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首页> 外文期刊>Materials transactions >Analysis of Manufacturing Processes for Metal Fiber Reinforced Aluminum Alloy Composite Fabricated by Low-Pressure Casting
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Analysis of Manufacturing Processes for Metal Fiber Reinforced Aluminum Alloy Composite Fabricated by Low-Pressure Casting

机译:低压铸造金属纤维增强铝合金复合材料制造工艺分析

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摘要

A metal-fiber-reinforced aluminum alloy composite was fabricated through low-pressure casting and its optimum process conditions were determined. The direct finite difference method (DFDM) based on Dairy's law was used to calculate the pressure distribution inside the preform, and then the porosity inside the composite fabricated through low-pressure casting at 0.4-0.8 MPa was estimated. The relationship between the porosity and the pressure distribution inside the preform was also estimated. The porosity of the composites fabricated under the applied pressures of 0.4MPa. 0.6MPa. 0.7 MPa and 0.8 MPa was estimated to be 0.11 percent, 0.04 percent, 0.07 percent and 0 percent, respectively, at the pressure acceleration time of 1 s. Hence, the composite without pores was fabricated under the pressure of 0.8 MPa in applied pressure.
机译:通过低压铸造制备了金属纤维增强铝合金复合材料,并确定了其最佳工艺条件。采用基于Dairy定律的直接有限差分法(DFDM)来计算预成型坯内部的压力分布,然后通过低压铸造在0.4-0.8 MPa下估算复合材料内部的孔隙率。还估计了预成型坯内部的孔隙率与压力分布之间的关系。在0.4MPa的施加压力下制造的复合材料的孔隙率。 0.6MPa。在1 s的压力加速时间下,估计0.7 MPa和0.8 MPa分别为0.11%,0.04%,0.07%和0%。因此,在施加压力下在0.8MPa的压力下制备了无孔的复合材料。

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