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Anti-Wear Property of Aluminum–Silicon Alloy Treated by Chemical Etching, Mechanical Honing and Laser Finishing

机译:化学蚀刻,机械珩磨和激光整理处理铝 - 硅合金的抗磨损性能

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摘要

To enhance the anti-wear property of aluminum–silicon (Al–Si) alloy, three processing technologies—chemical etching, mechanical honing and laser finishing—were compared in terms of their effects on anti-wear performance. The treated Al–Si alloy cylinder liner samples were worn against a piston ring by a reciprocating sliding tribotester; the anti-wear performance was represented by the friction coefficient and wear loss; and the wear mechanism was determined by establishing stress contact models. The results showed that the best time for both the chemical etching and mechanical honing treatments was 2 min, and the optimal laser power was 1000 W for the laser finishing treatment. The three processing technologies could all remove the aluminum layer and make the silicon protrude on the surface to avoid the plastic flow of aluminum during the friction process. The laser finishing could not only protrude the silicon particle but also make its edge rounded and smooth, which decreased the stress concentration. Therefore, the Al–Si alloy cylinder liner treated with laser finishing had the best anti-wear performance.
机译:为了提高铝 - 硅(Al-Si系)合金的抗磨损性能,三个处理技术 - 化学蚀刻,机械珩磨和激光在其上的抗磨损性能效果而言精加工-进行比较。将处理过的Al-Si合金气缸套样品佩戴针对通过往复滑动tribotester的活塞环;抗磨损性能是由摩擦系数和磨损量表示;和磨损机制通过建立接触应力模型确定。结果表明,对于这两种化学蚀刻和机械珩磨处理的最佳时间为2分钟,最佳激光功率为1000瓦特的激光精加工处理。三种处理技术可以除去所有的铝层,并在表面上的硅突出,以避免铝时的摩擦过程中的塑性流动。激光精加工不仅可以突出硅颗粒也能使它的边缘圆润光滑,这降低了应力集中。因此,利用激光精加工处理的Al-Si合金缸套具有最好的抗磨损性能。

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