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A THEORETICAL AND EXPERIMENTAL STUDY OF CRYSTALLINE/COMPATIBLE POLYMER BLENDS.

机译:结晶/相容性聚合物共混物的理论和实验研究。

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摘要

The crystallinity and melting of compatible poly((epsilon)-caprolactone)/poly(styrene-co-acrylonitrile) (PCL/SAN) blends were monitored for samples prepared from both the melt and solution. The development of PCL crystallinity was observed to be dependent on both the blend composition and preparation technique. The glass transition temperature was observed to be a primary cause of the compositional dependence of crystallinity. Solution-casting was found to be a technique capable of increasing crystallinity levels for some compositions. The melting behavior of the blends was rather complex. Solution-cast samples exhibited a single endotherm which decreased in temperature with increasing SAN concentration. Both thermodynamic and morphological effects are cited as possible causes of this behavior. Melt-crystallized samples exhibited dual melting endotherms whose magnitudes vary with blend composition. The melting point of the lower temperature endotherm increased with increasing SAN concentration. A mechanism based on melting, recrystallization, and subsequent remelting was invoked to explain the behavior of the melt-blended specimens.;The determination of polymer/polymer interaction parameters ((chi)) from melting point data is critically reviewed with emphasis on two major areas. The first concerns variations of morphology with blend composition which can restrict attempts to calculate (chi) if non-equilibrium melting points are used. An equation is presented which relates the experimentally observed melting point depression upon blending to the thermodynamic melting point depression and a morphological term which accounts for changes in lamellar thickness. Other morphological factors such as crystalline perfection and size are discussed. The second area of interest involves processes such as lamellar thickening during thermal analysis which can seriously impair determination of "true" crystalline melting points. Finally, methods for directly determining blend equilibrium melting points are discussed.;The spherulitic superstructure and mechanical properties of SAN/PCL blends were also monitored for samples prepared from both the melt and solution. The mechanical response was related to the blend glass transition temperature and the level of crystallinity. The PCL crystalline superstructure was observed to decrease in size and become more irregular upon the addition of SAN for both sample preparation schemes.
机译:监测相容性聚(ε-己内酯)/聚(苯乙烯-丙烯腈)(PCL / SAN)共混物的结晶度和熔融度,以了解由熔融和溶液制备的样品。观察到PCL结晶度的发展取决于共混物的组成和制备技术。观察到玻璃化转变温度是结晶度的组成依赖性的主要原因。发现溶液浇铸是能够增加某些组合物的结晶度水平的技术。共混物的熔融行为相当复杂。溶液浇铸样品表现出单吸热,随着SAN浓度的增加,其温度降低。热力学和形态学效应均被认为是此行为的可能原因。熔融结晶的样品表现出双重熔融吸热,其幅度随掺合物的组成而变化。低温吸热的熔点随SAN浓度的增加而增加。调用了一种基于熔融,重结晶和随后重熔的机制来解释熔融共混样品的行为。;从熔点数据确定聚合物/聚合物相互作用参数((chi))的方法受到严格审查,重点是两个主要方面地区。第一个涉及混合物组成的形态变化,如果使用非平衡熔点,则可能会限制尝试计算(chi)。提出了一个方程,该方程将混合时实验观察到的熔点降低与热力学熔点降低和说明层状厚度变化的形态学术语相关联。讨论了其他形态因素,例如晶体的完美度和大小。第二个关注领域涉及热分析过程中的层状增稠等过程,这些过程可能会严重损害“真实”晶体熔点的确定。最后,讨论了直接确定共混物平衡熔点的方法。;还监测了SAN / PCL共混物的球状超微结构和力学性能,以检测由熔体和溶液制备的样品。机械响应与共混玻璃的转变温度和结晶度有关。在两种样品制备方案中,添加SAN后,观察到PCL晶体的上部结构尺寸减小,并且变得更加不规则。

著录项

  • 作者

    RIM, PETER BRYAN.;

  • 作者单位

    The Pennsylvania State University.;

  • 授予单位 The Pennsylvania State University.;
  • 学科 Materials science.
  • 学位 Ph.D.
  • 年度 1983
  • 页码 116 p.
  • 总页数 116
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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