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Emission rate assessment of airborne brake particles by characterization of the pad and disc surfaces from a pin-on-disc tribometer

机译:通过从圆盘摩擦计的垫和盘表面表征通过垫和盘表面的排放率评估空气制动粒子

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摘要

Particles from brake, road and tire wear contribute to about half of the emissions (PM10) of particulate traffic pollution. It is estimated that 50 to 70% of the brake debris material is transformed into an emission of polydisperse aerosols. In order to improve the understanding of the brake debris generation and its dependency on the brake material, the wear of a disc and a brake pad from a standard production car were studied. The disc was made of perlitic cast iron with lamellar graphite and subjected to standard braking cycles. Microscopic evaluation was performed on the disc track, as well as analyses by Energy Dispersive Spectroscopy (EDS). Finally, a metallographic section has been made in the longitudinal direction of friction to better understand the morphology. The study focuses on disc surface oxidation and morphology of a thin layer on both disc and pin surface. Particle concentrations increase with the friction power and the area of contact surface. The observations show that the generation of particles can be the result of the oxidation of the disc surface during friction by two- and three-body abrasion when braking.
机译:制动器,道路和轮胎磨损的粒子有助于颗粒状交通污染的排放量(PM10)的一半。估计,50至70%的制动碎片材料转化为多分散气溶胶的排放。为了改善制动器碎片生成及其对制动材料的依赖性的理解,研究了圆盘和来自标准生产汽车的制动垫的磨损。盘由具有层状石墨的Perlitic铸铁制成并进行标准制动循环。在盘轨上进行微观评估,以及通过能量分散光谱(EDS)的分析。最后,在纵向摩擦方向上进行了金相部分,以更好地理解形态。该研究侧重于圆盘和销表面上薄层的盘表面氧化和形态。颗粒浓度随着摩擦力和接触表面的面积而增加。观察结果表明,在制动时,颗粒的产生可以是盘表面摩擦期间的摩擦的结果。

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