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Wear rate behavior of As-cast and heat treated hybrid Aluminum Metal Matrix Composites

机译:磨损和热处理杂交铝金属基复合材料的磨损率行为

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In the present study the effect of sliding speed on wear behaviour of as-cast and heat treated Aluminum alloy / composites has been investigated. Aluminum alloy series A356 is used as matrix, Silicon Carbide particles (SiC_p) and graphite (Gr) particles are used as reinforcements. The proposed Aluminum Metal Matrix Composites (AMMCs) were fabricated by stir-casting. In the Aluminum A356 matrix, the reinforcement SiC_p was varied from 0 to 9% by weights in steps of 3%, in addition to it 3% by weight Gr particles was also added. The castings were machined as per ASTM standard and T6-heat-treatment was carried out. Specimens were aged at different durations of 3, 6, 9, and 12 hrs at a temperature of 155° C. The pin-on-disc wear testing machine was used to evaluate the wear rate of the composites. The results revealed that by increasing the reinforcement and ageing at T6-9 hrs showed a maximum wear resistance in all the sliding tests. The reinforcements were restricted to 9% by weight due to the formation of agglomeration. The increase in sliding speed showed an increase of wear rate. The wear tested samples were examined for microstructure using scanning electron microscope (SEM) and the composition of worn out surface was confirmed using energy dispersive spectrum (EDS).
机译:在本研究中,研究了滑动速度对铸造和热处理铝合金/复合材料磨损行为的影响。铝合金系列A356用作基质,碳化硅颗粒(SiC_P)和石墨(GR)颗粒用作增强剂。通过搅拌浇铸制造所提出的铝金属基质复合材料(AMMC)。在铝A356基质中,加强SiC_P在3%的步骤中的0%至9重量%,除此之外,还加入3重量%的GR颗粒。根据ASTM标准和T6-热处理进行加工铸件。在155℃的温度下,在3,6,9和12小时的不同持续时间下老化试样,用于评估复合材料的磨损率。结果表明,通过在T6-9 HR时增加增强和老化,在所有滑动测试中显示出最大的耐磨性。由于聚集的形成,增强率仅限于9重量%。滑动速度的增加显示磨损率的增加。使用扫描电子显微镜(SEM)检查磨损测试样品,使用扫描电子显微镜(SEM),使用能量分散光谱(EDS)确认磨损表面的组成。

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