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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Influence of sliding speed on the dry sliding wear behaviour and the subsurface deformation on hybrid metal matrix composite
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Influence of sliding speed on the dry sliding wear behaviour and the subsurface deformation on hybrid metal matrix composite

机译:滑动速度对混合金属基复合材料干式滑动磨损行为和表面变形的影响

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摘要

In recent years, more attention is being paid to the structure of both the surface and the subsurface of a material being subjected to wear. Surface and subsurface deformation can cause a considerable change in the microstructure of the material leading to a change in its properties. The present study investigates the influence of sliding speed on dry sliding wear behaviour and the extent of subsurface deformation in aluminium metal matrix composites, namely Al 2219/15SiCp and Al 2219/15SiCp-3graphite all fabricated by the liquid metallurgy route. Dry sliding wear tests were conducted using a pin-on-disc machine. The subsurface deformation was assessed as a measure of variation in microhardness along the depth normal to the cross-section of the worn surface. The results reveal that with increasing sliding speeds in the mild wear region the degree of subsurface deformation was also increasing. The graphitic composite exhibited less degree of subsurface deformation in comparison to the graphite free composite.
机译:近年来,人们越来越关注磨损材料的表面和亚表面的结构。表面和亚表面变形会导致材料的微观结构发生重大变化,从而导致其性能发生变化。本研究研究了滑动速度对干法滑动磨损行为的影响以及铝金属基复合材料(均采用液态冶金法制备的Al 2219 / 15SiCp和Al 2219 / 15SiCp-3石墨)的表面下变形程度。使用销钉盘机进行干式滑动磨损测试。评估表面下变形是沿垂直于磨损表面横截面深度的显微硬度变化的量度。结果表明,在轻度磨损区,随着滑动速度的增加,地下变形程度也在增加。与不含石墨的复合材料相比,石墨复合材料表现出较少的地下变形程度。

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