个人信息Personal Information
教授
博士生导师
硕士生导师
主要任职:研究生院常务副院长
其他任职:辽宁省凝固控制与数字化制备技术重点实验室主任
性别:男
毕业院校:大连理工大学
学位:博士
所在单位:材料科学与工程学院
学科:材料加工工程
办公地点:研究生院;材料科学与工程学院
联系方式:tmwang@dlut.edu.cn
电子邮箱:tmwang@dlut.edu.cn
Tuning magnetic properties based on FeCoNiSi0.4Al0.4 with dual-phase nano-crystal and nano-amorphous microstructure
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论文类型:期刊论文
发表时间:2020-02-01
发表刊物:INTERMETALLICS
收录刊物:EI、SCIE
卷号:117
ISSN号:0966-9795
关键字:High entropy alloy; FeCoNiSiAl; Nano-crystal and nano-amorphous; Milling; Phase transition; Magnetic properties
摘要:The idea of adjusting the crystallinity of powders via controlling the phase composition of milling precursor (ribbons) has been used to prepare FeCoNiSi0.4Al0.4 high entropy alloy powders (HEAPs) with dual-phase nano-crystal (NC) and nano-amorphous (NA) microstructure. The crystallinity of HEAPs are related to the FCC phase proportion of milling precursor: within 60%, positive correlation; beyond 60%, negative correlation. Different phase structure for ribbons can be obtained by taking advantage of the difference in phase stability, as an extension of annealing time induces the increment of FCC phase content. The introduction of nano-scale phase separation in HEA ribbons provides a prerequisite. Multiphase NCs distribute randomly in matrix, while NCs with FCC phase are aggregated into about 50 run regions embedded in matrix. Three kinds of phase transition are coexisted during the dry-milling process, generating the coexistence of NCs and NM. Due to the unique microstructure, in especial NCs doped by NM, and the skillful preparation technology, a small H-c, varying from 12.97 Oe (C-0) to 28.33 Oe (C-50), and a large complex permeability (mu'), varying from 2.60 (C-0) to 2.30 (C-50), can be obtained.