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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Studies on reduced scale tribometer to investigate the effects of metal additives on friction coefficient - Temperature sensitivity in brake materials
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Studies on reduced scale tribometer to investigate the effects of metal additives on friction coefficient - Temperature sensitivity in brake materials

机译:减少摩擦磨损仪研究金属添加剂对摩擦系数的影响-制动材料的温度敏感性。

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Standard methods practiced by the industry to evaluate performance of friction materials need huge infrastructure, manpower and time. It is necessary for researchers working in this applied field to develop a different approach to screen the potential of friction materials on reduced scale prototype (RSP) which would rank the materials based on performance. In this paper a new test methodology is reported to study the influence of metallic contents on temperature sensitivity of friction composites on RSP. Three friction composites were developed with identical parent composition (90% by wt.) except metallic filler viz. brass, copper and iron powder (10% by wt.). One more was developed without metallic powder by adjusting 10% amount with barite (space filler). All composites were characterized for physical, chemical and mechanical properties. These were tribo-tested on RSP for friction, wear, fade and recovery behavior as per new test methodology. It was concluded that with use of metal contents, friction and wear performance of composites improved in general. Copper containing composite showed best friction and wear behavior followed brass, while iron powder based composite showed moderate behavior. Thus new test methodology proved very effective to rank the performance of friction composites.
机译:工业界用来评估摩擦材料性能的标准方法需要大量的基础设施,人力和时间。对于从事该应用领域的研究人员来说,有必要开发一种不同的方法来筛选缩小尺寸的原型(RSP)上的摩擦材料的潜力,从而根据性能对这些材料进行排名。本文报道了一种新的测试方法,以研究金属含量对RSP摩擦复合材料的温度敏感性的影响。开发了三种摩擦复合材料,除了金属填料即具有相同的母体组成(90%(重量))。黄铜,铜和铁粉(按重量计10%)。通过用重晶石(空间填充剂)调节10%的量,又开发出一种没有金属粉末的粉末。所有复合材料均具有物理,化学和机械性能。按照新的测试方法,对它们进行了RSP摩擦测试,以确定其摩擦,磨损,褪色和恢复性能。结论是,随着金属含量的使用,复合材料的摩擦和磨损性能总体上得到改善。含铜复合材料表现出最佳的摩擦和磨损性能,其次于黄铜,而铁粉基复合材料则表现出中等的性能。因此,新的测试方法被证明非常有效地对摩擦复合材料的性能进行排名。

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