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Calculation of the Drying Process of Hygroscopic Polymer Pellets in Desiccant Dryers and With Additional Microwave Application

机译:洗脱剂干燥器中吸湿聚合物颗粒的干燥过程及附加微波施用

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Hygroscopic polymers absorb water and bind it within; therefore an effective drying down to an acceptable moisture level is essential for a successful production. If not dried properly, the residual moisture can cause major problems for converting and also significantly affect the product quality. Usually, data sheets give standard recommendations for drying temperatures and times; however, these do neither take into account the actual current moisture up-take of the plastic pellets, nor the current conditions. In this work, a simulation model is presented, calculating the heat and mass transfer within the polymer pellet in order to predict the drying progression. In addition to approaches from the literature describing the diffusion coefficient of water in plastic with a complex function and a high number of material parameters, a linear function was used to model the dependence of diffusion from moisture and temperature. Moreover, the effect of microwave application for an accelerated drying was included by calculating the resulting temperature rise from dielectric heating. The simulation of the drying process shows a very good conformity with experimental results. The linear approach used in this work leads to good results and allows to reduce the complexity of the whole model compared to approaches from the literature. The calculation of a temperature rise through dielectric heating also shows satisfying agreement with that measured in the real process from a prototype for microwave drying on an industrial scale. Therefore, the model is a reliable tool to predict required drying times for different polymers and under variation of drying conditions.
机译:吸湿聚合物吸收水并将其粘合;因此,有效地烘干到可接受的水分水平对于成功的生产至关重要。如果不正常干燥,残留的水分会导致转换的主要问题,并显着影响产品质量。通常,数据表提供干燥温度和时间的标准建议;然而,这些既不考虑塑料颗粒的实际电流湿度,也不考虑到当前条件。在这项工作中,提出了一种模拟模型,计算聚合物颗粒内的热量和传质以预测干燥进展。除了从描述塑料中的水的扩散系数的文献的方法之外,用络合物的功能和大量的材料参数,使用线性函数来模拟扩散的依赖性和温度。此外,通过计算从介电加热的温度升高,包括微波施加对加速干燥的影响。干燥过程的模拟显示了与实验结果非常好的符合性。与文献中的方法相比,该工作中使用的线性方法导致良好的结果,并允许降低整个模型的复杂性。通过介电加热的温度升高的计算也显示了与在工业规模上的微波干燥的原型中的真实过程中测量的令人满意的协议。因此,该模型是可靠的工具,用于预测不同聚合物的所需干燥时间,并在干燥条件的变化下。

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