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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Stress-induced martensitic transformation in nanometric NiTi shape memory alloy strips: An in situ TEM study of the thickness/size effect
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Stress-induced martensitic transformation in nanometric NiTi shape memory alloy strips: An in situ TEM study of the thickness/size effect

机译:纳米NiTi形状记忆合金条中的应力诱导马氏体相变:厚度/尺寸效应的原位TEM研究

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摘要

Ultrathin NiTi miniature strips of 40-83 nm in thickness were fabricated by means of focused ion beam milling from a polycrystalline NiTi shape memory alloy. The NiTi strips were subjected to tensile deformation inside a transmission electron microscope using a self-designed tension apparatus for in situ examination of the effect of thickness on the stress induced martensitic transformation behavior in the strips. The study revealed that the transformation was completely suppressed in a strip of 40 nm in thickness whereas it was possible in thicker strips. In these strips, the stress induced martensitic transformation was found to commence sequentially in thicker strips first and then in thinner strips at higher strain (stress) levels, demonstrating the size effect. This size effect is attributed to the effect of damaged surfaces, including a Ga~+-impregnated amorphous layer on one side of the strip caused by sample fabrication using FIB and oxidation affected layers on both sides. This means that the observed "size effect" is not an intrinsic behavior of the martensitic transformation in NiTi but of extrinsic influences.
机译:通过聚焦离子束铣削由多晶NiTi形状记忆合金制成厚度为40-83 nm的超薄NiTi微型条。使用自行设计的拉伸设备,在透射电子显微镜内对NiTi带材进行拉伸变形,以原位检查厚度对带材中应力诱发的马氏体相变行为的影响。研究表明,在厚度为40 nm的条带中,该转变被完全抑制,而在较厚的条带中,这种转变是可能的。在这些钢带中,发现应力诱导的马氏体相变先在较厚的钢带中依次开始,然后在较高应变(应力)水平的较细钢带中依次开始,这表明了尺寸效应。这种尺寸效应归因于损坏表面的影响,包括使用FIB进行样品制造以及在两侧均受到氧化影响的层引起的带材一侧的Ga +浸渍非晶层。这意味着观察到的“尺寸效应”不是NiTi中马氏体相变的固有行为,而是外部影响。

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