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Contact/impact modeling and analysis of 4D printed shape memory polymer beams

机译:4D印刷形状记忆聚合物梁的接触/影响建模与分析

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摘要

This study examines contact and impact behaviors of shape memory polymer (SMP) beams fabricated by four-dimensional (4D) printing technology. A 3D phenomenological constitutive model is developed to predict visco-elastic-plastic characteristics of SMPs and their shape memory effect in large deformation range for the first time. A novel finite element method (FEM) based on non-linear Green strains is established to analyze the SMP beam under contact/impact loadings. Newmark and Newton-Raphson methods along with an iterative-incremental approach based on a visco-elastic-predictor visco-plastic-corrector return mapping algorithm are implemented to solve FEM governing equations in spatial and time domains. Fused deposition modeling is employed to 4D print samples from polyurethane-based filaments. Thermo-mechanical experimental tests are performed to acquire the parameters needed for the SMP constitutive model. The effects of indentation location, substrate thickness, and edge effect are examined numerically for cylindrical indentation of elastic-plastic SMPs at glassy phase. The validation and application of the Hertzian load-displacement relation for indentation of elastic materials are also clarified. Then, experimental and numerical tests are conducted to examine impact responses of 4D printed SMP beams. Influences of impact position and impactor initial velocity and energy on the responses of the structure in forced and free vibration regimes are studied in detail. The results revealed that the projectile with low velocity or high velocity accompanied with low energy impacted the beam is able to produce plastic deformation. It is shown that the large residual plastic deformation can be fully recovered by simply heating. Due to the absence of similar results in the specialized literature, this paper provides pertinent results that are instrumental in the design of SMP beam-like structures under impact loadings.
机译:本研究检查了由四维(4D)印刷技术制造的形状记忆聚合物(SMP)光束的接触和冲击行为。开发了一种3D现象学基本模型,以预测SMPS的粘弹性特性及其在大变形范围内的形状记忆效应。建立了一种基于非线性绿色菌株的新型有限元方法(FEM),以分析接触/冲击载荷下的SMP光束。 Newton和Newton-Raphson方法以及基于Visco-Elastic-Predictor求求校正返回映射算法的迭代增量方法,以解决空间和时间域中的有限元管方程。融合沉积建模用于来自聚氨酯的长丝的4D印刷样品。进行热机械实验测试以获取SMP本构模型所需的参数。压痕位置,衬底厚度和边缘效应的效果在数值上进行了针对玻璃相的用于弹性塑料SMP的圆柱形压痕。还阐明了弹性材料缩进的峰值负荷 - 位移关系的验证和应用。然后,进行实验和数值测试以检查4D印刷SMP光束的冲击响应。详细研究了冲击位置和撞击率初始速度和能量对强制和自由振动制度的响应的影响。结果表明,具有低能量的低速或高速速度的射弹撞击梁能够产生塑性变形。结果表明,通过简单加热可以完全回收大的残余塑性变形。由于专业文献中没有类似的结果,本文提供了在冲击载荷下的SMP光束结构设计中有乐于有用的结果。

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