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首页> 外文期刊>Materials Science and Engineering >Effect of microstructure on mechanical properties and residual stresses in interpenetrating aluminum-alumina composites fabricated by squeeze casting
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Effect of microstructure on mechanical properties and residual stresses in interpenetrating aluminum-alumina composites fabricated by squeeze casting

机译:微结构对挤压铸造铝铝互穿复合材料力学性能和残余应力的影响

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摘要

Aluminum-alumina composites with interpenetrating network structure are interesting structural materials due to their high resistance to elevated temperature and frictional wear, good heat conductivity, enhanced mechanical strength and fracture toughness. In this paper aluminum-alumina bulk composites and FGMs are manufactured by pressure infiltration of porous alumina preforms with molten aluminum alloy (EN AC-44200). Influence of the interpenetrating microstructure on the macroscopic bending strength, fracture toughness, hardness and heat conduction is examined. Special focus is on processing-induced thermal residual stresses in aluminum-alumina composites due to their potentially detrimental effects on material performance in structural elements under in-service conditions. The residual stresses are measured experimentally in the ceramic phase by neutron diffraction and simulated numerically using a micro-CT based Finite Element model, which takes into account the actual interpenetrating microstructure of the composite. The model predictions for two different volume fractions of alumina agree fairly well with the neutron diffraction measurements.
机译:具有互穿网络结构的铝-氧化铝复合材料是令人感兴趣的结构材料,因为它们对高温和摩擦磨损具有很高的抵抗力,良好的导热性,增强的机械强度和断裂韧性。在本文中,通过用熔融铝合金(EN AC-44200)对多孔氧化铝预成型件进行压力浸渗来制造铝-氧化铝块状复合材料和FGM。研究了互穿组织对宏观弯曲强度,断裂韧性,硬度和导热的影响。由于铝-铝复合材料在使用条件下可能对结构元件的材料性能产生潜在的有害影响,因此特别关注铝-铝复合材料在加工过程中产生的残余热应力。残余应力通过中子衍射在陶瓷相中进行实验测量,并使用基于微CT的有限元模型进行数值模拟,该模型考虑了复合材料的实际互穿微观结构。氧化铝的两种不同体积分数的模型预测与中子衍射测量非常吻合。

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