热处理与未热处理al7075合金混杂复合材料力学性能的比较研究

T. Gangadhar, D. Girish
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引用次数: 0

摘要

采用搅拌铸造技术研制了Al7075基复合材料。制备了云母、石墨和e -玻璃纤维添加量不同的Al7075复合材料,研究了e -玻璃纤维添加量分别为0、2、4%,云母添加量为1 ~ 3%,石墨添加量为1 ~ 5%,对复合材料显微组织和力学性能的影响。可以看出,Al在38º、46º和65º2θ角处都有对应的3个峰,并且在XRD图谱中都有与3种增强云母、石墨和e -玻璃纤维相关的小峰。采用Clemex Image-Analyzer软件对Al7075基体的晶粒度进行分析,结果表明,随着增强剂含量的增加,Al7075基体的晶粒度减小,硬度随增强剂含量的增加而增加,无论e-玻璃纤维含量为0% ~ 4%,云母含量为1% ~ 3%,石墨含量为1% ~ 5%。热处理前后材料的抗拉强度随增强量的增加而增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
COMPARATIVE MECHANICAL PROPERTIES STUDIES ON HEAT & UNHEAT TREATED AL7075 ALLOY HYBRID COMPOSITES
In the present work, Al7075 based hybrid composites was developed using stir casting technique. Al7075 hybrid composites with different weight percentage of Mica, Graphite and E-glass fiber were developed to study the effect of these reinforcements on microstructure and mechanical properties, E-Glass fiber is kept constant at 0, 2, 4%, Mica is varied from 1-3% in steps of 1 and Graphite varied from 1-5% in steps of 2. It can be seen that the three peaks corresponding to Al were seen at 38º, 46º and 65º 2θ angles and small peaks related to all the three reinforcement mica, graphite and E-glass fiber were observed in the XRD pattern. Grain size analysis was examined using Clemex Image-Analyzer software, it was observed that decrease in grain size of Al7075 matrix was found to decrease with the increase in reinforcements, Hardness was found to increase with increase in reinforcement content whether it could E-glass fiber from 0% - 4% or mica from 1% - 3% or graphite content from 1% - 5%. Ultimate tensile strength increased with the increase in reinforcement content both before and after heat treatment.
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