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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >A pin-on-disc tribometer study of disc brake contact pairs with respect to wear and airborne particle emissions
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A pin-on-disc tribometer study of disc brake contact pairs with respect to wear and airborne particle emissions

机译:关于磨损和空气粒子排放的盘式制动触点对的引脚盘式摩擦计研究

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摘要

In the EU, PM10 from the wear of disc brakes can contribute up to 50% of the total non-exhaust emissions from road transport. The wear originates from the contact surfaces of the fridtion material and the disc. One possible way to decrease PM10 emissions is to change the materials of the contact pair in terms of composition and coatings. The wear and particle emissions of three novel friction material formulations, one novel disc formulation, one disc WC/CoCr coating realized with the HVOF technique, and one disc surface treatment realized by a nitriding process, were investigated. Pin-on-disc tests were run to rank the novel materials in terms of specific wear rate and particle number and mass rate. The results show that it is possible to achieve a reduction in particle emissions of up to 50% by changing the materials of the contact pair.
机译:在欧盟,圆盘制动器的磨损的PM10可以有助于公路运输总非排气的50%。 磨损源自铁路材料和盘的接触表面。 减少PM10排放的一种可能方法是根据组合物和涂层改变接触对的材料。 研究了三种新型摩擦材料配方的磨损和颗粒排放,一种新型盘配方,一种用HVOF技术实现的一盘WC / COCT涂料,以及通过氮化过程实现的一种盘表面处理。 在特定磨损率和粒子数和质量速率方面,运行引脚盘测试以对新颖材料进行排名。 结果表明,通过改变接触对的材料,可以实现高达50%的颗粒排放的降低。

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