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首页> 外文期刊>Journal of Minerals and Materials Characterization and Engineering >Wear Behaviour of Al-SiCp Metal Matrix Composites and Optimization Using Taguchi Method and Grey Relational Analysis
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Wear Behaviour of Al-SiCp Metal Matrix Composites and Optimization Using Taguchi Method and Grey Relational Analysis

机译:Al-SiCp金属基复合材料的磨损行为以及Taguchi方法和灰色关联分析的优化

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Aluminium metal matrix composite is a relatively new material that has proved its position in automobile, aerospace and other engineering design applications due to its wear resistance and substantial hardness. Need for improved tribological performance has led to the design and selection of newer variants of the composite. The present investigation deals with the study of wear behaviour of Al-SiCp metal matrix composite for varying reinforcement content, applied load, sliding speed and time. Aluminium metal matrix composites reinforced with SiC particles are prepared by liquid metallurgy route using LM6 aluminium alloy and silicon carbide particles (size ~ 37 μm) by varying the weight fraction of SiC in the range of 5% - 10%. The material is synthesized by stir casting process in an electric melting furnace. The materials are then subjected to wear testing in a multitribotester using block on roller configuration. A plan of experiments based on L27 Taguchi orthogonal array is used to acquire the wear data in a controlled way. An analysis of variance is employed to investigate the influence of four controlling parameters, viz., SiC content, normal load, sliding speed and sliding time on dry sliding wear of the composites. It is observed that SiC content, sliding speed and normal load significantly affect the dry sliding wear. The optimal combination of the four controlling parameters is also obtained for minimum wear. The microstructure study of worn surfaces indicates nature of wear to be mostly abrasive.
机译:铝金属基复合材料是一种相对较新的材料,由于其耐磨性和高硬度,已在汽车,航空航天和其他工程设计应用中证明了其地位。需要改进的摩擦学性能导致设计和选择复合材料的新变体。本研究旨在研究Al-SiCp金属基复合材料在不同的增强量,施加的载荷,滑动速度和时间下的磨损行为。 SiC颗粒增强的铝金属基复合材料是通过LM6铝合金和碳化硅颗粒(尺寸约为37μm)通过液相冶金法制备的,其中SiC的重量分数在5%至10%的范围内变化。该材料是在电熔炉中通过搅拌铸造法合成的。然后,使用块对辊配置在多三酸酯中对材料进行磨损测试。使用基于L27 Taguchi正交阵列的实验计划以受控方式获取磨损数据。采用方差分析来研究四个控制参数,即SiC含量,法向载荷,滑动速度和滑动时间对复合材料干式滑动磨损的影响。观察到SiC含量,滑动速度和正常载荷显着影响干滑动磨损。还可以获得四个控制参数的最佳组合,以实现最小的磨损。磨损表面的微观结构研究表明,磨损性质主要是磨料。

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