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Non-Isothermal Crystallisation Kinetics of Polypropylene at High Cooling Rates and Comparison to the Continuous Two-Domain pvT Model

机译:聚丙烯的非等温结晶动力学在高冷却速率下与连续的双结构域PVT模型进行比较

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摘要

The modelling of the correlation between pressure, specific volume and temperature (pvT) of polymers is highly important for applications in the polymer processing of semi-crystalline thermoplastics, especially in injection moulding. In injection moulding, the polymer experiences a wide range of cooling rates, for example, 60 °C/min near the centre of the part and up to 3000 °C/min near the mould walls. The cooling rate has a high influence on the pvT behaviour, as was shown in the continuous two-domain pvT model (CTD). This work examined the Hoffman–Lauritzen nucleation and growth theory used in the modified Hammami model for extremely high cooling rates (up to 300,000 °C/min) by means of Flash differential scanning calorimeter (DSC) measurements. The results were compared to those of the empirical continuous two-domain pvT model. It is shown that the Hammami model is not suitable to predict the crystallisation kinetics of polypropylene at cooling rates above 600 °C/min, but that the continuous two-domain pvT model is well able to predict crystallisation temperatures at high cooling rates.
机译:聚合物的压力,特异性体积和温度(PVT)之间的相关性的建模对于半结晶热塑性塑料的聚合物加工中的应用非常重要,尤其是注塑成型。在注塑成型中,聚合物经历了宽范围的冷却速率,例如,在零件的中心附近60°C / min,靠近模具壁附近高达3000°C / min。冷却速率对PVT行为影响很高,如连续的两域PVT模型(CTD)所示。这项工作检测了通过闪光差示扫描量热计(DSC)测量的极高的冷却速率(高达300,000°C / min)的改良哈米马文模型中使用的Hoffman-Lauritzen成核和生长理论。将结果与实证连续两域PVT模型进行比较。结果表明,哈马马文模型不适合于预测600℃/ min的冷却速率下聚丙烯的结晶动力学,但是连续的两结构域PVT模型能够以高冷却速率预测结晶温度。

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