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Wear Properties of Thixoformed Al-5.7Si-2Cu-0.3Mg Aluminium Alloy

机译:触变性Al-5.7Si-2Cu-0.3Mg铝合金的磨损性能

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Earlier work has shown that Al-5.7Si-2Cu-0.3Mg aluminium alloy is suitable for thixoforming process. Here, the dry sliding wear behaviour of the alloy, in the as-cast and thixoformed conditions were investigated. The cooling slope technique was used to produce the alloy with globular microstructure for the thixoforming process. Both the thixoformed and cast samples were subjected to T6 heat treatments prior to the wear tests. The tests were carried out using a pin-on-disc tribometer, against a hardened M2 tool steel disc of 62 HRC at different loads, under dry sliding conditions at fixed sliding speed and sliding distance of 1 m.s~(-1) and 5 km respectively. The microstructural response, worn surfaces was thoroughly and carefully examined using various methods such as scanning electron microscopy, energy dispersive spectroscopy, and differential scanning calorimetry. The density of the heat treated thixoformed alloys showed significant increase in the hardness property, among others, due to its reduced porosity. Their wear test results also observed that the weight loss of materials increase with an increase in the input load and the sliding distance for all samples. However, the as-cast alloy displayed higher wear rate compared with the thixoformed alloys. In general, the wear mechanisms showed a mixture of abrasive, oxidative and delamination wear (mild wear) at low applied loads and mainly an adhesive (severe wear) at high applied loads.
机译:早期工作表明,Al-5.7Si-2Cu-0.3Mg铝合金适用于触变性成型。在此,研究了合金在铸态和触变条件下的干滑动磨损行为。使用冷却斜率技术生产具有球状微观结构的合金,以进行触变性成型。在磨损测试之前,触变成型和铸造样品均经过T6热处理。测试是使用销钉盘式摩擦计在固定的滑动速度和1 ms〜(-1)的滑动距离和5 km的干滑条件下,在不同载荷下对62 HRC的硬化M2工具钢盘进行的。分别。使用各种方法,例如扫描电子显微镜,能量分散光谱和差示扫描量热法,对显微结构响应,磨损的表面进行了彻底和仔细的检查。热处理后的触变成形合金的密度由于降低的孔隙率而显示出硬度特性的显着提高。他们的磨损测试结果还观察到,所有样品的材料重量损失都随输入载荷和滑动距离的增加而增加。但是,铸态合金比触变合金具有更高的磨损率。通常,磨损机理显示出在低施加负载下磨料,氧化和分层磨损(轻度磨损)的混合,而在高施加负载下主要是粘合剂(严重磨损)的混合。

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