首页> 外文期刊>Materials Science and Technology: MST: A publication of the Institute of Metals >Effect of temperature in single phase regime on aging response of (Al-2Cu)/SiC metal matrix composite synthesised using disintegrated melt deposition technique
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Effect of temperature in single phase regime on aging response of (Al-2Cu)/SiC metal matrix composite synthesised using disintegrated melt deposition technique

机译:单相温度对崩解熔敷法合成(Al-2Cu)/ SiC金属基复合材料时效的影响

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摘要

In the present study, an aluminium based metal matrix composite ((Al-2 wt-%Cu)/SiC) was synthesised using an innovative disintegrated melt deposition technique and investigated to determine its microstructural characteristics and the effect of temperature in the single phase regime on the peak aging characteristics. Microstructural characterisation carried out on the as processed composite revealed the presence of a dendritic-equiaxed microstructure, non-interconnected porosity, uniform distribution of SiC particles, and good interfacial integrity. The results of solutionising studies indicated that the peak hardness during solutionising can only be realised if the composite is soaked at a critical solutionising temperature. Further, the results also indicated that the time required to attain peak solutionising hardness at various temperatures in the single phase regime is independent of the solutionising temperatures investigated in this study. The results of the aging studies revealed that the maximum hardness following aging is achieved for the composite solutionised at a critical solutionising temperature and time. The results of heat treatment characterisation were finally rationalised in terms of the changes in the constitutional and microstructural features during the various stages of the heat treatment procedure used in the present. (C) 1997 The Institute of Materials.
机译:在本研究中,使用创新的分解熔体沉积技术合成了铝基金属基复合材料((Al-2 wt-%Cu)/ SiC),并进行了研究以确定其微结构特征和温度在单相状态下的影响关于峰值老化特性。在加工后的复合材料上进行的微结构表征表明,存在枝晶平衡的微结构,非互连孔隙率,SiC颗粒均匀分布以及良好的界面完整性。固溶研究的结果表明,仅在将复合材料浸泡在临界固溶温度下才能实现固溶过程中的峰值硬度。此外,结果还表明,在单相状态下在各种温度下达到峰值固溶硬度所需的时间与本研究中研究的固溶温度无关。时效研究的结果表明,在关键的固溶温度和时间下固溶的复合材料可实现时效后的最大硬度。最终,根据在当前使用的热处理过程的各个阶段中组织和微观结构特征的变化,合理化了热处理表征的结果。 (C)1997材料研究所。

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