应变玻璃化转变导致Ni55−xCoxFe18Ga27合金的超弹性转变

D. P. Wang, X. Chen, Z. Nie, N. Li, Z. L. Wang, Y. Ren, Y. Wang
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引用次数: 27

摘要

在这里,我们报道了Ni55−xCoxFe18Ga27 (x= 0-12)合金体系的超弹性磁滞回线从尖锐的有平台到光滑的无平台的转变,Co取代Ni的比例增加到10%。Co含量达到10 at。%时,合金表现出明显的应变玻璃化转变特征,即内摩擦峰的温度随频率变化,存储模量的温度随频率变化,符合Vogel-Fulcher关系。高能x射线衍射直接证明,光滑的磁滞环源于有限雪崩马氏体转变模式,在变形过程中在残余的母相中诱发了长时间的非均匀应力场。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Transition in superelasticity for Ni55−xCoxFe18Ga27 alloys due to strain glass transition
Here we report a transition in superelastic hysteresis loop from sharp with plateau to smooth without plateau for a Ni55−xCoxFe18Ga27 (x=0–12) alloy system with increasing Co substituting for Ni up to 10 at.%. With the Co content reaching 10 at.%, the alloy exhibits the obvious characteristic of the strain glass transition, i.e., the frequency-dependent shift in temperature of the internal friction peak and frequency-dependent dip temperature, Tg, of the storage modulus following the Vogel-Fulcher relationship. The high-energy X-ray diffraction provides the direct evidence that the smooth hysteresis loops stem from a finite avalanche martensite transformation mode, inducing a long-range inhomogeneous stress field in the remained parent phase during deformation.
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