Study of Surface Quality During End Milling of SiC Reinforced Aluminium Metal Matrix Composite

S. Sagar
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Abstract

In today’s world the composites materials are replacing many conventional materials due to their excellent properties. Aluminum is a less weight and cheap metal that is available in plenty. Silicon carbide is hard abrasive material with good mechanical properties. The aluminum silicon carbide metal matrix composite is finding increased applications in many fields such as automobile and aeronautical applications due to its excellent mechanical properties like high strength, light weight, high specific stiffness and good coefficient of thermal expansion. But their usage is restricted due to the difficulty in the machinability. In this paper two Al/SiC metal matrix composites (Al6061/10-SiCp and Al6061/5-SiCp) by varying the composition of SiC. The composites consist Silicon Carbide (SiC) of 5% and 10% by weight. The composites are prepared by stir casting process. Shell moulding technique is used in manufacturing of the composite materials. The microstructure, tensile strength, compression strength and hardness of the composites are studied. End milling operation is performed on the metal matrix composite slabs by varying the machining parameters. Feed rate and depth of cut were varied by fixing a single spindle speed. The number of experiments is determined using design of experiments (DOE). The effect of the machining parameters on the surface finish is observed by measuring the surface roughness. This process is done on the two metal matrix composites. The effect of SiC percentage in composite and variations in machining parameters on the surface finish was observed.
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SiC增强铝基复合材料立铣削表面质量研究
在当今世界,复合材料以其优异的性能正在取代许多传统材料。铝是一种重量更轻、价格更便宜的金属,而且储量丰富。碳化硅是一种硬质磨料,具有良好的机械性能。铝碳化硅金属基复合材料由于具有高强度、轻量化、高比刚度和良好的热膨胀系数等优异的机械性能,在汽车和航空等许多领域的应用越来越广泛。但由于加工难度大,限制了其使用。本文通过改变SiC的组成制备了两种Al/SiC金属基复合材料(Al6061/10-SiCp和Al6061/5-SiCp)。复合材料由5%和10%重量的碳化硅(SiC)组成。采用搅拌铸造法制备了复合材料。复合材料的制造采用壳体成型技术。研究了复合材料的显微组织、抗拉强度、抗压强度和硬度。通过改变加工参数对金属基复合板材进行立铣削加工。通过固定一个主轴转速来改变进给速度和切削深度。实验数由实验设计(DOE)决定。通过测量表面粗糙度,观察加工参数对表面光洁度的影响。该工艺是在两种金属基复合材料上进行的。观察了复合材料中SiC含量和加工参数的变化对表面光洁度的影响。
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