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Experimental characterization and modelling validation of shape memory alloy Negator springs

机译:形状记忆合金负片弹簧的实验表征和建模验证

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This article is aimed at the experimental characterization and modelling validation of shape memory alloy Negator springs. A Negator spring is a spiral spring made of strip of metal wound on the flat with an inherent curvature such that, in repose, each coil wraps tightly on its inner neighbour. The main feature of a Negator springs is the nearly constant force-displacement behaviour in the unwinding of the strip, mounted on a rotating drum. Moreover, the stroke is very long, theoretically infinite as it depends only on the length of the initial strip. A Negator spring made of shape memory alloy is built and experimentally tested to demonstrate the feasibility of this actuator. The shape memory Negator spring behaviour is predicted both with an analytical model and with a finite element software. In both cases, the material is modelled as elastic in austenitic range while an exponential continuum law is used to describe the martensitic behaviour. The experimental results confirm the applicability of this kind of geometry to the shape memory alloy actuators, and the analytical model is confirmed to be a powerful design tool to dimension and predict the spring behaviour both in martensitic and austenitic ranges, as well as the finite element model developed.
机译:本文旨在对形状记忆合金Negator弹簧进行实验表征和建模验证。负片弹簧是由金属带制成的螺旋弹簧,螺旋形金属片以固有的曲率缠绕在平板上,以便每个线圈在其内部邻居紧紧缠绕。负片弹簧的主要特征是在安装在旋转滚筒上的带材退绕时几乎恒定的力-位移行为。此外,行程非常长,理论上是无限的,因为它仅取决于初始带材的长度。构造了由形状记忆合金制成的负片弹簧,并进行了实验测试,以证明该执行器的可行性。可以通过分析模型和有限元软件来预测形状记忆Negator的弹簧性能。在这两种情况下,材料都被建模为奥氏体范围内的弹性,而指数连续法则用来描述马氏体的行为。实验结果证实了这种几何形状对形状记忆合金致动器的适用性,并且该分析模型被证实是一种强大的设计工具,可以在马氏体和奥氏体以及有限元中确定和预测弹簧的行为。模型开发。

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