首页|Fe?C微合金化对Zr53Al11.6Ni11.7Cu23.7块体金属玻璃性能的影响

Fe?C微合金化对Zr53Al11.6Ni11.7Cu23.7块体金属玻璃性能的影响

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采用水冷铜模吸铸法制备(Zr53Al11.6Ni11.7Cu23.7)1−x(Fe77.1C22.9)x(x=0~2.2,摩尔分数,%)块体金属玻璃,系统研究其玻璃形成能力和物理化学性能.结果表明,随着x的增大,玻璃形成能力得到提高,但当x大于0.44%时,玻璃形成能力降低;Fe−C的添加使玻璃转变温度和晶化温度同时升高,但使过冷液相区变窄.块体金属玻璃的硬度、屈服和断裂强度以及塑性首先随Fe−C含量的增加而增加,但当x增加到1.32%时,这些性能下降;含1.32%Fe−C的块体金属玻璃的塑性应变是不含Fe和C的块体金属玻璃的6倍.Fe−C微合金化后,块体金属玻璃的腐蚀电位轻微下降,然而腐蚀电流密度增加;随着Fe−C合金含量的增加,点蚀变得越来越严重.
Fe−C micro-alloying effect on properties of Zr53Al11.6Ni11.7Cu23.7 bulk metallic glass
(Zr53Al11.6Ni11.7Cu23.7)1−x(Fe77.1C22.9)x (x=0−2.2, at.%) bulk metallic glasses (BMGs) were prepared by copper mold suction casting method. Their glass forming ability and physical and chemical properties were systematically investigated. The glass forming ability is firstly improved with increasing x, and then decreased when x exceeds 0.44 at.%. Both glass transition temperature and crystallization temperature are increased, while the supercooled liquid region is narrowed, with Fe−C micro-alloying. The hardness, yielding and fracture strength, and plasticity firstly increase and then decrease when x reaches up to 1.32 at.%. The plasticity of the BMG (x=1.32 at.%) is six times that of the Fe-free and C-free BMG. In addition, by the Fe−C micro-alloying, the corrosion potential is slightly decreased, while the corrosion current density increases. The pitting corrosion becomes increasingly serious with the increase of Fe and C content.

Zr-based metallic glasscorrosion propertythermal propertymechanical propertyFe−C micro-alloying

丁大伟、谭靖、蔡安辉、刘咏、吴宏、安琪、李鹏伟、张焱、阳清

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中国科学院 物理研究所,北京 100190

松山湖材料实验室,东莞 523808

湖南理工学院 机械工程学院,岳阳 414000

中南大学 粉末冶金国家重点实验室,长沙 410083

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锆基金属玻璃 腐蚀性能 热学性能 力学性能 Fe−C微合金化

518712342016YFB-0300500XCA19013-04

2021

中国有色金属学报(英文版)
中国有色金属学会

中国有色金属学报(英文版)

CSTPCDCSCDSCI
影响因子:1.183
ISSN:1003-6326
年,卷(期):2021.31(9)
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