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Manifestations of crystallization in the processing of high-performance thermoplastic composites.

机译:高性能热塑性复合材料加工中结晶的表现。

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摘要

The processing of semi-crystalline thermoplastic matrix composites is a complicated process that requires an in-depth understanding of the complete processing cycle, from heating and melt processing to solidification. Because the cooling step is when the microstructure develops in these materials, and microstructure highly influences the material's performance, the solidification process is of primary concern when designing end-use properties. Additionally, the stability of these materials, both during and after processing, is now a prime concern as far as utilizing these materials in demanding and often intolerant aerospace applications and has caused these materials to fall from grace. Previous studies have focused on many of the individual aspects of thermoplastic composite processing, yet none has focused on overall processing characterization and how semi-crystallinity plays a role. In this investigation, three model material systems were utilized, by first characterizing their crystallization kinetics and then applying these results when characterizing their processing and solidification behavior. Specifically, the three model material systems used were polyphenylene sulfide (PPS), polyetherketonketone (PEKK), and new-thermoplastic polyimide (new-TPI). They exhibited varied kinetic behavior with fast, "normal", and slow crystallization kinetics respectively, which was then applied to examining their contrasting processing behavior. Through this work, the irreversible behavior of thermoplastics, as manifested by a loss in crystallizability, was experienced and further probed. A broad based investigation was conducted to quantify and further understand this relatively unrecognized phenomenon by introducing the concept of "bulk-equivalency", by which the neat polymer material is not the same material once it is used as a matrix. Overall, this investigation brings together several issues in thermoplastics into a processing overview by continually focusing on the structure-processing relationship during and after processing and also opens avenues for further research into non-linear thermoplastic behavior.
机译:半结晶热塑性基体复合材料的加工是一个复杂的过程,需要深入了解从加热,熔融加工到固化的整个加工周期。由于冷却步骤是在这些材料中形成微结构的时候,并且微结构会极大地影响材料的性能,因此在设计最终用途特性时,固化过程是首要考虑的问题。此外,就在苛刻且通常不容忍的航空航天应用中使用这些材料而言,现在无论是在处理过程中还是在处理之后,这些材料的稳定性现在都是首要考虑的问题,并已使这些材料不受欢迎。先前的研究集中在热塑性复合材料加工的许多各个方面,但没有一个研究集中在整体加工特性以及半结晶度如何发挥作用上。在这项研究中,利用了三种模型材料系统,首先表征其结晶动力学,然后在表征其加工和凝固行为时应用这些结果。具体而言,使用的三种模型材料系统是聚苯硫醚(PPS),聚醚酮酮(PEKK)和新热塑性聚酰亚胺(new-TPI)。它们分别以快速的,“正常的”和缓慢的结晶动力学表现出变化的动力学行为,然后将其应用于检查它们的对比加工行为。通过这项工作,经历并进一步探究了热塑性塑料的不可逆行为,表现为结晶性的降低。通过引入“批量等效性”的概念,进行了广泛的研究,以量化和进一步理解这种相对较不为人知的现象,通过这种概念,纯净的聚合物材料一旦用作基质,就不再是同一材料。总的来说,这项研究通过不断关注加工过程中和加工后的结构与加工之间的关系,将热塑性塑料中的几个问题归纳为加工概述,也为进一步研究非线性热塑性塑料行为开辟了道路。

著录项

  • 作者

    Ferrara, James Anthony.;

  • 作者单位

    University of Washington.;

  • 授予单位 University of Washington.;
  • 学科 Chemical engineering.;Aerospace engineering.;Plastics.
  • 学位 Ph.D.
  • 年度 1994
  • 页码 330 p.
  • 总页数 330
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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