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Coalescence modeling and experimental validation of sintering of thermoplastic polyamide fibers

机译:热塑性聚酰胺纤维烧结的聚结建模和实验验证

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摘要

In order to study the coalescence mechanisms of thermoplastic polymer powders, a 2D mathematical model has been established based on Frenkel, Eshelby and Pokluda’s model. Sintering experiments have been carried out by using two polyamide fibers that can be considered as infinite cylinders with its length much larger than the diameter. 2D mathematical model has been validated through comparison with results of sintering experiments as well as Constrained Natural Element Method (C-NEM) coalescence simulation. This consistence shows that the proposed coalescence model and experimental results can provide a reference for the numerical simulation of sintering process.
机译:为了研究热塑性聚合物粉末的聚结机理,已基于Frenkel,Eshelby和Pokluda模型建立了二维数学模型。已经通过使用两种聚酰胺纤维进行了烧结实验,该两种聚酰胺纤维的长度远大于直径,可以看作是无限圆柱体。通过与烧结实验的结果以及约束自然元法(C-NEM)合并模拟的比较,已验证了二维数学模型。这种一致性表明,所提出的聚结模型和实验结果可为烧结过程的数值模拟提供参考。

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