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Fabrication conditions and microstructures of Al_(18)B_4O_(33)/AZ91D magnesium alloy composites by compo-casting

机译:伴侣铸造Al_(18)B_4O_(33)/ AZ91D镁合金复合材料的制造条件和微观结构

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The effects of stirring condition and setting position of reinforcements on pore content in the composites fabricated by compo-casting process were investigated by the visualized model experiments using glycerin. Gas pores were introduced in composites by stirring blade and gas contained in as-received reinforcement particles. The distance between blade and liquid surface, the rotational speed of blade and the viscosity of matrix affect the entrapping of gas. Particles were mixed with matrix material completely by placing on the bottom of die. Then, Al_(18)B_4O_(33) particle and whisker reinforced AZ91D magnesium alloy composites were fabricated by the compo-casting under the condition acquired from the visualized model experiments. The reinforcements in the composites fabricated under the condition of 33 percent solid fraction were distributed uniformly. Refining of primary crystal and homogenous microstructure were acquired by using AZ91D chips as a starting material or whiskers as the reinforcement.
机译:采用甘油的可视化模型实验研究了搅拌条件和增强件对由伴侣铸造过程制造的复合材料中孔含量的影响。通过搅拌叶片和容纳在接收的增强颗粒中的叶片和气体中以复合材料引入气体孔。叶片和液面之间的距离,叶片的旋转速度和基质的粘度影响气体的诱捕。通过放置在模具的底部上完全与基质材料混合颗粒。然后,通过在从可视化模型实验中获取的条件下,通过伴侣铸造制造Al_(18)B_4O_(33)粒子和晶须增强AZ91D镁合金复合材料。在33%固体级分的条件下制造的复合材料中的增强均匀分布。通过使用AZ91D芯片作为原料或晶须作为加强件的原发性晶体和均匀微观结构的精炼。

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