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Microstructure and prediction of stress-strain behaviour of cold-rolled PP sheets

机译:PP冷轧薄板的组织和应力应变行为预测

摘要

A constitutive equation for cold-rolled polypropylene is presented based on a modified two-phase model for semicrystalline polymer, which combines the crystalline network that obeys the Langevin based theory and the entangled network with slip-linked character. The microstructure of the rolled semicrystalline polymer consists of packed crystalline inclusions which are separated by adjacent amorphous regions. A theoretical description of the stress strain behavior is obtained by the sum of the stress effects from crystalline and entangled networks. The microstructural observations by scanning electron microscopy, X-ray pole figures and differential scanning calorimetry show that polymer chains are aligned along the rolling direction. The stress-strain equation can be obtained from the modified two-phase model and verified by experimental results.
机译:基于修改后的半结晶聚合物两相模型,提出了冷轧聚丙烯的本构方程,该模型将遵循朗格文理论的结晶网络与具有滑移连接特性的纠缠网络结合在一起。轧制的半结晶聚合物的微观结构由堆积的晶体夹杂物组成,它们被相邻的非晶区隔开。应力应变行为的理论描述是通过晶体网络和纠缠网络的应力效应之和得出的。通过扫描电子显微镜,X射线极图和差示扫描量热法的显微结构观察表明,聚合物链沿轧制方向排列。可以从修改后的两相模型获得应力-应变方程,并通过实验结果进行验证。

著录项

  • 作者

    Wu SZ; Lee WB;

  • 作者单位
  • 年度 2001
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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