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Friction and Wear Responses with Metallic Composite Materials to Replace Copper and Copper Alloys in Brake Pad Formulations

机译:用金属复合材料摩擦和磨损响应,以更换制动垫配方中的铜和铜合金

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Copper and copper alloys are widely used in friction materials such as brake pad formulations as one of key ingredients by providing good thermal conductivity and high temperature friction stability to achieve desired friction performance, fade and wear resistance. However, the use of copper or copper containing material is being restricted in brake pads due to environment and health concerns. Extensive works have been made to explore the copper substitutes but most of these efforts became ineffective and failed with issues either thermal fade or excessive pad/rotor wear. In this paper, friction and wear responses were examined when a metallic composite material was used as the copper substitute in NAO and Low-met brake formulations where the copper and copper alloys were added 8% and 22% respectively. Full scale automotive brake dynamometer tests were performed based on the SAE J2430 test procedure to compare the metallic composite containing friction samples with the baseline friction samples. The studies in this paper demonstrated the potential opportunity of using the metallic composite material as copper substitute to manufacture Cu-free brake pad formulation with good thermal resistance and low rotor/pad wear.
机译:通过提供良好的导热性和高温摩擦稳定性,铜和铜合金广泛用于摩擦材料,例如制动垫配方作为主要成分之一,以实现所需的摩擦性能,褪色和耐磨性。然而,由于环境和健康问题,使用铜或含铜材料的使用是限制在制动垫中。已经进行了广泛的作品来探索铜替代物,但大多数这些努力变得无效,并且由于热褪色或过度垫/转子磨损而失败。在本文中,当使用金属复合材料作为NaO和低满足制剂中的铜代替时,检查摩擦和磨损反应分别加入8%和22%的铜和铜合金。基于SAE J2430测试程序进行全尺寸汽车制动测量计测试,以比较含有基线摩擦样品的金属复合材料含有摩擦样品。本文的研究证明了使用金属复合材料作为铜替代品的潜在机会,以制造具有良好的耐热性和低转子/垫磨损的无动机制动垫配方。

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