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Comparative study of crystallization and lamellae orientation of isotactic polypropylene by rapid heat cycle molding and conventional injection molding

机译:快速热循环成型和常规注塑成型等规聚丙烯的结晶和片晶取向的比较研究

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The crystallization and orientation of isotactic polypropylene (iPP) molded by rapid heat cycle molding (RHCM) and conventional injection molding (CIM) were studied. Due to the varying cooling rates and shearing, the molded parts exhibited a multilayered structure (skin, shear and core) across the part thickness, reflecting different degrees of crystallization and lamellae orientation of iPP. The morphology evolution of RHCM products was discussed based on the comparative research of morphology and structure at multiple sites on the RHCM and CIM specimens. Scanning electron microscopy (SEM) and wide angle X-ray diffraction (WAXD) were used to analyze the thickness, crystallinity and lamellae orientation of these three distinct layers. The crystallization and lamellae orientation of iPP correlated strongly with the multilayered structure. In the RHCM process, one side of the mold is equipped with the rapid heat cycle function. The thickness and lamellae orientation next to the heated surface were less than that of the opposite skin layer without heating. Meanwhile, the crystallinity was greater than that of the opposite skin layer.
机译:研究了通过快速热循环成型(RHCM)和常规注塑成型(CIM)成型的等规聚丙烯(iPP)的结晶和取向。由于冷却速率和剪切力的变化,模制零件在零件厚度上呈现出多层结构(蒙皮,剪切和芯),反映了iPP的不同结晶度和薄片取向。在对RHCM和CIM标本多个部位的形态和结构进行比较研究的基础上,讨论了RHCM产品的形态演变。扫描电子显微镜(SEM)和广角X射线衍射(WAXD)用于分析这三个不同层的厚度,结晶度和薄片取向。 iPP的结晶和片晶取向与多层结构密切相关。在RHCM工艺中,模具的一侧具有快速热循环功能。靠近加热表面的厚度和薄片取向小于未加热的相对表层的厚度和薄片取向。同时,结晶度大于相对的表层的结晶度。

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