损估计。对结果的分析使我们能够选择合适的材料来设计和制造矫形器,假体和骨骼。

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