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Material characterisation of lightweight disc brake rotors

机译:轻型盘式制动器转子的材料表征

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Alumina coated lightweight brake rotors were investigated to evaluate the effect of coating properties on their friction performance and thermal durability. An alumina ceramic coating on AA6082 aluminium alloy (Al-Alloy) and on 6061/40SiC aluminium metal matrix composite (Al-MMC) prepared by plasma electrolytic oxidation was studied using a programme of brake dynamometer and material characterisation tests. The results showed that the plasma electrolytic oxidation alumina layer adhered well to the Al-alloy substrate and was more uniform and durable when compared to that on the aluminium metal matrix composite. The plasma electrolytic oxidation layer significantly improved the hardness of the rotor surface for both Al-alloy and aluminium metal matrix composite substrate. The coated Al-alloy disc brake rotor was demonstrated to give good thermal and friction performance up to high rubbing surface temperatures of the order of 550?, but the rotor eventually failed due to temperature build-up at a critical location.
机译:研究了氧化铝涂层的轻型制动转子,以评估涂层性能对其摩擦性能和热耐久性的影响。利用制动测功机程序和材料性能测试,研究了AA6082铝合金(Al-Alloy)和6061 / 40SiC铝金属基复合材料(Al-MMC)上的氧化铝陶瓷涂层的等离子体电解氧化性能。结果表明,与铝金属基复合材料相比,等离子体电解氧化氧化铝层与铝合金基材的粘附性好,并且更加均匀和耐用。等离子体电解氧化层显着提高了铝合金和铝金属基复合材料基板转子表面的硬度。已证明,经涂层的铝合金盘式制动器转子在高达550°C的高摩擦表面温度下具有良好的热和摩擦性能,但由于在关键位置温度升高,转子最终失灵。

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