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Isothermal and non-isothermal crystallization kinetics of polyamide 12 used in laser sintering

机译:激光烧结中聚酰胺12的等温和非等温结晶动力学

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Laser sintering of polymers is a steadily improving additive manufacturing method. Mainly used materials are semicrystalline thermoplastics, and as part of those, polyamide 12 has established most. When semicrystalline polymers cool down from the melt, they exhibit volume shrinkage due to crystallization. This crystallization occurs non-uniformly within the produced parts and thus is responsible for part warpage. Aim of this study was to investigate the crystallization kinetics of an, in laser sintering widely used, polyamide 12-based polymer available by supplier EOS with appellation PA2200. For that purpose, several isothermal and non-isothermal DSC measurements were taken. The isothermal measurements were analyzed according to the theory of Avrami. Furthermore, the parameters of the crystallization model by Nakamura were calibrated, and both conditions were simulated. It was found that the isothermal data are very well describable by the theory of Avrami as well as the model by Nakamura can be used to model both conditions.
机译:聚合物的激光烧结是稳定改进的增材制造方法。主要使用的材料是半结晶热塑性塑料,作为这些材料的一部分,聚酰胺12已成为大多数。当半结晶聚合物从熔体中冷却下来时,由于结晶,它们会显示出体积收缩。该结晶在生产的零件内不均匀地发生,因此导致零件翘曲。这项研究的目的是研究由供应商EOS提供的名称为PA2200的聚酰胺12基聚合物在广泛使用的激光烧结中的结晶动力学。为此,进行了几次等温和非等温DSC测量。根据Avrami理论分析等温测量。此外,对中村制结晶模型的参数进行了校准,并模拟了这两个条件。已经发现,Avrami理论可以很好地描述等温数据,并且可以使用Nakamura的模型对这两个条件进行建模。

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