Mejia Edgar, Cherupurakal Nizamudeen, Mourad Abdel-Hamid I, Al Hassanieh Sultan, Rabia Mohamed
Mechanical Engineering Department, College of Engineering, United Arab Emirate University, Al Ain 15551, United Arab Emirates.
National Eater and Energy Center, United Arab Emirate University, Al Ain 15551, United Arab Emirates.
Polymers (Basel). 2021 Sep 29;13(19):3346. doi: 10.3390/polym13193346.
The versatility of high-density polyethylene (HDPE) makes it one of the most used polymers for vast applications ranging from food packaging to human implants. However, there still is confusion regarding the proper selection of processing techniques to produce HDPE specimens for high-end applications. Herein, we compare the processing of HDPE by two relevant techniques: compression and injection molding. The fabricated samples were studied using uniaxial tensile testing to determine their mechanical performance. Furthermore, the microstructure of samples was analyzed using different characterization techniques. Compression-molded specimens recorded a higher degree of crystallinity (DC) using two different characterization techniques such as differential scanning calorimetry (DSC) and X-ray diffraction (XRD). With this information, critical processing factors were determined, and a general structure-property relationship was established. It was demonstrated that having a higher DC resulted in higher yield strength and Young's modulus. Furthermore, premature failure was observed in the injection-molded specimens, resulting in lower mechanical performance. This premature failure was caused due to flow marks observed using scanning electron microscopy (SEM). Therefore, it is concluded that compression molding produces superior samples compared to injection molding.
高密度聚乙烯(HDPE)的多功能性使其成为应用最为广泛的聚合物之一,其应用范围涵盖从食品包装到人体植入物等众多领域。然而,对于为高端应用生产HDPE样品时如何正确选择加工技术,仍然存在困惑。在此,我们比较了通过两种相关技术加工HDPE的情况:压缩成型和注塑成型。使用单轴拉伸试验对制造的样品进行研究,以确定其机械性能。此外,使用不同的表征技术分析了样品的微观结构。通过差示扫描量热法(DSC)和X射线衍射(XRD)等两种不同的表征技术,压缩成型的样品记录到了更高的结晶度(DC)。基于这些信息,确定了关键的加工因素,并建立了一般的结构-性能关系。结果表明,较高的DC会导致更高的屈服强度和杨氏模量。此外,在注塑成型的样品中观察到过早失效,导致机械性能较低。这种过早失效是由扫描电子显微镜(SEM)观察到的流痕引起的。因此,得出的结论是,与注塑成型相比,压缩成型能生产出性能更优的样品。