首页> 外文期刊>SAE International Journal of Materials and Manufacturing >Identification of Organic Compounds Released from Low-Metallic Automotive Model Brake Pad and its Non-Airborne Wear Particles
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Identification of Organic Compounds Released from Low-Metallic Automotive Model Brake Pad and its Non-Airborne Wear Particles

机译:低金属汽车模型刹车片及其非机载磨损颗粒释放的有机化合物的鉴定

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摘要

The brake wear contribution to the environmental pollution has been extensively discussed, with major focus on asbestos and heavy metals released to the environment. Only limited attention was paid to released organic compounds generated during friction processes, although the organic and carbonaceous components are not the minor part in brake lining formulations. Friction processes in brakes are associated with relatively high temperatures and high pressures on the friction surfaces which relates to the thermal decomposition of the organic components in friction materials and to brake lining thermal fade. Thus, this study focuses on the identification of organic compounds released from a model low metallic brake material. Several methods were used for the analysis: GC/MS screening of brake pad samples, brake wear debris and carbonaceous raw materials used in formulations of model pads; GC/MS screening of brake pad samples pyrolyzed at 300, 750, and 1000℃, respectively, and FTIR analysis of brake pads and their wear debris. Higher quantity of organic compounds was identified in extract of the milled brake pad composite compared to the wear debris. More than 80 organic compounds were identified to be potentially released during braking. The major constituents were phenols, aliphatic and aromatic hydrocarbons, and their derivatives. Some of the identified compounds are known to have adverse effects even with mutagenic and carcinogenic potency to humans.
机译:制动器磨损对环境污染的影响已被广泛讨论,主要关注释放到环境中的石棉和重金属。尽管在制动衬片配方中有机和碳质成分并不是次要部分,但对摩擦过程中产生的释放出的有机化合物的关注很少。制动器中的摩擦过程与摩擦表面上的相对较高的温度和较高的压力有关,这与摩擦材料中有机成分的热分解以及制动器衬片的热褪色有关。因此,本研究着重于鉴定从模型低金属制动材料释放的有机化合物。分析使用了几种方法:GC / MS筛分制动衬块样品,制动磨损碎片和模型衬块配方中使用的含碳原料;用GC / MS筛选分别在300、750和1000℃下热解的刹车片样品,并对刹车片及其磨损碎片进行FTIR分析。与磨屑相比,磨碎的刹车片复合材料的提取物中发现了更多的有机物。刹车期间可能释放出80多种有机化合物。主要成分是苯酚,脂肪族和芳香族烃及其衍生物。已知某些鉴定出的化合物即使对人类具有致突变和致癌作用,也会产生不利影响。

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