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Microstructural studies of interfacial deformation in painted thermoplastic polyolefins (TPOs)

机译:涂漆的热塑性聚烯烃(TPO)界面变形的微观结构研究

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The interfacial structure and deformation between chlorinated polyolefin (CPO) adhesion promoter and automotive TPO substrates have been characterized with optical, scanning electron, and transmission electron microscopy techniques. The diffusion of rubber phase into the CPO layer was observed and an interphase thickness around 200 nm was obtained from TEM imaging. In some cases, a coherent failure of the adhesion promoter during the paint delamination was observed, which could be explained by the strong interphase formed due to the interfacial diffusion. It was found that baking at 120degreesC could significantly enhance the swelling of the rubber phase underneath the polypropylene-rich skin layer and the diffusion of the rubber phase into this layer. With decreasing molecular weight of PP homopolymer, the apparent interfacial strength measured by tensile cracking test increased, which was ascribed to the enhanced interfacial diffusion at low molecular weight. The deformation of materials near the interface during the paint delamination process was found to be more extensive in samples with higher interfacial adhesion. (C) 2002 Kluwer Academic Publishers. [References: 17]
机译:氯化聚烯烃(CPO)增粘剂与汽车TPO基材之间的界面结构和变形已通过光学,扫描电子和透射电子显微镜技术进行了表征。观察到橡胶相扩散到CPO层中,并且通过TEM成像获得约200nm的相间厚度。在某些情况下,观察到油漆分层过程中助粘剂的连贯破坏,这可以用由于界面扩散而形成的强界面相来解释。发现在120℃下烘烤可以显着增强在富含聚丙烯的表层下面的橡胶相的溶胀和橡胶相向该层的扩散。随着PP均聚物分子量的降低,通过拉伸裂化试验测得的表观界面强度增加,这归因于低分子量下界面扩散的增强。发现在具有较高界面粘附力的样品中,在油漆分层过程中,界面附近材料的变形更为广泛。 (C)2002 Kluwer学术出版社。 [参考:17]

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