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The Continuum Approach to the Description of Semi-Crystalline Polymers Deformation Regimes: The Role of Dynamic and Translational Defects

机译:半结晶聚合物变形体系描述的连续方法:动态和平移缺陷的作用

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摘要

This paper presents a new approach to describe the mechanical behavior of semi-crystalline polymers, the plastic deformation of which is determined by their two-phase structure. To describe the plastic behavior of semi-crystalline polymers, a two-phase model is used. In the framework of this model, one phase is in a hard (crystalline) state, and the other in a soft (amorphous) state. The two-phase material is modeled by a single-phase homogeneous continuum based on the approximation of the effective medium. It is assumed that two infinitely close material points of the continuum are connected in series by elastic and viscous bonds, which corresponds to the Maxwell model. It is shown that, in this case, the Maxwell continuum is a pseudo-Euclidean space. Generalizing the definition of defects from a three-dimensional space to a four-dimensional pseudo-Euclidean space, we obtained a dynamic system of nonlinear, interrelated equations to describe the behavior of translational-type defects in the solid phase and dynamic defects in the amorphous phase. As an example of an application for these equations, the phenomenon of creep under uniaxial loading is considered. It is shown that the formalism of the proposed two-phase model makes it possible to describe creep phenomenon regularities, which correspond to both the aging theory and the flow theory.
机译:本文提出了一种描述半结晶聚合物力学行为的新方法,该聚合物的塑性变形取决于它们的两相结构。为了描述半结晶聚合物的塑性行为,使用了两相模型。在此模型的框架中,一个相处于硬(结晶)状态,另一相处于软(非晶)状态。基于有效介质的近似,通过单相均质连续体对两相材料进行建模。假设连续体的两个无限接近的物质点通过弹性和粘性键串联连接,这对应于麦克斯韦模型。结果表明,在这种情况下,麦克斯韦连续体是伪欧几里德空间。将缺陷的定义从三维空间推广到四维拟欧几里德空间,我们获得了一个非线性的,相互关联的方程组的动态系统,用于描述固相中平移型缺陷和非晶态中动态缺陷的行为。相。作为这些方程的应用示例,考虑了单轴载荷下的蠕变现象。结果表明,所提出的两阶段模型的形式化使得描述蠕变现象的规律性成为可能,该规律既与时效理论又与流动理论相对应。

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