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Interfacial Crystalline Structures in Injection Over-Molded Polypropylene and Bond Strength

机译:注射成型聚丙烯的界面晶体结构和结合强度

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This paper describes interfacial crystalline structures found in injection overmolded polypropylene components and the relationship of these structures to bond strength between the components. The combined effects of the development of hierarchical gradient structures and the particular thermomechanical environment near the interface on the interfacial crystalline structures were investigated in detail by PLM, SEM. DSC, WAXD. and infrared dichroism spectroscopy. The experimental results showed that during molding there was competitive formation of interfacial crystalline structures consisted of "shish-kebab" layer (SKL) and a transcrystalline layers (TCL). Variation in shear stress (controlled by injection pressure and injection speed) plays an important role in the formation of the SKL. The formation of TCL is influenced by the thermal environment, namely melt temperature and mold temperature. Increasing within certain limits, interfacial temperature and the thermal gradient near the interface promotes β-iPP growth. The relationship between interfacial crystalline structures and interfacial bond strength was established by lap shear measurement. The interfacial bond strength is improved by enhancing the formation of TCL, but reduced if SKL predominates.
机译:本文介绍了注塑包覆成型聚丙烯组件中发现的界面晶体结构,以及这些结构与组件之间的粘结强度之间的关系。通过PLM,SEM详细研究了分层梯度结构的发展以及界面附近特殊的热机械环境对界面晶体结构的综合影响。 DSC,WAXD。和红外二色光谱。实验结果表明,在成型过程中,竞争性形成了由“烤肉串”层(SKL)和跨晶层(TCL)组成的界面晶体结构。剪切应力的变化(受注射压力和注射速度控制)在SKL的形成中起重要作用。 TCL的形成受热环境(即熔融温度和模具温度)的影响。在一定范围内增加界面温度和界面附近的热梯度会促进β-iPP的生长。通过搭接剪切测量建立了界面晶体结构和界面结合强度之间的关系。通过增强TCL的形成可以提高界面结合强度,但如果以SKL为主,则可以降低界面结合强度。

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