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首页> 外文期刊>Applied composite materials >Uniform Design of Optimizing Formulation of Friction Materials with Composite Mineral Fiber (CMF) and Their Friction and Wear Behavior
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Uniform Design of Optimizing Formulation of Friction Materials with Composite Mineral Fiber (CMF) and Their Friction and Wear Behavior

机译:复合矿物纤维(CMF)摩擦材料优化配方及其摩擦磨损性能的均匀设计

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摘要

In this work, the uniform design method was applied to arrange the experimental scheme for optimizing formulation of friction materials. The friction and wear of the friction materials based on the optimized formulation was carried out on a constant speed friction tester (JF150D-II), using pad-on-disc contact mode against gray cast iron disc. The worn surfaces of the friction materials were examined by scanning electron microscopy (JSM5310) and the friction mechanism was discussed. The results showed that the uniform design method was appropriate for finding the optimum formulation of the friction materials with better properties. Compared with two conventional friction materials, the friction materials based on the optimized formulation possessed higher and stable friction coefficient and higher wear resistance, even at the disc temperature of 350°C. The adhesion, strain fatigue and abrasive wear were the main wear mechanisms of the friction materials. Tribo-chemical phenomenon and plastic deformation existed on the worn surface layer.
机译:在这项工作中,采用统一的设计方法来安排优化摩擦材料配方的实验方案。基于优化配方的摩擦材料的摩擦和磨损是在恒速摩擦测试仪(JF150D-II)上进行的,使用的是灰口铸铁盘上的盘对盘接触模式。通过扫描电子显微镜(JSM5310)检查了摩擦材料的磨损表面,并讨论了摩擦机理。结果表明,均匀的设计方法适用于寻找性能更好的摩擦材料的最佳配方。与两种传统的摩擦材料相比,基于优化配方的摩擦材料即使在350°C的制动盘温度下仍具有更高且稳定的摩擦系数和更高的耐磨性。附着力,应变疲劳和磨料磨损是摩擦材料的主要磨损机理。磨损表层存在摩擦化学现象和塑性变形。

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