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Role of Si in Improving the Shape Recovery of FeMnSiCrNi Shape Memory Alloys

机译:硅在改善FeMnSiCrNi形状记忆合金形状恢复中的作用

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摘要

The effect of Si addition on the microstructure and shape recovery of FeMnSiCrNi shape memory alloys has been studied. The microstructural observations revealed that in these alloys the microstructure remains single-phase austenite (γ) up to 6 pct Si and, beyond that, becomes two-phase γ + δ ferrite. The Fe5Ni3Si2 type intermetallic phase starts appearing in the microstructure after 7 pct Si and makes these alloys brittle. Silicon addition does not affect the transformation temperature and mechanical properties of the γ phase until 6 pct, though the amount of shape recovery is observed to increase monotonically. Alloys having more than 6 pct Si show poor recovery due to the formation of δ-ferrite. The shape memory effect (SME) in these alloys is essentially due to the γ to stress-induced ε martensite transformation, and the extent of recovery is proportional to the amount of stress-induced ε martensite. Alloys containing less than 4 pct and more than 6 pct Si exhibit poor recovery due to the formation of stress-induced α′ martensite through γ-ε-α′ transformation and the large volume fraction of δ-ferrite, respectively. Silicon addition decreases the stacking fault energy (SFE) and the shear modulus of these alloys and results in easy nucleation of stress-induced ε martensite; consequently, the amount of shape recovery is enhanced. The amount of athermal ε martensite formed during cooling is also observed to decrease with the increase in Si.
机译:研究了添加硅对FeMnSiCrNi形状记忆合金的组织和形状恢复的影响。显微组织观察表明,在这些合金中,显微组织保持高达6 pct Si的单相奥氏体(γ),并且超出此范围,成为两相γ+δ铁素体。 Si 7 pct后,Fe 5 Ni 3 Si 2 型金属间相开始出现在显微组织中,并使这些合金变脆。尽管观察到形状恢复的量单调增加,但是硅的添加直到6 pct才影响γ相的转变温度和机械性能。 Si含量超过6 pct的合金由于形成δ铁素体而显示出较差的回收率。这些合金中的形状记忆效应(SME)基本上是由于γ到应力引起的ε马氏体相变,而回复程度与应力引起的ε马氏体的量成正比。含有少于4 pct和大于6 pct Si的合金分别由于通过γ-ε-α'相转变而形成应力诱导的α'马氏体和大量δ-铁素体而表现出较差的回收率。硅的添加会降低这些合金的堆垛层错能(SFE)和剪切模量,并导致应力诱发的ε马氏体容易形核。因此,形状恢复量增加。还观察到冷却过程中形成的无热ε马氏体数量随Si的增加而减少。

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