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Investigation on the Effect of Cooling Rate on Hot Tearing Susceptibility of Al2024 Alloy Using Thermal Analysis

机译:热分析研究冷却速率对Al2024合金热撕裂敏感性的影响

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摘要

Effect of different cooling rates and Al-5Ti-1B grain refiner on hot tearing susceptibility of Al2024 alloy were studied using thermal analysis. Influence of cooling rates on microsegregation, and the amount of gas and shrinkage porosities was investigated. The cooling rates used in the present study range from 0.4 to 17.5 K s–1. To evaluate the hot tearing susceptibility, Clyne and Davies’ criterion is used. To calculate solid fraction during solidification, solid fraction vs time is plotted based on Newtonian technique via thermal analysis. The results show that the hot tearing susceptibility reduces initially by increasing the cooling rate and then increases at higher cooling rates. Hot tearing susceptibility is decreased by grain refinement. Solidification characteristics of Al2024 e.g., microsegregation, gas, and shrinkage porosities are decreased by increasing cooling rate.
机译:利用热分析研究了不同的冷却速度和Al-5Ti-1B晶粒细化剂对Al2024合金热撕裂敏感性的影响。研究了冷却速率对微偏析,气体量和收缩孔隙率的影响。本研究中使用的冷却速率范围为0.4到17.5 Ks-1。为了评估热撕裂敏感性,使用了克莱因和戴维斯的标准。为了计算凝固过程中的固体分数,基于牛顿技术通过热分析绘制了固体分数与时间的关系。结果表明,热撕裂敏感性首先通过增加冷却速率而降低,然后在较高的冷却速率时增加。晶粒细化可降低热撕裂敏感性。通过提高冷却速率,可以降低Al2024的凝固特性,例如微偏析,气体和收缩孔隙率。

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  • 来源
    《Metallurgical and Materials Transactions B》 |2015年第6期|2438-2448|共11页
  • 作者单位

    Center of Excellence for High Strength Alloys Technology (CEHSAT) School of Metallurgy and Materials Engineering Iran University of Science and Technology (IUST)">(1);

    Center of Excellence for High Strength Alloys Technology (CEHSAT) School of Metallurgy and Materials Engineering Iran University of Science and Technology (IUST)">(1);

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