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Influence of operating performance of friction parameters on the composites based on combinations of rock fibers and organic fibers

机译:岩石纤维和有机纤维组合对摩擦参数运行性能的影响

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摘要

The dynamic frictional response of a multicomponent friction composite is highly complex under a set of variable loads and speeds. The present paper discusses the sensitivity of friction and wear behaviour to braking pressure and sliding speed of four selected composites based on a variation of combinations of rock fibers (Basalt and Lapinus) and organic fibers (Aramid and PAN). The studies on the sensitivity of mu and wear to the operating variables were carried out with the help of a pad-on-disc type tribo-test-rig following 4 loads X 3 speeds experiemental design. Regression analysis of the mu values following an orthogonal L-theta (3 X 3) experimental design method revealed that the first-order influences of braking pressure and sliding speed were significant while the contribution of their mutual interaction was minor. It was observed that aramid fiber proved most beneficial in modifying the selected performance properties except friction stability at higher pressure and speed conditions. Lapinus proved to have an edge over basalt in most aspects. The SEM studies on the worn-pad surfaces revealed the role of contact patches and differential topographic attributes in controlling the friction and wear performance of these composites.
机译:在一组可变的载荷和速度下,多组分摩擦复合材料的动摩擦响应非常复杂。本文基于岩石纤维(玄武岩和羽扇豆)和有机纤维(芳纶和PAN)的组合变化,讨论了四种所选复合材料的摩擦磨损性能对制动压力和滑动速度的敏感性。在4个负载X 3速实验设计的帮助下,借助于盘式摩擦试验台对mu和磨损对工作变量的敏感性进行了研究。遵循正交L-theta(3 X 3)实验设计方法对mu值进行回归分析,结果显示,制动压力和滑动速度的一级影响很大,而相互影响的贡献很小。观察到,除了在较高压力和速度条件下的摩擦稳定性外,芳纶纤维被证明对改变所选的性能最有利。事实证明,拉皮努斯在大多数方面都比玄武岩更具优势。在磨损垫表面上的SEM研究表明,接触斑块和不同的形貌属性在控制这些复合材料的摩擦和磨损性能中发挥了作用。

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