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An Investigation of the Material and Model Parameters for a Constitutive Model for MSMAs

机译:MSMA本构模型的材料和模型参数研究

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A two dimensional constitutive model capable of predicting the magneto-mechanical response of a magnetic shape memory alloy (MSMA) has been developed and calibrated using a zero field-variable stress test. This calibration approach is easy to perform and facilitates a faster evaluation of the three calibration constants required by the model (vs. five calibration constants required by previous models). The calibration constants generated with this approach facilitate good model predictions of constant field-variable stress tests, for a wide range of loading conditions'. However, the same calibration constants yield less accurate model predictions for constant stress-variable field tests. Deployment of a separate calibration method for this type of loading, using a varying field-zero stress calibration test, also didn't lead to improved model predictions of this loading case. As a result, a sensitivity analysis was performed on most model and material parameters to identify which of them may influence model predictions the most, in both types of loading conditions. The sensitivity analysis revealed that changing most of these parameters did not improve model predictions for all loading types. Only the anisotropy coefficient was found to improve significantly field controlled model predictions and slightly worsen model predictions for stress controlled cases. This suggests that either the value of the anisotropy coefficient (which is provided by the manufacturer) is not accurate, or that the model is missing features associated with the magnetic energy of the material.
机译:已经开发了二维本构模型,该模型可以预测磁性形状记忆合金(MSMA)的磁机械响应,并使用零场变应力测试对其进行了校准。这种校准方法易于执行,并且有助于更快地评估模型所需的三个校准常数(与之前模型所需的五个校准常数相比)。用这种方法生成的校准常数有助于在各种载荷条件下对恒定的现场可变应力测试进行良好的模型预测。但是,对于恒定的应力可变的现场测试,相同的校准常数会产生较不准确的模型预测。使用变化的零场应力校准测试针对这种类型的载荷部署单独的校准方法,也没有导致这种载荷​​情况的模型预测得到改进。结果,在两种加载条件下,对大多数模型和材料参数进行了敏感性分析,以识别其中哪些对模型预测的影响最大。敏感性分析表明,更改大多数这些参数并不能改善所有载荷类型的模型预测。仅发现各向异性系数可显着改善应力控制情况下的现场控制模型预测,并稍稍降低模型预测。这表明各向异性系数的值(由制造商提供)不准确,或者模型缺少与材料的磁能相关的特征。

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