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Post-Processing Time Dependence of Shrinkage and Mechanical Properties of Injection-Molded Polypropylene

机译:注塑聚丙烯收缩和力学性能的后处理时间依赖性

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摘要

Dimensions of the injection-molded semi-crystalline materials (polymeric products) decrease with the time that elapses from their formation. The post-molding shrinkage is an effect of secondary crystallization; the increase in the degree of polymer crystallinity leads to an increase in stiffness and decrease in impact strength of the polymer material. The aim of this study was to assess the changes in the values of post-molding shrinkage of polypropylene produced by injection molding at two different temperatures of the mold (20 °C and 80 °C), and conditioned for 504 h at 23 °C. Subsequently, the samples were annealed for 24 h at 140 °C in order to conduct their accelerated aging. The results of shrinkage tests were related to the changes of mechanical properties that accompany the secondary crystallization. The degree of crystallinity of the conditioned samples was determined by means of density measurements and differential scanning calorimetry. It was found that the changes in the length of the moldings that took place after removal from the injection mold were accompanied by an increase of 20% in the modulus of elasticity, regardless of the conditions under which the samples were made. The differences in the shrinkage and mechanical properties of the samples resulting from mold temperature, as determined by tensile test, were removed by annealing. However, the samples made at two different injection mold temperature values still significantly differed in impact strength, the values of which were clearly higher for the annealed samples compared to the results determined for the samples immediately after the injection molding.
机译:注塑模塑半晶材料(聚合物产品)的尺寸随着它们的形成而减少。模制收缩率是二次结晶的效果;聚合物结晶度的增加导致刚度的增加和聚合物材料的冲击强度的降低。本研究的目的是评估通过注射成型在模具(20℃和80℃)的两个不同温度下注射成型产生的聚丙烯的模制收缩值的变化,并在23°C下调节504小时。随后,将样品在140℃下退火24小时,以进行加速的老化。收缩试验的结果与伴随二次结晶的机械性能的变化有关。通过密度测量和差示扫描量热法测定条件样品的结晶度。结果发现,在从注射模具中除去后发生的模塑的长度的变化伴随着弹性模量增加了20%,而不管制定样品的条件如何。通过退火除去由模塑温度产生的样品的收缩和力学性能的差异,通过退火除去。然而,在两个不同的注射模具温度值下制作的样品在冲击强度仍然显着不同,与在注射成型后立即测定的样品的结果相比,退火样品的值显着更高。

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