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首页> 外文期刊>Metallic materials >Microstructural, mechanical and dry sliding wear properties of the MgO reinforced aluminium matrix composites produced by vacuum infiltration
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Microstructural, mechanical and dry sliding wear properties of the MgO reinforced aluminium matrix composites produced by vacuum infiltration

机译:真空渗透法制备的MgO增强铝基复合材料的微结构,机械和干式滑动磨损性能

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摘要

Dry sliding wear properties of MgO (10-40 vol.%) reinforced aluminium matrix composites produced by vacuum infiltration method were investigated using a pin-on-disc test machine after examining their microstructural and mechanical properties. The hardness of the composites increased continuously with increasing MgO content and the highest hardness (71 HB) was obtained for Al-40vol.%MgO. The highest tensile strength (139 MPa) and the lowest porosity (1.3 %) were obtained for Al-20vol.%MgO composite. It was observed that the wear volume of the composites increased with increasing load and sliding speed. Wear resistance of the composites tested was observed to be strongly dependent on their tensile strength and porosity rather than their hardness. Although adhesion and abrasion took place during the wear of tested composites, smearing appeared to be the most effective wear mechanism for the composites contaning up to 20 vol.% MgO, while abrasive wear dominated for the Al-30vol.%MgO and Al-40vol.% MgO composites.
机译:在检查了它们的微观结构和机械性能之后,使用圆盘试验机研究了通过真空渗透法生产的MgO(10-40%(体积))增强的铝基复合材料的干滑动磨损性能。随着MgO含量的增加,复合材料的硬度不断提高,Al-40vol。%MgO的硬度最高(71 HB)。 Al-20vol。%MgO复合材料的最高拉伸强度(139 MPa)和最低孔隙率(1.3%)。观察到,复合材料的磨损量随着载荷和滑动速度的增加而增加。观察到所测试的复合材料的耐磨性在很大程度上取决于其拉伸强度和孔隙率,而不是其硬度。尽管在测试的复合材料的磨损过程中发生了粘附和磨损,但是污迹似乎是复合材料中最有效的磨损机制,复合材料中的MgO含量高达20 vol。%,而Al-30vol。%MgO和Al-40vol的磨料磨损占主导地位。%MgO复合材料。

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