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首页> 外文期刊>Materials Letters >Exploring thermomechanical functionality of CuAlMn as an extreme low temperature shape memory alloy
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Exploring thermomechanical functionality of CuAlMn as an extreme low temperature shape memory alloy

机译:探索CuAlMn作为极低温形状记忆合金的热机械功能

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Solid state actuation characteristics of CuAlMn shape memory alloys (SMAs) are reported at extreme low temperatures (-100 degrees C). The effects of composition on the martensitic transformation (MT) characteristics are demonstrated at low temperatures (below -200 degrees C). The thermomechanical experiments revealed that the alloys exhibited 2.9 actuation strain under 250 MPa at subzero temperatures. CuAlMn SMAs with different Mn concentrations displayed 2 superelasticity at temperatures lower than -100 degrees C. The results illustrate that CuAlMn SMAs are promising candidates for cryogenic actuation and superelastic applications. The results are significant because none of the well-known NiTi SMAs demonstrate reversible thermally-induced MT below -60 degrees C. These findings are important for enabling solid state actuation in space and subsea environments.
机译:据报道,CuAlMn形状记忆合金(SMA)在极低温度(<-100°C)下的固态驱动特性。在低温(低于-200°C)下证明了成分对马氏体相变(MT)特性的影响。热机械实验表明,在零下温度下,合金在250 MPa下表现出2.9%的致动应变。不同Mn浓度的CuAlMn SMA在低于-100°C的温度下表现出2%的超弹性。结果表明,CuAlMn SMAs是低温致动和超弹性应用的候选材料。结果意义重大,因为没有一个众所周知的 NiTi SMA 在 -60 °C 以下表现出可逆的热诱导 MT。这些发现对于在太空和海底环境中实现固态驱动非常重要。

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