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Quantitative analysis of influence of α-Al(MnFeCr)Si dispersoids on hot deformation and microstructural evolution of Al-Mg-Si alloys 被引量:1
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作者 Hiromi NAGAUMI Jian QIN +2 位作者 Cheng-bin YU Xiao-guo WANG Lin-sheng WANG 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2022年第6期1805-1821,共17页
The microstructural evolution of AA6061 and Mn-bearing Al-Mg-Si-Cu alloys was studied by compression tests that were carried out between 300 and 500 °C with a wide range of strain rates. Compared to the AA6061 al... The microstructural evolution of AA6061 and Mn-bearing Al-Mg-Si-Cu alloys was studied by compression tests that were carried out between 300 and 500 °C with a wide range of strain rates. Compared to the AA6061 alloy, the large amount of α-Al(MnFeCr)Si dispersoids in the Mn-bearing alloy yielded a significant increase in the flow stress under all deformation conditions. The effects of the deformation parameters on the evolution of the microstructure were studied using electronic backscatter diffraction measurements. The predominant softening mechanism of both alloys was dynamic recovery. The presence of α dispersoids in Mn-bearing alloys effectively refined the size of substructures with misorientation angles in the range of 2°-5°, which retarded the dynamic recovery. To predict the subgrain size under various deformation conditions, the threshold stresses that were caused by α dispersoids were calculated by the modified Orowan equation and incorporated into a conventional constitutive equation. The subgrain size that was predicted by the modified constitutive equation showed satisfactory agreement with the experimental measurements. 展开更多
关键词 Al-Mg-Si alloy hot deformation α-Al(MnFeCr)Si dispersoids SUBSTRUCTURE dynamic softening threshold stress Z parameter
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弥散强化6XXX铝合金热变形行为研究 被引量:3
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作者 王孝国 张孝元 +2 位作者 孙瑞娟 王斌 王嘉伟 《特种铸造及有色合金》 CAS 北大核心 2021年第9期1114-1118,共5页
对均匀化态含Mn/Cr弥散强化6XXX铝合金(WQ合金)在不同变形温度和应变速率下进行轴向热压缩试验。应用双曲正弦本构方程求得合金材料参数和激活能;基于动态材料模型获得变形合金热加工图;根据热加工图确定安全加工窗口,优化变形参数;WQ... 对均匀化态含Mn/Cr弥散强化6XXX铝合金(WQ合金)在不同变形温度和应变速率下进行轴向热压缩试验。应用双曲正弦本构方程求得合金材料参数和激活能;基于动态材料模型获得变形合金热加工图;根据热加工图确定安全加工窗口,优化变形参数;WQ合金安全加工区域动态软化机制主要为动态回复,亚晶旋转和(亚)晶界迁移受阻于α弥散相;加工失稳区微观组织存在裂纹,主要与微孔形成和第二相开裂、脱相有关。 展开更多
关键词 6XXX铝合金 热变形 本构分析 热加工图 α弥散相
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