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Tribological behaviour and mechanical properties of copper and magnesium based composites treated by severe plastic deformation

机译:严重塑性变形处理的铜和镁基复合材料的摩擦学行为和力学性能

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Mechanical and wear properties of a series of copper and magnesium based composites with alumina dispersoid nanoparticles were studied. The initial states of the composites were further treated by severe plastic deformation (SPD) in order to achieve microstructures with very fine grains. All states, as-received and SPD treated ones were then characterised and the results compared. Hardness and indentation modulus of elasticity of the experimental materials were measured by instrumented indentation. Microstructure parameters were observed using transmission electron microscopy. Tribological properties were studied by pin-on-disk technique in dry sliding against steel balls at a various temperatures from room temperature up to 873 K (copper) or up to 573 K (magnesium), respectively. For all systems the coefficient of friction and specific wear rates were evaluated. Worn surfaces were studied by scanning electron microscopy and level of oxidation was measured using EDX spectrometry. Damage mechanisms were identified and their relationship with structural characteristics was inferred. Hardness of all materials was higher after SPD. In copper based materials higher temperatures lead to forming hard oxide surface layers and to improvement of wear resistance while the wear resistance of the magnesium based composites at high temperatures decreased.
机译:研究了一系列具有氧化铝弥散体纳米颗粒的铜和镁基复合材料的力学性能和磨损性能。复合材料的初始状态通过严重的塑性变形(SPD)进行进一步处理,以实现具有非常细晶粒的微结构。然后表征所有状态,如接受状态和SPD处理状态,并比较结果。通过仪器压痕测量实验材料的硬度和压痕弹性模量。使用透射电子显微镜观察微观结构参数。通过销钉盘技术分别在室温至873 K(铜)或573 K(镁)的各种温度下对钢球进行干式滑动研究了摩擦学性能。对于所有系统,均评估了摩擦系数和比磨损率。通过扫描电子显微镜研究磨损的表面,并使用EDX光谱法测量氧化水平。确定损伤机理,并推断其与结构特征的关系。 SPD后所有材料的硬度均较高。在铜基材料中,较高的温度导致形成硬质氧化物表面层并提高耐磨性,而镁基复合材料在高温下的耐磨性降低。

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