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轧前深冷处理对AZ31镁合金显微组织和力学性能的影响(英文) 被引量:6

Effect of Cryogenic Treatment Prior to Rolling on Microstructure and Mechanical Properties of AZ31 Magnesium Alloy
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摘要 通过对铸态AZ31镁合金经不同条件的深冷处理继而热轧,分析其强度、韧性、延展性效应及其规律。深冷实验条件分别为-60℃/12 h、-120℃/12 h、-180℃/12 h、-60℃/2 h和-180℃/2 h。结果表明:AZ31经适宜的深冷处理,晶粒得到细化,强度、韧性及延展性得到有效提高;与未经深冷处理试样相比,深冷处理时间为2 h的2种试样中都出现大量孪晶;经-60℃/12 h深冷处理后再进行轧制试样的显微组织最为细小均匀,屈服强度提高了25.8%,延伸率更是提高了4倍,由3.06%提高到了12.31%;深冷处理后的AZ31镁合金断口呈现出脆性断裂和塑性断裂集合的复合性断裂特征。 The effects of cryogenic treatment prior to hot rolling on the strength,toughness and ductility of as-cast AZ31 magnesium alloy plates were investigated.The cryogenic treatment conditions were -60°C/12 h,-120°C/12 h,-180°C/12 h,-60°C/2 h,and-180°C/2 h.Experimental results show that appropriate cryogenic treatment conditions can significantly refine the grain size and the improve strength,toughness and ductility.A large number of twins appear in both kinds of samples cryogenically treated for 2 h.The sample experienced cryogenic treatment for 12 h at-60°C followed by rolling process shows the finest and most uniform and increase in yield strength by 25.8%.Meanwhile,a four-time increase in extension rate(3.06%to 12.31%)is attains.The tensile fracture present a mixed-mode fracture,which is characteristic of brittle and ductile fracture mechanisms.
作者 黄志权 韦建春 黄庆学 马立峰 高翔宇 岳照涵 Huang Zhiquan1, Wei Jianchun2, Huang Qingxue1, Ma Lifeng1, Gao Xiangyu1, Yue Zhaohan1(1. Heavy Machinery Engineering Research Center of the Ministry of Education, Taiyuan University of Science and Technology, Taiyuan 030024 China; 2 Guangxi Liuzhou Iron and Steel Group Company Limited, Liuzhou 545002, China)
出处 《稀有金属材料与工程》 SCIE EI CAS CSCD 北大核心 2018年第10期2942-2948,共7页 Rare Metal Materials and Engineering
基金 National Natural Science Foundation of China(51604181) Coal Based Low Carbon Joint Fund of Shanxi Province(U1510131) the Key Research and Development Program of Shanxi Province(201603D121010) Applied Basic Research Program of Shanxi Province(201601D021095) Project of University Science and Technology Innovation of Shanxi Province(2015172)
关键词 AZ31镁合金 深冷处理 第二相析出 断口形貌 AZ31 magnesium alloy cryogenic treatment second phase particles fracture morphology
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