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Manufacturing B_4C-(Al, Si) composite materials by metal alloy infiltration

机译:金属合金浸渗法制备B_4C-(Al,Si)复合材料

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The chemical interaction of porous B_4C with molten Al during the infiltration step and the post-infiltrating heat treatment leads to the formation of a whole range of binary and ternary phases which affect directly the microstructure and the mechanical properties of the composite material. The formation of Al_4C_3 is undesirable because its presence causes a substantial decrease of the mechanical properties. In the present work, the effect of alloying aluminum with silicon on the formation of undesirable aluminum carbide in the infiltrated composites was investigated experimentally. The presence of Si improves the wetting and accelerates the penetration of the molten alloy into porous preforms. The addition of 40 wt. percent Si to Al ensures that the final concentration of Si within the molten Al is higher than the threshold value (about 12 wt. percent) that is necessary for preventing the formation of aluminum carbide in the B-Si-Al-C system. A significant increase of the hardness in the heat treated composites, infiltrated with Al-Si alloys, was observed and was attributed to the in situ formation of the very hard SiC phase and to the simultaneous formation of other ternary compounds.
机译:多孔B_4C与铝在渗透步骤和渗透后热处理过程中的化学相互作用导致整个二元和三元相的形成,直接影响复合材料的微观结构和机械性能。 Al_4C_3的形成是不希望的,因为它的存在导致机械性能的显着降低。在目前的工作中,实验研究了铝和硅合金化对渗透复合材料中不希望的碳化铝形成的影响。 Si的存在改善了润湿性并加速了熔融合金向多孔预型件的渗透。 40重量%的添加物。 Si对Al的百分比确保了熔融Al中Si的最终浓度高于阈值(约12重量%),该阈值是防止在B-Si-Al-C系统中形成碳化铝所必需的。观察到渗入Al-Si合金的热处理后复合材料的硬度显着提高,这归因于原位形成的非常坚硬的SiC相以及同时形成的其他三元化合物。

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