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首页> 外文期刊>Journal of intelligent material systems and structures >Quasi-static characterisation of trained pseudoelastic shape memory alloy wire subjected to cyclic loading: transformation kinetics
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Quasi-static characterisation of trained pseudoelastic shape memory alloy wire subjected to cyclic loading: transformation kinetics

机译:受过训练的伪弹性形状记忆合金线在循环载荷下的准静态特性:转变动力学

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摘要

A kinetic law for constitutive modelling of shape memory alloys is proposed in order to increase model predictability in comparison with experimental data. The proposed law is based on cubic Bezier curves and contains curvature controlling parameters. The kinetic law and also the Duhem-Madelung sub-loop model are implemented in a state-of-the-art constitutive model based on the framework by Lagoudas and coworkers. The original and modified models are fitted to consistent experimental results from mechanical cyclic loading under isothermal conditions (0-800MPa, 30-70 degrees C) of a trained pseudoelastic shape memory alloy wire. Quantitative measures of goodness of fit show that both models perform well, but use of the modified model results in 31% reduction of the residual standard deviation compared with the original model (21.4 versus 14.8MPa) in model calibration and 23% in model validation. The proposed kinetic law therefore ensures higher predictability.
机译:为了与实验数据相比增加模型的可预测性,提出了形状记忆合金本构模型的动力学定律。拟议的法律是基于三次贝塞尔曲线,并包含曲率控制参数。动力学定律以及Duhem-Madelung子回路模型是在Lagoudas和同事的框架下,以最先进的本构模型实现的。原始模型和修改后的模型适合经过训练的拟弹性形状记忆合金线在等温条件(0-800MPa,30-70摄氏度)下的机械循环载荷所产生的一致实验结果。拟合优度的定量度量表明,两个模型均表现良好,但在模型校准中,使用修改后的模型可使残留标准偏差与原始模型(21.4对14.8MPa)相比减少31%,在模型验证中减少23%。因此,建议的动力学定律可确保更高的可预测性。

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