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SMA Texture and Reorientation: Simulations Neutron Diffraction Studies

机译:SMA纹理和重新定向:模拟和中子衍射研究

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摘要

With increased usage of shape memory alloys (SMA) for applications in various fields, it is important to understand how the material behavior is affected by factors such as texture, stress state and loading history, especially for complex multiaxial loading states. Using the in-situ neutron diffraction loading facility (SMARTS diffractometer) and ex situ inverse pole figure measurement facility (HIPPO diffractometer) at the Los Alamos Neutron Science Center (LANCE), the macroscopic mechanical behavior and texture evolution of Nickel-Titanium (Nitinol) SMAs under sequential compression in alternating directions were studied. The simplified multivariant model developed at Northwestern University was then used to simulate the macroscopic behavior and the microstructural change of Nitinol under this sequential loading. Pole figures were obtained via post-processing of the multivariant results for volume fraction evolution and compared quantitatively well to the experimental results. The experimental results can also be used to test or verify other SMA constitutive models.
机译:随着形状记忆合金(SMA)在各个领域中的使用量增加,了解材料行为如何受到纹理,应力状态和加载历史等因素的影响非常重要,尤其是对于复杂的多轴加载状态。使用洛斯阿拉莫斯中子科学中心(LANCE)的原位中子衍射加载设备(SMARTS衍射仪)和非原位逆极图测量设备(HIPPO衍射仪),镍钛(镍钛诺)的宏观力学行为和织构演变研究了在交替方向上依次压缩下的SMA。然后,使用西北大学开发的简化多变量模型来模拟在此顺序加载下镍钛诺的宏观行为和微观结构变化。通过对体积分数演变的多变量结果进行后处理获得极图,并将其与实验结果进行定量比较。实验结果还可以用于测试或验证其他SMA本构模型。

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