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首页> 外文期刊>Journal of Applied Polymer Science >The Enhancement of the Mechanical Properties of a High-Density Polyethylene
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The Enhancement of the Mechanical Properties of a High-Density Polyethylene

机译:高密度聚乙烯的机械性能的增强

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This paper describes the process optimizasiton in injection molding of high-density polyethylene (HDPE). Both conventional injection molding and shear controlled orientation (SCORIM) were employed in processing. The process optimization was based on design of experiments and complemented with analysis of variance. Mechanical characterization was carried out by tensile testing. Wide-angle X-ray diffraction and differnetial scanning calorimetry were used for the structural characterization of the moldings. High-density polyethylene exhibits 7.2 GPa Young's modulus and 155 MPa of ultimate tensile strength following the application of SCORIM processing. These results account for a fourfold increase in Young's modulus and a fivefold increase in ultimate tensile strength compared to conventional injection molding. The maintenance of toughness while enhancing stiffness and strength of the SCORIM moldings is attributable to an oriented morphologyl developed during shear flow, i.e., shish-kebab structure. The frequency of shearing action has the strongest influence on the morphology development. It is also demonstrated that the studied parameters are very much interdependent. It is possible to achieve substantial gains in mechanical properties o fHDPE in SCORIM processing without causing a substantial increase in cycle time.
机译:本文介绍了高密度聚乙烯(HDPE)注射成型中的工艺优化。在加工中同时采用了传统的注塑成型和剪切控制取向(SCORIM)。流程优化基于实验设计,并辅以方差分析。通过拉伸测试进行机械表征。广角X射线衍射和差示扫描量热法用于模制品的结构表征。使用SCORIM工艺后,高密度聚乙烯表现出7.2 GPa的杨氏模量和155 MPa的极限抗拉强度。与传统的注射成型相比,这些结果导致杨氏模量增加了四倍,极限抗拉强度增加了五倍。维持韧性同时增强SCORIM成型品的刚度和强度的原因在于剪切流动过程中形成的定向形态,即烤肉串结构。剪切作用的频率对形态发展影响最大。还证明了所研究的参数是非常相互依赖的。可以在SCORIM处理中获得fHDPE的机械性能的大幅提高,而不会导致循环时间的大幅增加。

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