材料科学
微观结构
锭
挤压
断裂韧性
冶金
层状结构
断裂(地质)
成形性
粒度
混合(物理)
铸造
复合材料
合金
量子力学
物理
作者
Hongyuan Fang,Ruirun Chen,Dong Liang Chai,Yaohua Yang,Yanqing Su,Hongsheng Ding,Jingjie Guo,Hengzhi Fu
标识
DOI:10.1002/adem.201700058
摘要
A method of continuous casting is used and the research investigates microstructure and mechanical properties under different drawing velocity (R, mm/min). The results show that microstructure and composition measurement of different zones are uniform. The smallest grain size is 25.93 μm and formability is good with 0.5R. Compressive strength is higher with 0.5R and maximum value is 1697MPa. Fracture toughness with 0.5R improves about 35.7% which is 21.7MPa·m1/2. The fracture morphology is trans-lamellar fracture and interface de-lamination. The method is a feasible way to continuously cast the TiAl-Nb alloys. The R is an important parameter to add high-melting-point element, which affects solidified temperature interval of solidification front and electromagnetic stirring.
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