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Possible stibnite transformation at the friction surface of the semi-metallic friction composites designed for car brake linings

机译:用于汽车制动衬片的半金属摩擦复合材料的摩擦表面可能发生辉锑矿转变

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摘要

After a friction process several changes in phase composition of friction composites are often registered. High temperature, accompanied by high pressure induced during braking can cause initiation of chemical reactions which do not run at room or elevated temperatures under the atmospheric pressure. Most of the studies in the field of tribochemistry at friction surfaces of automotive semi-metallic brake linings deal with phenolic resin degradation and corrosion of metallic components. The paper addresses the formation of elemental antimony as well as the alloying process of iron with antimony observed on the surface of laboratory prepared semi-metallic friction composites containing stibnite. The role of alumina abrasives in the process of stibnite transformation is also discussed and mechanism of stibnite transformation was outlined.
机译:在摩擦过程之后,通常会记录到摩擦复合材料的相组成发生若干变化。高温以及在制动过程中产生的高压会导致化学反应的启动,这种化学反应在室温或大气压下的高温下不会发生。汽车半金属制动衬片摩擦表面摩擦化学领域的大多数研究涉及酚醛树脂的降解和金属部件的腐蚀。本文讨论了在实验室制备的含辉石的半金属摩擦复合材料表面观察到的元素锑的形成以及铁与锑的合金化过程。还讨论了氧化铝磨料在辉石转变过程中的作用,并概述了辉石转变的机理。

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