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Theoretical and Experimental Investigation on SMA Superelastic Springs

机译:SMA超弹性弹簧的理论和实验研究

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The mechanical behavior of superelastic springs is investigated in this study. The goal is to evaluate the device response and to exploit the material superelastic behavior, main concerns being material and geometrical response nonlinearity. The investigation is made of two parts, i.e., an experimental campaign and a numerical model proposal. Experimental tests have been performed on superelastic SMA coil springs considering load history in tension and compression for three different spring geometrical configurations. Tested specimens experience a maximum elongation larger than the original spring axis length. The response is not symmetric and under compression it is affected by buckling instability. Nevertheless, experimental results show a very good superelastic behavior with no damage and with negligible residual displacements. Numerical analyses have been performed to reproduce the experimental campaign results. A simple finite element model is proposed. Experimental and numerical result agreement is very good. The numerical model turns out to be a powerful design tool even for the very complex geometrical and material nonlinear conditions under investigation. Hence, it is proposed as a useful tool for spring design validation and response prediction.
机译:在这项研究中研究了超弹性弹簧的力学性能。目的是评估设备响应并利用材料的超弹性行为,主要关注的是材料和几何响应的非线性。该调查分为两个部分,即实验活动和数值模型建议。考虑到三种不同弹簧几何构型的拉伸和压缩载荷历史,已经对超弹性SMA螺旋弹簧进行了实验测试。被测样品的最大伸长率大于原始弹簧轴的长度。响应不是对称的,并且在压缩下会受到屈曲不稳定性的影响。尽管如此,实验结果显示出非常好的超弹性行为,没有损坏且残余位移可忽略不计。进行了数值分析以重现实验活动结果。提出了一种简单的有限元模型。实验与数值结果吻合很好。即使对于正在研究的非常复杂的几何和材料非线性条件,数值模型仍然是一个强大的设计工具。因此,它被建议作为弹簧设计验证和响应预测的有用工具。

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