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Mechanical Behavior of Aluminium Metal Matrix Composite

机译:铝金属基质复合材料的力学行为

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摘要

This research paper deals with the fabrication procedure and the testing process of metal matrix composite material comprising of Aluminium and Silicon Carbide in addition to Carbon Nanotubes. Aluminium composites are preferred in manufacturing of various industrial machine componentsand automobile parts due to their favorable properties like low density which thereby results in their light weight, high strength and superior malleability comparatively to iron carbon alloys like steel and cast iron. When Silicon Carbide is added it helps in furthering the thermal conductivityand melting point properties of Aluminium in addition to improving its hardness. The addition of Carbon Nanotubes potentially helps in further improving the tensile strength of the metal matrix composite. In this study four samples of different compositions of Silicon Carbide in terms of wt%are prepared and studied. The fabrication process is done by Stir casting carries out by adding the required additives into the molten mixture of aluminium followed by continuous stirring. After solidification for a period of time the samples are cut according to standard dimensions for carryingout the testing procedures. Test procedures like compression, and tensile tests were conducted to study the mechanical properties of obtained metal matrix composite. The various results inferred from the tests are analyzed and subjected to comparison with each other in this study.
机译:本研究论文除了碳纳米管外,还涉及包括铝和碳化硅和碳化铝和碳化物的金属基质复合材料的制造程序和测试过程。铝复合材料在制造各种工业机械零件和汽车部件的制造中是优选的,这是由于它们的有利性,因此与钢和铸铁等铁碳合金相对导致其轻的重量,高强度和优异的磁性效果。添加碳化硅时,除了改善其硬度之外,还有助于进一步进一步铝的热导率和熔点特性。碳纳米管的加入可能有助于进一步提高金属基质复合材料的拉伸强度。在这项研究中,制备并研究了在WT%方面的四种不同组成的不同组成的样本。通过搅拌铸造通过将所需的添加剂添加到铝的熔融混合物中进行,然后连续搅拌来完成制造工艺。在凝固后,一段时间根据标准尺寸切割样品,用于携带测试程序。进行试验程序,如压缩,并进行拉伸试验以研究所得金属基质复合材料的机械性能。分析从测试中推断的各种结果,并在本研究中彼此进行比较。

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