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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Dry sliding wear behaviour of some wrought, rapidly solidified powder metallurgy aluminium alloys
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Dry sliding wear behaviour of some wrought, rapidly solidified powder metallurgy aluminium alloys

机译:某些锻造,快速凝固的粉末冶金铝合金的干滑磨损行为

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摘要

Aluminium alloys are increasingly being used in tribological applications, often in composite form, but to date no systematic work has been undertaken on optimising the matrix composition. In particular, it is not clear whether a work-hardened, a precipitation-hardened or dispersion-hardened matrix is optimum. Accordingly, the dry sliding wear behaviour of four aluminium alloys (A2124, A6092 (both precipitation-hardened), A3004 (dispersion-hardened) and A5056 (work-hardened)) was investigated against an M2 steel counterface in the load range 23-140 N and at a fixed sliding speed of 1 m/s. Severe wear was observed for all alloys, with specific wear rates (K') in the range 0.31 × 10{sup}(-4) to 4.23 × 10{sup}(-4)mm{sup}3/(Nm). Wear was dominated by transfer of Fe from the counterface for all alloys, which resulted in the formation of a mechanically mixed layer (MML). The relationship between alloy composition, deformation below worn surface and wear resistance is discussed.
机译:铝合金越来越多地以复合形式用于摩擦学应用,但迄今为止,尚未进行系统化的工作来优化基体成分。特别地,尚不清楚加工硬化的,沉淀硬化的或分散硬化的基质是最佳的。因此,研究了四种铝合金(A2124,A6092(沉淀硬化),A3004(弥散硬化)和A5056(加工硬化))在23-140载荷范围内对M2钢对接面的干滑动磨损行为。 N,固定滑动速度为1 m / s。在所有合金中均观察到严重磨损,比磨损率(K')在0.31×10 {sup}(-4)至4.23×10 {sup}(-4)mm {sup} 3 /(Nm)的范围内。对于所有合金来说,磨损主要是由Fe从相对面转移而来,这导致形成了机械混合层(MML)。讨论了合金成分,磨损表面以下变形与耐磨性之间的关系。

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