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Structure-property relationships in polyolefin blends and copolymers.

机译:聚烯烃共混物和共聚物的结构性质关系。

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摘要

Polymers have become the primary materials of mankind since the second half of last century. The annual global production of polymers increases with the increasing world demand, and it has reached to about 200 million metric tons recently. The overwhelming success of polymers is the result of their unique combination of properties, such as light weight, stable, economical, and easy to process. Polyolefins, mainly including polyethylene, polypropylene, and ethylene-α-olefin block and random copolymers, hold more than half of the polymer market due to their versatile applications e.g. packaging films, containers, bags, and molded parts etc. Thus understanding their structure-property relationships is essential for an efficient tailor of polyolefin products to meet specific needs.;Since polyolefins usually can partially crystallize and the crystallization behavior will directly influence the properties of polyolefins in the solid state, studies were carried out using in-situ synchrotron X-ray techniques combined with Linkam shear stage and Instron tensile machine, which were used to observe the structure changes of polyolefins under simulated processing conditions and to evaluate their mechanical performance, respectively. Formation of initial crystallization precursor structure, shish-kebab, and the kinetic and thermodynamic aspects of flow-induced and quiescent crystallization of polyolefins were investigated. This also has many practical implications to industrial polymer processing methods such as extrusion, injection molding and spinning, which involve external flow field. Meanwhile, mechanical properties, such as modulus, strength, elongation, and relaxation, of these polyolefins in the form of films and fibers, crosslinked and non-crosslinked, were obtained as well as the phase behavior and structure development during the uniaxial deformation according to the analysis of wide-angle and small-angle X-ray scattering data. The relationships between different mechanical properties and various structural parameters, for example, chain architecture, block distribution, comonomer content, crystal structure, morphology, and orientation, were revealed.
机译:自上世纪下半叶以来,聚合物已成为人类的主要原料。随着世界需求的增加,全球聚合物的年产量增加,最近已达到约2亿吨。聚合物的压倒性成功是其独特的性能组合的结果,例如重量轻,稳定,经济和易于加工。聚烯烃,主要包括聚乙烯,聚丙烯和乙烯-α-烯烃嵌段共聚物和无规共聚物,由于其用途广泛,例如聚合物,占据了聚合物市场的一半以上。因此,了解它们的结构-性质关系对于有效定制特定产品的聚烯烃产品至关重要。因为聚烯烃通常可以部分结晶,并且结晶行为将直接影响聚烯烃的性能。固态聚烯烃,使用原位同步加速器X射线技术与Linkam剪切台和Instron拉伸机相结合进行研究,用于观察聚烯烃在模拟加工条件下的结构变化并评估其机械性能,分别。研究了初始结晶前体结构,烤肉串的形成以及聚烯烃流动诱导和静态结晶的动力学和热力学方面。这对涉及外部流场的工业聚合物加工方法(例如挤出,注塑和纺丝)也具有许多实际意义。同时,获得了以膜和纤维形式交联和非交联的聚烯烃形式的机械性能,如模量,强度,伸长率和松弛率,以及单轴变形过程中的相行为和结构发展。广角和小角X射线散射数据的分析。揭示了不同机械性能与各种结构参数之间的关系,例如链结构,嵌段分布,共聚单体含量,晶体结构,形态和取向。

著录项

  • 作者

    Zuo, Feng.;

  • 作者单位

    State University of New York at Stony Brook.;

  • 授予单位 State University of New York at Stony Brook.;
  • 学科 Chemistry Polymer.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 272 p.
  • 总页数 272
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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