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Modelling the curing process in magneto-sensitive polymers: Rate-dependence and shrinkage

机译:对磁敏聚合物的固化过程进行建模:速率依赖性和收缩率

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This paper deals with a phenomenologically motivated magneto-viscoelastic coupled finite strain framework for simulating the curing process of polymers under the application of a coupled magneto-mechanical road. Magneto-sensitive polymers are prepared by mixing micron-sized ferromagnetic particles in uncured polymers. Application of a magnetic field during the curing process causes the particles to align and form chain-like structures lending an overall anisotropy to the material. The polymer curing is a viscoelastic complex process where a transformation from fluid. to solid occurs in the course of time. During curing, volume shrinkage also occurs due to the packing of polymer chains by chemical reactions. Such reactions impart a continuous change of magneto-mechanical properties that can be modelled by an appropriate constitutive relation where the temporal evolution of material parameters is considered. To model the shrinkage during curing, a magnetic-induction-dependent approach is proposed which is based on a multiplicative decomposition of the deformation gradient into a mechanical and a magnetic-induction-dependent volume shrinkage part. The proposed model obeys the relevant laws of thermodynamics. Numerical examples, based on a generalised Mooney-Rivlin energy function, are presented to demonstrate the model capacity in the case of a magneto-viscoelastically coupled load. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文研究了一种由现象学驱动的磁粘弹性耦合有限应变框架,用于模拟在磁-机械耦合路径下聚合物的固化过程。磁敏聚合物是通过将微米尺寸的铁磁颗粒混合到未固化的聚合物中来制备的。在固化过程中施加磁场会导致粒子排列并形成链状结构,从而使材料具有整体各向异性。聚合物固化是一种粘弹性复合过程,其中会发生流体转化。随着时间的流逝,固体会变硬。在固化过程中,由于聚合物链通过化学反应堆积而导致体积收缩。这种反应赋予了磁机械性能连续变化,可以通过考虑材料参数随时间变化的适当本构关系来建模。为了模拟固化过程中的收缩,提出了一种基于磁感应的方法,该方法基于将变形梯度乘以分解为机械的和与磁感应相关的体积收缩部分。所提出的模型服从热力学的相关定律。给出了基于广义Mooney-Rivlin能量函数的数值示例,以证明在磁粘弹耦合载荷的情况下的模型容量。 (C)2015 Elsevier Ltd.保留所有权利。

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