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罗磊

 
 
        
            
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- 性别:男
 
- 毕业院校:哈尔滨工业大学
 
- 学历:博士研究生毕业
 
- 学位:博士学位
 
- 所在单位:材料科学与技术学院
 
- 电子邮箱:4950847f228237ed5aa0458a246b8f6cd1eb03a7a9f16ce74225b8644b906599d2a96be7d5017fc352198152e5a1f892f6286e1414ed62d524b0b3e541d45808ded47d31a97f5c60099e81fc24c700b6a8430750470753ea4c86463e01d6aae69b3811afbd1107936190aed5785d23ef69aae3619d49a7b8e009be69881f3696
 
            
         
        
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    Lei Luo, Liangshun Luo, Yanqing Su, et al. Reducing porosity and optimizing performance for Al-Cu-based alloys with  large solidification intervals by coupling travelling magnetic fields with sequential solidification. Journal of Materials  Science & Technology, 2021, 79: 1-14.            
    
    
 
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    Lei Luo, Liangshun Luo, Robert O. Ritchie, et al. Optimizing the microstructures and mechanical properties of Al-Cu-based  alloys with large solidification intervals by coupling travelling magnetic fields with sequential solidification. Journal of  Materials Science & Technology, 2021, 61: 100-113.            
    
    
 
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    Lei Luo, Liangshun Luo, Yanqing Su, et al. Optimizing the microstructure, shrinkage defects and mechanical performance  of ZL205A alloys via coupling travelling magnetic fields with unidirectional solidification. Journal of Materials Science &  Technology, 2021, 74: 246-258.            
    
    
 
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    Lei Luo, Hongying Xia, Liangshun Luo, et al. Eliminating shrinkage defects and improving mechanical performance of  large thin-walled ZL205A alloy castings by coupling travelling magnetic fields with sequential solidification. Transactions  of Nonferrous Metals Society of China, 2021, 31: 865-877.            
    
    
 
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    Lei Luo, Hongying Xia, Liangshun Luo, et al. Microstructural optimization of Fe-rich intermetallic in  Al-12wt.%Si-2wt.%Fe alloys by adding travelling magnetic fields. Advanced Engineering Materials, 2020, 22(11):  2000561.            
    
    
 
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    Lei Luo, Liangshun Luo, Zhiping Li, et al. Microstructural evolution of Al-Cu-Li alloys with different Li contents by  coupling of near-rapid solidification and two-stage homogenization treatment. China foundry, 2020, 17(3): 190-197.