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Relationship among solution heating rate,mechanical properties,microstructure and texture of Al−Mg−Si−Cu alloy 被引量:7
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作者 Xiao-feng WANG Ming-xing GUO +2 位作者 Wen-fei PENG Yong-gang WANG Lin-zhong ZHUANG 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2021年第1期36-52,共17页
The relationship among heating rate, mechanical properties, microstructure and texture of Al-Mg-Si-Cu alloy during solution treatment was investigated through tensile test, scanning electron microscope, X-ray diffract... The relationship among heating rate, mechanical properties, microstructure and texture of Al-Mg-Si-Cu alloy during solution treatment was investigated through tensile test, scanning electron microscope, X-ray diffractometer and EBSD technology. The experimental results reveal that there is a non-monotonic relationship among solution heating rate, mechanical properties, microstructure and texture. As the solution heating rate increases, the strength variations are dependent on the tensile direction;work hardening exponent n decreases first, and then increases;plastic strain ratio r increases first, and then decreases, and finally increases. The final microstructure and texture are also affected by heating rate. As heating rate increases, the microstructure transforms from elongated grain structure to equiaxed grain structure, and the average grain size decreases first, and then increases, and decreases finally. Although the texture components including CubeND{001}<310> and P{011}<122> orientations almost have no change with the increase of heating rate, the texture intensity and volume fraction decrease first, and then increase, and finally decrease. Both microstructure and texture evolutions are weakly affected by heating rate. Improving heating rate is not always favorable for the development of fine equiaxed grain structure, weak texture and high average r value, which may be related to the recrystallization behavior. 展开更多
关键词 almgsicu alloy solution heating rate mechanical properties microstructure TEXTURE
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Effect of pre-straining on structure and formation mechanism of precipitates in Al−Mg−Si−Cu alloy 被引量:5
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作者 Yao-yao WENG Zhi-hong JIA +4 位作者 Li-peng DING Jin LIAO Ping-ping ZHANG Ya-qi XU Qing LIU 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2022年第2期436-447,共12页
The effect of pre-straining on the structure and formation mechanism of precipitates in an Al−Mg−Si−Cu alloy was systematically investigated by atomic resolution high-angle annular dark-field scanning transmission ele... The effect of pre-straining on the structure and formation mechanism of precipitates in an Al−Mg−Si−Cu alloy was systematically investigated by atomic resolution high-angle annular dark-field scanning transmission electron microscopy(HAADF-STEM).Elongated and string-like precipitates are formed along the dislocations in the pre-strained Al−Mg−Si−Cu alloy.The precipitates formed along the dislocations exhibit three features:non-periodic atomic arrangement within the precipitate;Cu segregation occurring at the precipitate/α(Al)interface;different orientations presented in one individual precipitate.Four different formation mechanisms of these heterogeneous precipitates were proposed as follows:elongated precipitates are formed independently in the dislocation;string-like precipitates are formed directly along the dislocations;different precipitates encounter to form string-like precipitates;precipitates are connected by other phases or solute enrichment regions.These different formation mechanisms are responsible for forming different atomic structures and morphologies of precipitates. 展开更多
关键词 almgsicu alloy pre-straining cu segregation PRECIPITATE HAADF-STEM
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