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Local process-dependent structural and mechanical properties of extrusion blow molded high-density polyethylene hollow parts

机译:挤出吹塑高密度聚乙烯中空部件的局部过程依赖性结构和机械性能

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摘要

Although applied for several decades, production of hollow plastic parts by extrusion blow molding (EBM) is still over-dimensioned. To overcome this issue, a thorough investigation of the process-structure-property relationship is required. In this study, the local process-structure-property relationship for high-density polyethylene EBM containers is analyzed with differential scanning calorimetry and dynamic mechanic analysis microindentation. Local process-dependent crystallinity and complex modulus data at various processing conditions are supplemented with wide-angle X-ray diffraction and transmission electron microscopy (TEM). The crystallinities and the complex moduli clearly show lower values close to the mold side than at the inner side and the middle of the cross-section, which reflects the temperature gradient during processing. Additionally, the orientation of the polymer chain (c-axis) reveals a low level of biaxiality with a slight tendency towards transverse direction. The biaxiality increases for low mold temperature and high draw ratio. Finally, biaxiality is confirmed with TEM, which reveals no preferred lamellar orientation.
机译:虽然施加了几十年,但通过挤出吹塑(EBM)生产中空塑料部件的生产仍仍然过度尺寸。为了克服这个问题,需要对过程结构性质关系进行彻底调查。在该研究中,利用差示扫描量热法和动态机械分析微观化分析了高密度聚乙烯EBM容器的局部过程结构性质关系。各种加工条件下的局部过程依赖性结晶度和复数模量数据补充有广角X射线衍射和透射电子显微镜(TEM)。结晶和复合模子清楚地显示靠近模具侧的较低值,而不是在横截面的内侧和中间,这反映了加工过程中的温度梯度。另外,聚合物链(C轴)的取向揭示了低水平的双轴性,朝向横向略有趋势。低模具温度和高拉伸比的双轴性增加。最后,用TEM确认双轴性,透露不透露优选的层状取向。

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