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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Development of copper-free eco-friendly brake-friction material using novel ingredients
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Development of copper-free eco-friendly brake-friction material using novel ingredients

机译:使用新型成分开发无铜环保制动摩擦材料

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Historically, copper (Cu) and its alloys have played a vital role as additives to non-asbestos friction materials (FMs). Their main functions include; to increase thermal conductivity, to act as a solid lubricant at high temperature, and to influence general tribological performance. Environmental concerns in most of the advanced countries have resulted in legislation to gradually phase out the use of Cu in FMs. Thus, the FM Industry is facing a challenge to replace Cu and its alloys in FMs with additives that will match the desired performance. The goal of this work was to test the potential of two new FM fillers (conductive rock-fibers and thermo-graphite-TG) on a brake dynamometer using standard test schedule (JASO 406). Five brake-pad materials, comprising two series, were developed with identical parent compositions. The first series called Copper Based (CB) consisted of two FMs with and without untreated Rockwool (RB) and natural graphite (NG). The second series designated as Copper-Free (CF) series contained three FMs with increasing wt% of rock fibers (10%, 15% and 20%), along with 10% TG. Physical and mechanical properties of the compression-molded pads were measured. Cu-based FM performed better than the Cu-free FMs, but not significantly in most of the important properties. For certain other properties, Cu-free FMs performed better. (C) 2016 Elsevier B.V. All rights reserved.
机译:从历史上看,铜(Cu)及其合金作为非石棉摩擦材料(FMs)的添加剂起着至关重要的作用。它们的主要功能包括:增加导热性,在高温下充当固体润滑剂,并影响一般的摩擦学性能。大多数先进国家对环境的关注导致立法逐步淘汰FM中使用Cu。因此,FM工业面临着用匹配所需性能的添加剂替代FM中的Cu及其合金的挑战。这项工作的目的是使用标准测试计划表(JASO 406)在制动测功机上测试两种新型FM填充物(导电岩石纤维和热石墨纤维TG)的潜力。用相同的母体成分开发了包括两个系列的五种刹车片材料。第一个系列称为铜基(CB),由两个FM组成,带有和不带有未经处理的岩棉(RB)和天然石墨(NG)。第二个系列称为无铜(CF)系列,其中包含三个FM,其中岩石纤维的wt%增加(10%,15%和20%),而TG则增加10%。测量了压模垫的物理和机械性能。铜基调频的性能要好于无铜调频,但在大多数重要性能上却不显着。对于某些其他性能,无铜FM表现更好。 (C)2016 Elsevier B.V.保留所有权利。

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