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首页> 外文期刊>Science and Engineering of Composite Materials >Effect of matrix temperature and powder size on the infiltration height of SiO 2-reinforced Al 7075 matrix composites produced by vacuum infiltration
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Effect of matrix temperature and powder size on the infiltration height of SiO 2-reinforced Al 7075 matrix composites produced by vacuum infiltration

机译:基质温度和粉体尺寸对真空渗透法制备SiO 2 增强Al 7075基复合材料渗透高度的影响

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摘要

In this study, the effect powder size and matrix temperature on the physical and mechanical properties of SiO_(2)-reinforced Al 7075 matrix composites were investigated. It was observed that with increasing powder size and temperature, infiltration height was increased. Optimum parameters of full infiltration that were determined for particle size and temperature were d_(50)=150 μm and 800°C, respectively. It was also observed that the porosity of the produced composites changed in the range of 3.2–14.6%, and the lowest porosity was obtained from the composite having 105 μm SiO_(2)particle size. The highest fracture strength (263 MPa) was obtained from the composite produced at a matrix temperature of 800°C and a particle size of 420 μm. It was concluded that particle size and temperature are effective parameters to reach full infiltration, and this method is more suitable for producing the composites that have high reinforcement volume fractions than conventional casting methods.
机译:在这项研究中,研究了粉末尺寸和基体温度对SiO_(2)增强Al 7075基复合材料的物理和机械性能的影响。观察到随着粉末尺寸和温度的增加,渗透高度增加。针对颗粒大小和温度确定的最佳全渗透参数分别为d_(50)= 150μm和800°C。还观察到,所生产的复合材料的孔隙率在3.2-14.6%的范围内变化,并且从具有105μmSiO_(2)粒径的复合材料中获得了最低的孔隙率。由在800℃的基体温度和420μm的粒径下生产的复合物获得最高的断裂强度(263MPa)。结论是,粒径和温度是达到完全渗透的有效参数,并且该方法比常规铸造方法更适合于生产具有高增强体积分数的复合材料。

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