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首页> 外文期刊>Indian journal of engineering and materials sciences >Excellence of Al-metal matrix composite fabricated by gas injection bottom pouring vacuum stir casting process
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Excellence of Al-metal matrix composite fabricated by gas injection bottom pouring vacuum stir casting process

机译:通过气体注入底部浇注真空搅拌铸造工艺制造的铝金属基质复合材料

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The present study has envisaged an advance technique, gas injection bottom pouring vacuum stir casting process, for the casting of metal matrix composite (MMCs). This process has been eliminated several manual processing steps of conventional stir casting hence concerns about the workers’ safety and its bottom pouring mechanism & vacuum mould chamber improve the properties of the fabricated MMC. An Al/(10wt% Alsub2/subOsub3/sub) MMC has been fabricated by the proposed technique and characterized for the mechanical and microstructural properties. An experimental plan based on Taguchi Lsub16/sub orthogonal array has also been used to investigate the factors affecting the wear behaviour. The fabricated Al-MMC has a density of 2.65 gm/cc, micro-hardness of 73.3 HV, tensile strength of 220 MPa and wear rate of 0.0137736 mmsup3/sup/m, implying in substantial improvements from the matrix Al-alloy. A comparative study with the available literature has been carried out to investigate the possibilities of the proposed method in today’s manufacturing world. The results concluded that the fabricated MMC has significantly enhanced the properties of MMCs when compared to the existing casting techniques. From the results of present study, it has been suggested to employ the process in industrial & allied applications and especially in the research institutes where the researchers are not very skilled for the casting operations.
机译:本研究设想了一种先进技术,气体注入底部浇注真空搅拌铸造工艺,用于金属基质复合材料(MMCS)的铸造。该过程已经消除了常规搅拌铸造的几个手动处理步骤,因此涉及工人安全性的担忧,其底部浇注机构和真空模腔改善了制造的MMC的性质。通过所提出的技术制造了Al /(10wt%Al 2 o 3 )MMC,其特征在于机械和微观结构性质。还用于研究基于Taguchi L 16 正交阵列的实验计划,用于研究影响磨损行为的因素。制造的Al-MMC的密度为2.65gM / CC,微硬度为73.3HV,抗拉强度为220MPa和0.0137736mm 3 / m的磨损率,暗示基质的显着改善铝合金。已经开展了对可用文献的比较研究,以研究提出的方法在当今制造业世界中的可能性。结果得出结论,与现有的铸造技术相比,制造的MMC显着增强了MMCs的性质。从现有研究的结果,有人建议在工业和盟友应用中采用该过程,特别是在研究机构中,研究机构在研究机构中,研究人员对铸造业务不太熟练。

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