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Effects of annealing on the hierarchical crystalline structures and mechanical properties of injection-molded bars of high-density polyethylene

机译:退火对高密度聚乙烯注射成型棒材分层晶体结构和力学性能的影响

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摘要

The effect of annealing on the microstructural evolution and mechanical properties of high-density polyethylene parts molded via gas-assisted injection molding was investigated using scanning electron microscopy, differential scanning calorimetry, two-dimensional wide-angle X-ray diffraction and tensile testing. The results indicated that a variety of annealing temperatures could induce considerable variations in the hierarchical structures, crystallinity, lamellar thickness and yield stress of the molded bars. According to these results, the annealing temperatures could be divided into three regions. In the low-temperature region of annealing at 80 °C, the spatial variation of the superstructure developed along the thickness direction and mechanical properties of the annealed sample were mainly unchanged and similar to those of the original specimen. At 100 and 120 °C, the intermediate temperature region of annealing, the thickness of the crystals, degree of orientation and yield stress of annealed samples were greatly improved. Finally, at 127 °C, the degree of orientation decreased and yield stress slightly improved, an indication of the high-temperature annealing region being characterized by increasing melting/recrystallization and causing relaxation of oriented molecular chains. A model is proposed to interpret the mechanism of the annealing treatment of the samples at various temperatures.
机译:利用扫描电子显微镜,差示扫描量热法,二维广角X射线衍射和拉伸试验研究了退火对通过气体辅助注射成型法成型的高密度聚乙烯零件的组织演变和力学性能的影响。结果表明,各种退火温度都可能引起模压棒的层级结构,结晶度,层状厚度和屈服应力的显着变化。根据这些结果,退火温度可以分为三个区域。在80°C的低温退火区域,上部结构沿厚度方向的空间变化和退火样品的力学性能基本保持不变,与原始样品相似。在100和120°C下,退火的中间温度区域,晶体厚度,取向度和退火样品的屈服应力都得到了极大的改善。最后,在127°C下,取向度降低,屈服应力稍有改善,这表明高温退火区的特征是熔融/再结晶增加,并导致取向分子链松弛。提出了一个模型来解释在不同温度下样品的退火处理机理。

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