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Phase Transformation Characteristics of High-Temperature Shape Memory Alloy under Tension, Compression, and Bending Actuation Cycling

机译:高温形状记忆合金在拉伸,压缩和弯曲驱动循环下的相变特性

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Shape Memory Alloys (SMAs) are a unique class of intermetallic alloys that can cyclically sustain large deformations and recover a designed geometry through a solid-to-solid phase transformation. SMAs provide favorable actuation energy density properties, making them suitable for engineering applications requiring a significant, repeated, work output. To facilitate the development and validation of an SMA constitutive model considering the evolving anisotropic material response for High-Temperature SMA (HTSMA), uniaxial and pure bending actuation cycling tests on HTSMA specimens are performed by a custom-built testing frames. The phase transformation characteristics for Ni_(50.3)TiHf_(20) HTSMA under uniaxial tension/compression and four-point bending actuation cycles are investigated. The experimental results show that the polycrystalline HTSMAs has a strong tension-compression asymmetry under uniaxial actuation cycling loading conditions. Furthermore, the four-point beam bending test shows that there is intrinsic phenomenon when HTSMAs are subjected to cyclic actuation bending conditions, i.e., the zero-strain neutral axis shifts as a result of the asymmetric tension-compression phase transformations and the asymmetric generation of TRIP strains on different sides of the beam. The conducted experiments provide invaluable information to develop and improve the SMA constitutive model considering tension-compression asymmetry and TRIP strain generation within a unified modeling effort. As future work, additional experiments on other HTSMA components, such as torque tubes and specimens with notches or cutouts, under actuation cycling would provide more comprehensive validation data and component performance for HTSMA-based actuators.
机译:形状记忆合金(SMA)是一类独特的金属间合金,可以周期性地承受较大的变形并通过固-固相变来恢复设计的几何形状。 SMA提供了有利的驱动能量密度特性,使其适合需要大量重复工作输出的工程应用。考虑到高温SMA(HTSMA)不断发展的各向异性材料响应,为促进SMA本构模型的开发和验证,通过定制的测试框架对HTSMA样品进行了单轴和纯弯曲致动循环测试。研究了Ni_(50.3)TiHf_(20)HTSMA在单轴拉伸/压缩和四点弯曲驱动循环下的相变特性。实验结果表明,多晶HTSMAs在单轴驱动循环加载条件下具有很强的拉伸-压缩不对称性。此外,四点梁弯曲试验表明,当HTSMA经受周期性驱动弯曲条件时,存在固有现象,即零应变中性轴由于不对称的拉伸压缩相变和不对称生成而产生位移。 TRIP应变在光束的不同侧面上。进行的实验提供了宝贵的信息,可以在统一的建模工作中考虑到拉伸-压缩不对称和TRIP应变生成,从而开发和改进SMA本构模型。作为将来的工作,在致动循环下对其他HTSMA组件(例如扭矩管和带有缺口或切口的标本)进行额外的实验,将为基于HTSMA的致动器提供更全面的验证数据和组件性能。

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