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Microstructure and Mechanical Properties of Aluminum Cast Alloy A356 reinforced with Dual-Size B4C Particles

机译:用双尺寸B4C颗粒加固铝铸合金A356的微观结构和力学性能

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The paper details the studies carried out on a dual-size particulate composite prepared by stir casting using A 356 aluminum alloy and B4C powders. Three composite compositions, viz., A356 plus 2% B4C (44μm size and 105μm size in 1:1 ratio), 4% B4C (3:1 ratio), and 6% B4C (1:3 ratio) were cast in finger molds, from which test specimens were prepared for hardness and tensile tests as well as for metallography. Vickers hardness tests, tensile tests and microstructure analysis using an optical microscope were conducted. The results obtained indicated that the B4C particles were evenly distributed in the alloy matrix. EDS also revealed the presence of B4C in all the three composites. In general, the hardness and tensile strengths increased with increase in concentration B4C powders. While the increase in hardness was increases less than 15%, there was significant increase (more than 35 %) in tensile strength. However, the ductility represented by % elongation, which was already very low in A 356 cast alloy (24.2%,), further decreased in composites. Tensile fractography results shows inter crystalline fracture where the breakage in the B4C particle instead of deboning were observed.
机译:本文详述了使用356铝合金和B4C粉末通过搅拌铸造制备的双粒子颗粒复合物进行的研究。三种复合组合物,ZiZ,A356加2%B4C(44μm尺寸和105μm尺寸为1:1的比例),4%B4C(3:1比率)和6%B4C(1:3比率)铸造,从中制备试样用于硬度和拉伸试验以及金相。使用光学显微镜的维氏硬度测试,拉伸试验和微观结构分析。得到的结果表明,B4C颗粒在合金基质中均匀分布。 EDS还揭示了所有三种复合材料中B4C的存在。通常,随着浓度B4C粉末的增加,硬度和拉伸强度增加。虽然硬度的增加越来越小于15%,但拉伸强度的显着增加(超过35%)。然而,在356铸造合金(24.2%,)中已经非常低的%伸长率表示的延伸性(24.2%),在复合材料中进一步降低。拉伸范围摄影结果显示了晶间骨折,其中观察到B4C颗粒代替逐渐衰退的破损。

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