材料科学
合金
冶金
铈
极限抗拉强度
延伸率
铝
铬
相(物质)
粒度
精炼(冶金)
微观结构
枝晶(数学)
产量(工程)
6063铝合金
稀土
卤化
晶粒生长
喷射成形
6111铝合金
集聚经济
5052铝合金
作者
Zhe Sun,Xiwei Guo,Yuxuan Xiao,Chuanlong Yang,Bingbing Yin,Yi Yang
标识
DOI:10.1002/adem.202502732
摘要
A novel Al‐Ti‐B‐Cr‐Ce master alloy refiner with anti‐Si‐poisoning and fading effect was developed through co‐doping with chromium (Cr) and cerium (Ce). Al 20 Ti 2 Ce phase in Al‐3Ti‐1B‐0.5Cr‐0.8Ce intermediate alloys can significantly refine the dendrite arms of α ‐Al. The rare earth phase serves as an effective protective shell, which not only inhibits the aggregation and growth of the Al 3 Ti phase but also reduces the surface energy and agglomeration tendency of the TiB 2 phase. A small amount of chromium can form CrB 2 with B and also form the Al 13 Cr 4 Si 4 phase, enhancing the anti‐poisoning effect during the refinement process and having a significant refining effect on the Si phase. The incorporation of an Al‐3Ti‐1B‐0.5Cr‐0.8Ce master alloy into A356 aluminum alloy yields significant grain refinement. Notably, the refined grain size can be sustained below 150 µm even after 120 min of holding. Furthermore, the refined alloy exhibits enhanced mechanical properties, tensile strength augmented by 28.7% to 215 MPa, yield strength elevated by 37.0% to 185 MPa, and elongation at break enhanced by 19.1% to 9.82%.
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