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Effect of Electromagnetic Stirring on the Distribution of Nb Phase in Cu-5wt%Nb Alloys 被引量:1

Effect of Electromagnetic Stirring on the Distribution of Nb Phase in Cu-5wt%Nb Alloys
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摘要 The effect of electromagnetic stirring(EMS)on the distribution of Nb particles in solidified microstructure of a Cu-5wt%Nb alloy were studied.In this paper,we have Cu-5wt%Nb alloy remelted and solidified with or without electromagnetic stirring,to study the effect of EMS on the distribution of Nb phase and the hardness of ingots.The 300A/16Hz EMS has refined the mircostrucrure of Cu-5%Nb alloy,with smaller particles sizes and larger amounts,and is benefit to the homogenous distribution of particles.The fitted lognormal distribution of particles diameter that in case without or with EMS are compared,and the EMS case has the highest frequency percentage in the range of smaller size. EMS considerably increased the hardness of Cu-5%Nb alloy ingot. The effect of electromagnetic stirring(EMS)on the distribution of Nb particles in solidified microstructure of a Cu-5wt%Nb alloy were studied.In this paper,we have Cu-5wt%Nb alloy remelted and solidified with or without electromagnetic stirring,to study the effect of EMS on the distribution of Nb phase and the hardness of ingots.The 300A/16Hz EMS has refined the mircostrucrure of Cu-5%Nb alloy,with smaller particles sizes and larger amounts,and is benefit to the homogenous distribution of particles.The fitted lognormal distribution of particles diameter that in case without or with EMS are compared,and the EMS case has the highest frequency percentage in the range of smaller size. EMS considerably increased the hardness of Cu-5%Nb alloy ingot.
出处 《Journal of Iron and Steel Research(International)》 SCIE EI CAS CSCD 2012年第S2期830-833,共4页 钢铁研究学报(英文版)
基金 Item Sponsored by the National Natural Science Foundation of China[No.50901019] the Fundamental Research Funds for the Central Universities[No.N100409009] the Wuhan National High Magnetic Field Center[No.WHMFCKF2011007] China Postdoctoral Science Foundation[No.20100471458] the National Natural Science Foundation of China[No.51004038] National High-tech R&D Program of China[No.2007AA03Z519] the 111 Project of China(No.B07015)
关键词 magnetic field CU-NB SOLIDIFICATION CONDUCTIVITY ultimate tensile strength magnetic field Cu-Nb solidification conductivity ultimate tensile strength
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