Microstructure and Thermal Stability of A357 Alloy With and Without the Addition of Zr

被引:0
|
作者
Yu-Chih Tzeng
Vun-Shing Chengn
Jo-Kuang Nieh
Hui-Yun Bor
Sheng-Long Lee
机构
[1] National Defense University,Department of Power Vehicle and Systems Engineering, CCIT
[2] Central Taiwan University of Science and Technology,Optometry, College of Health Sciences
[3] National Chung-Shan Institute of Science and Technology,Materials and Electro
[4] National Central University,Optics Research Division
来源
Journal of Materials Engineering and Performance | 2017年 / 26卷
关键词
aluminum; heat treatment; microscopy; optical metallography;
D O I
暂无
中图分类号
学科分类号
摘要
The principal purpose of this research was to evaluate the effects of Zr on the microstructure and thermal stability of an A357 alloy that has been subjected to an aging treatment (T6) and thermal exposure (250 °C). The results show that the addition of Zr had a significant influence on the refinement of the grain size, which enhanced the hardness and tensile strength of the A357 alloy under the T6 condition. During thermal exposure at 250 °C, the rodlike metastable β’-Mg2Si precipitates transformed into coarse equilibrium phase β-Mg2Si precipitates, resulting in a significant drop in the hardness and tensile strength of the T6 heat-treated A357 alloy. However, after thermal exposure, coherent, finely dispersed Al3Zr precipitates were found to be formed in the T6 heat-treated A357 alloy. The addition of 0.1% Zr played a critical role in improving the high-temperature strength. Consequently, the A357 alloy with the addition of Zr demonstrated better mechanical properties at room temperature and high temperature than the alloy without Zr, in terms of both microstructure and thermal stability.
引用
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页码:5511 / 5518
页数:7
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