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Solidification behavior of high-density polyethylene (HDPE) during injection molding: Correlation between crystallization kinetics and thermal gradient field

机译:注塑成型期间高密度聚乙烯(HDPE)的凝固行为:结晶动力学与热梯度场之间的相关性

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This work mainly investigated the effect of thermal field on the crystallization kinetics of high-density polyethylene (HDPE) during injection molding (IM) process. The thickness X= 0.4 was found to be a crucial location heavily influenced by thermal conduction. The temperature decay tended to be stable, with limited variation of the crystallization rate when X > 0.4. It was observed that the crystallization rate was in good proportion to the cooling rate (Φ). Our experimental finding showed that the consequence of relative crystallinity (x) was in agreement with that of the secondary temperature difference (STD). This study is practically significant to the further investigation on the relationship among "processing-structure-property" of polymeric materials.
机译:这项工作主要研究了热场在注射成型(IM)工艺期间高密度聚乙烯(HDPE)结晶动力学的影响。发现厚度x = 0.4是热传导严重影响的至关重要的位置。温度衰减趋于稳定,当x> 0.4时,结晶速率的变化有限。观察到结晶速率与冷却速率(φ)成比例良好。我们的实验发现表明,相对结晶度(X)的后果与次级温差(STD)一致。该研究实际上是进一步调查聚合物材料“加工结构性质”之间关系的进一步调查。

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