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Near-surface deformation in polypropylene blends.

机译:聚丙烯共混物中的近表面变形。

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摘要

Polypropylene blends with up to 20% rubber phase are known as thermoplastic polyolefin or TPO and have been widely used in the automotive industry in both painted and unpainted components. Poor scratch resistance and paint adhesion have been of great concern for TPO applications. The research described in this thesis has addressed both of these issues by studying the near-surface deformation under scratches in unpainted TPO, and the interfacial adhesion and deformation of painted TPO. A transmission electron microscopy approach has been developed to study the microstructure and microdeformation in this important class of engineering materials.; It was observed that highly oriented near-surface material in injection-molded TPO plastically deformed by forming periodic shear bands under scratches. The material inside the shear band dilated as revealed by the difference in the angles between the shear band boundary and the rubber particles inside and outside the shear bands. The extent of material dilation inside the shear bands decreased with the distance from the free surface and increased with normal applied load. At high applied normal loads (>400 g), a significant amount of voiding caused by the debonding between the rubber phase and the PP matrix was observed. Talc particles were found to preferentially wet the rubber phase and this may prevent debonding between talc particles and the PP matrix as observed in talc-filled pure PP. The anisotropy in scratching behavior correlates with the anisotropy in mechanical properties. The morphology of the scratching deformation was found to be particularly sensitive to the near-surface structural anisotropy.; A tensile cracking test was applied to quantitatively measure the interfacial adhesion between paint and TPO substrates. Interfacial structure between chlorinated polyolefin adhesion promoter and TPO substrate was studied by electron microscopy. The swelling of the rubber phase near the interface was observed, evidently arising from the interaction with the solvent in the paint and adhesion promoter. Diffusion of the rubber phase near the interface was also observed. Baking at high temperature enhanced both the swelling and interfacial diffusion of rubber phase. Paint adhesion was improved in TPO substrates with lower molecular weight PP homopolymer, which was ascribed to the enhanced interfacial diffusion.
机译:橡胶相含量高达20%的聚丙烯共混物被称为热塑性聚烯烃或TPO,在汽车工业中已广泛用于涂漆和未涂漆的部件中。差的耐刮擦性和涂料粘附性一直是TPO应用中非常关注的问题。本文研究的问题通过研究未涂漆的TPO划痕下的近表面变形以及涂漆的TPO的界面粘附和变形解决了这两个问题。已经开发出一种透射电子显微镜方法来研究这一重要工程材料类别的微观结构和微观变形。观察到,通过在刮擦下形成周期性剪切带,注塑成型的TPO中高度取向的近表面材料发生了塑性变形。剪切带内的材料膨胀,如剪切带边界与剪切带内外的橡胶颗粒之间的角度差异所揭示的。剪切带内部的材料膨胀程度随与自由表面的距离而减小,并随正常施加的载荷而增大。在较高的法向载荷(> 400 g)下,观察到大量的空隙是由橡胶相与PP基体之间的脱粘引起的。发现滑石颗粒优先润湿橡胶相,这可以防止滑石颗粒与PP基体之间的脱粘,如在填充滑石的纯PP中观察到的那样。刮擦行为的各向异性与机械性能的各向异性相关。发现刮擦变形的形态对近表面结构各向异性特别敏感。拉伸断裂试验用于定量测量涂料和TPO基材之间的界面粘合力。通过电子显微镜研究了氯化聚烯烃增粘剂与TPO底物之间的界面结构。观察到界面附近的橡胶相膨胀,这显然是由于与油漆中的溶剂和助粘剂的相互作用引起的。还观察到界面附近橡胶相的扩散。高温烘烤既增强了橡胶相的溶胀和界面扩散。在具有较低分子量PP均聚物的TPO基材中,涂料的附着力得到了改善,这归因于界面扩散的增强。

著录项

  • 作者

    Tang, Honxiang.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 158 p.
  • 总页数 158
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

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