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Investigations of Friction and Wear in Pultruded Glass Fibre Epoxy Composites

机译:拉挤玻璃纤维环氧复合材料中摩擦和磨损的研究

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Polymer composites are well known for offering high strength-to-weight ratios and flexibility in material design. Physical properties of a composite can be satisfied various functional requirements of a target application, including stiffness and strength, thermal and electrical transport, and wear resistance. Composites are designed to fulfill several functions simultaneously. Friction and wear experiments of pultruded glass fibre epoxy composite (GFEC) were carried out at ambient conditions using Pin on disc (POD) machine arrangement. Tribological characterization of material determining wear and friction coefficient at different operating parameters. This paper outlines a methodology based on Taguchi's experimental design approach to make a parametric analysis of sliding wear and friction behaviour. The systematic experimentation leads to determination of significant process parameters that predominantly influence on the wear and friction co-efficient.
机译:众所周知,聚合物复合材料是为材料设计提供高强度重量的比率和柔韧性。复合材料的物理性质可以满足目标应用的各种功能要求,包括刚度和强度,热和电气传输,以及耐磨性。复合材料旨在同时满足多个功能。使用销钉(POD)机器装置在环境条件下在环境条件下进行拉挤玻璃纤维环氧复合物(GFEC)的摩擦和磨损试验。不同操作参数的材料确定磨损和摩擦系数的摩擦学特征。本文概述了基于Taguchi的实验设计方法的方法,使滑动磨损和摩擦行为的参数分析。系统实验导致确定主要对磨损和摩擦共同影响的重要过程参数。

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