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Development and Property Evaluation of Chilled MMC Prepared with LM25 as Matrix and SiO_2 (Glass) Particulates as Dispersoids

机译:用LM25制备的冷冻MMC的开发和性能评价为基质和SiO_2(玻璃)颗粒作为Dispersoids

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Main objective of the present work is to investigate the effect of dispersiod content and the effect of chill on the mechanical properties of chilled MMC with LM25 as matrix and SiO_2 as dispersoid. Investigation is carried out to evaluate Ultimate Tensile Strength (UTS), Fracture toughness, Hardness, and microstructure of chilled aluminum matrix and Glass particulate composite. The glass (SiO_2) particles ranging from 30-to 100μm were chosen as dispersiod and added, ranging from 3 to 12wt% in steps of 3%. The composite was prepared by stir-casting technique and poured into the sand molds incorporated with non-metallic and metallic chills. Test result showed that this MMC was greatly influenced by the dispersiod and chills. Fracture toughness & UTS of the composite are found to depend on the wt% of the dispersiod and chilling medium. It is observed that chill has influenced hardness of the composite. Volumetric heat capacity (VHC) of the chill is found to increase the amount of heat absorbed. Microstructure analysis has reveled uniform distribution of the dispersiod, which results in improved properties of the particulate reinforced metal matrix composite.
机译:本作作品的主要目的是探讨分散型含量的影响及寒冷对冷冻MMC的机械性能的影响,LM25作为基质和SiO_2作为分散体。进行研究以评估冷冻铝基质和玻璃颗粒复合材料的最终拉伸强度(UTS),断裂韧性,硬度和微观结构。选择从30-100μm的玻璃(SiO_2)颗粒作为Dispersiod并加入,从3%的步长到12wt%。通过搅拌铸造技术制备复合材料,并倒入掺入非金属和金属冷却的砂模中。测试结果表明,该MMC受Dispersiod和Chills的影响很大。发现复合材料的断裂韧性和UTS取决于Dispersiod和冷却培养基的wt%。观察到寒冷有影响复合材料的硬度。发现寒冷的容量热容量(VHC)增加吸收的热量。微观结构分析具有齐全的分散均匀分布,导致颗粒增强金属基质复合材料的改善性质。

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