材料科学
增韧
均质化(气候)
合金
延展性(地球科学)
复合材料
冶金
韧性
蠕动
生态学
生物
生物多样性
作者
Sha Li,Liping Bian,Hongwei Ping,Jiaqi Li,Tao Wang,Jinyao Ma,Wei Liang
标识
DOI:10.1016/j.jmrt.2025.07.036
摘要
Single/double-step conventional homogenization and pre-rolling homogenization treatments were employed to solve the problems of severe dendritic segregation of as-cast 2055 Al-Li alloy, large grain size and grain boundary overburning caused by conventional high-temperature long-term homogenization. The results indicate that single-pass rolling with a small reduction ratio can introduce defects such as vacancies and dislocations, providing conditions for the full, rapid and uniform diffusion of alloying elements. At 470°C/2h + FR27.5% (Flat Rolling, reduction ratio is 27.5%) + 520°C/8h, the dendritic segregation of as-cast alloy is effectively eliminated in a short time, showing high tensile strength and plasticity, which can reach 352 MPa and 11.4% respectively. Compared with the conventional homogenization treatments, the average grain size decreases from 78.45 μm to 36.47 μm, and the volume fraction of secondary phase reaches a minimum of 0.33%. The results of diffusion kinetics analysis also indicate that the deformation promotes diffusion and further shortens the homogenization time, which is consistent with the microstructural results. Therefore, 470°C/2 h+FR27.5% + 520°C/8 h is determined as optimal homogenization system. This work provides a new idea for the high-temperature short-term homogenization treatment of as-cast 2055 Al-Li alloy.
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