个人信息Personal Information
副教授
博士生导师
硕士生导师
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:材料物理与化学. 材料学
办公地点:大连理工大学新三束实验室410
联系方式:0411-84706400
电子邮箱:yhli@dlut.edu.cn
Effects of Alloying Elements on the Thermal Stability and Corrosion Resistance of an Fe-based Metallic Glass with Low Glass Transition Temperature
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论文类型:期刊论文
发表时间:2014-05-01
发表刊物:10th Annual Meeting and Exhibition on Bulk Metallic Glasses
收录刊物:SCIE、EI、CPCI-S
卷号:45A
期号:5
页面范围:2393-2398
ISSN号:1073-5623
摘要:The effects of alloying elements on the thermal stability, glass-forming ability (GFA), corrosion resistance, and magnetic and mechanical properties of a soft magnetic Fe75P10C10B5 metallic glass with a low glass transition temperature (T (g)) of 723 K (450A degrees C) were investigated. The addition of Mo, Ni, and Co significantly increased the stabilization of supercooled liquid, GFA, and corrosion resistance in the H2SO4 solution. The maximum critical diameter (d (c)) of 4 mm for glass formation was obtained for the Fe55Co10Ni5Mo5P10C10B5 alloy, which shows the largest supercooled liquid region (Delta T (x) ) of 89 K (89 A degrees C). The substitution of Cr for Mo further enhanced the corrosion resistance of the Fe55Co10Ni5Mo5P10C10B5, while the Delta T (x) and d (c) decreased. The (Fe, Ni, Co)(70)(Mo, Cr)(5)P10C10B5 bulk metallic glasses showed low T (g) of 711 K to 735 K (438 A degrees C to 462 A degrees C), wide Delta T (x) of 67 K to 89 K, high saturation magnetization of 0.79 to 0.93 T, low coercive force of 2.36 to 6.61 A m(-1), high compressive yield strength of 3271 to 3370 MPa, and plastic strain of 0.8 to 2.3 pct. In addition, the mechanism for enhancing stability of supercooled liquid was discussed in terms of the precipitated phases during crystallization.