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Numerical investigation of the thermally and flow induced crystallization behavior of semi-crystalline polymers by using finite element-finite difference method

机译:用有限元-有限差分法数值模拟半结晶聚合物的热和流致结晶行为

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摘要

The thermally and flow induced crystallization behavior of semi-crystalline polymer in processing can significantly influence the quality of final products. The investigation of its mechanism has both scientific and industrial interest. A mathematical model in three dimensions for thermally and flow induced crystallization of polymer melts obeying differential Phan-Thien and Tanner (PTT) constitutive model has been developed and solved by using the finite element-finite difference method. A penalty method is introduced to solve the nonlinear governing equations with a decoupled algorithm. The corresponding finite element-finite difference model is derived by using the discrete elastic viscous split stress algorithm incorporating the streamline upwind scheme. A modified Schneider's approach is employed to discriminate the relative roles of the thermal state and the flow state on the crystallization phenomenon. The thermally and flow induced crystallization characteristics of polypropylene is investigated based on the proposed mathematical model and numerical scheme. The half crystallization time of polypropylene in a cooled couette flow configuration obtained by simulation are compared with Koscher's experimental results, which show that they agree well with each other. Two reasons to cause crystallization of polypropylene in pipe extrusion process including the thermal state and the flow state are investigated. Both the crystalline distribution and crystalline size of polypropylene are obtained by using the finite element-finite difference simulation of three-dimensional thermally and flow induced crystallization. The effects of processing conditions including the volume flow rate and the temperature boundary on the crystallization kinetics process are further discussed.
机译:半结晶聚合物在加工过程中由热和流动引起的结晶行为会显着影响最终产品的质量。其机理的研究具有科学和工业意义。利用有限元-有限差分法,建立并求解了三维数学模型,该模型针对聚合物熔体的热和流动诱导结晶,遵循Phan-Thien和Tanner微分本构模型。提出了一种惩罚算法,采用解耦算法求解非线性控制方程。通过使用结合流线迎风方案的离散弹性粘滞分裂应力算法推导相应的有限元-有限差分模型。采用改进的施耐德方法来区分热状态和流动状态对结晶现象的相对作用。基于所提出的数学模型和数值方案,研究了聚丙烯的热和流动诱导结晶特性。通过模拟获得的冷却的库埃特流动形态中的聚丙烯的半结晶时间与Koscher的实验结果进行了比较,结果表明它们彼此吻合。研究了导致管材挤出过程中聚丙烯结晶的两个原因,包括热态和流动态。聚丙烯的晶体分布和晶体尺寸都通过使用三维热和流动诱导结晶的有限元-有限差分模拟获得。进一步讨论了包括体积流量和温度边界在内的工艺条件对结晶动力学过程的影响。

著录项

  • 来源
    《Computers & Chemical Engineering》 |2012年第15期|p.190-204|共15页
  • 作者单位

    Key Laboratory for Liquid-Solid Structural Evolution and Processing of Materials (Ministry of Education). Shandong University, Jinan, Shandong 250061, PR China,Engineering Research Center for Mould & Die Technologies, Shandong University, Jinan, Shandong 250061, PR China,Key Laboratory of Materials Processing and Die & Mould Technology, Huazhong University of Science and Technology, Wuhan, Hubei 430074, PR China;

    Key Laboratory for Liquid-Solid Structural Evolution and Processing of Materials (Ministry of Education). Shandong University, Jinan, Shandong 250061, PR China,Engineering Research Center for Mould & Die Technologies, Shandong University, Jinan, Shandong 250061, PR China;

    Engineering Research Center for Mould & Die Technologies, Shandong University, Jinan, Shandong 250061, PR China;

    Key Laboratory for Liquid-Solid Structural Evolution and Processing of Materials (Ministry of Education). Shandong University, Jinan, Shandong 250061, PR China,Engineering Research Center for Mould & Die Technologies, Shandong University, Jinan, Shandong 250061, PR China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    semi-crystalline polymers; thermally induced; flow induced; crystallization; viscoelastic; finite element-finite difference simulation;

    机译:半结晶聚合物;热感应的流致结晶;粘弹性有限元-有限差分模拟;

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