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A semi-analytical study on helical springs made of shape memory polymer

机译:形状记忆聚合物制成的螺旋弹簧的半分析研究

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In this paper, the responses of shape memory polymer (SMP) helical springs under axial force are studied both analytically and numerically. In the analytical solution, we first derive the response of a cylindrical tube under torsional loadings. This solution can be used for helical springs in which both the curvature and pitch effects are negligible. This is the case for helical springs with large ratios of the mean coil radius to the cross sectional radius (spring index) and also small pitch angles. Making use of this solution simplifies the analysis of the helical springs to that of the torsion of a straight bar with circular cross section. The 3D phenomenological constitutive model recently proposed for SMPs is also reduced to the 1D shear case. Thus, an analytical solution for the torsional response of SMP tubes in a full cycle of stress-free strain recovery is derived. In addition, the curvature effect is added to the formulation and the SMP helical spring is analyzed using the exact solution presented for torsion of curved SMP tubes. In this modified solution, the effect of the direct shear force is also considered. In the numerical analysis, the 3D constitutive equations are implemented in a finite element program and a full cycle of stress-free strain recovery of an SMP (extension or compression) helical spring is simulated. Analytical and numerical results are compared and it is shown that the analytical solution gives accurate stress distributions in the cross section of the helical SMP spring besides the global loaddeflection response. Some case studies are presented to show the validity of the presented analytical method.
机译:本文分析和数值研究了形状记忆聚合物(SMP)螺旋弹簧在轴向力作用下的响应。在解析解中,我们首先得出圆柱管在扭转载荷下的响应。该解决方案可用于其中曲率和俯仰效应都可以忽略不计的螺旋弹簧。螺旋弹簧的平均线圈半径与横截面半径之比(弹簧指数)大,而螺距角也小。利用这种解决方案可以将螺旋弹簧的分析简化为具有圆形横截面的直杆的扭转。最近针对SMP提出的3D现象本构模型也简化为1D剪切情况。因此,得出了在无应力应变恢复的整个周期中SMP管扭转响应的解析解决方案。此外,将曲率效应添加到配方中,并使用针对弯曲SMP管扭转的精确解决方案来分析SMP螺旋弹簧。在这种改进的解决方案中,还考虑了直接剪切力的影响。在数值分析中,在有限元程序中实现了3D本构方程,并模拟了SMP(拉伸或压缩)螺旋弹簧无应力应变的完整循环。分析和数值结果进行了比较,结果表明,除了整体载荷挠度响应之外,解析解决方案还可以在SMP螺旋弹簧的横截面上提供准确的应力分布。提出了一些案例研究,以证明所提出的分析方法的有效性。

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