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Numerical analysis of slot die coating of nanocellulosic materials

机译:纳米纤维素材料槽模涂层的数值分析

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Nanocellulosic coatings as a food packaging material are of commercial interest due to their nontoxic nature,renewahility,and excellent barrier properties.Complex shear-thinning rheology poses challenges in designing and sizing equipment to pump,mix,and process the suspension and actual coating process.This study aims to determine the effectiveness of computational fluid dynamics(CFD)in predicting nanocellulosic suspension flow in light of existing rheological data.We employ and compare three distinct rheological models to characterize the rheology and flow of nanocellulose suspensions through a slot die coater,where the model parameters are established from existing slot rheometry measurements.A volume-of-fluid(VoF)based finite volume method is employed to simulate the flow in a slot die operated in an unconventional metering mode.Results with the Casson model predict the presence of unyielded regions in the flow,which was not captured using the power law model.These stagnation regions will incur coatability issues stemming from flow intermittencies and lead to potential defects in the coating layer,including fracture.The results suggest that a rheological model that includes yield stress should he considered while modeling such flows.A need for better rheological data to model nanocellulosic flows,especially at high consistencies and shear rates,is also highlighted.Application: This work identifies and clarifies the challenges to be addressed when considering industrial scale nanocellulose coating of paperboard.
机译:纳米纤维素涂料作为一种食品包装材料,由于其无毒性、可再生性和优异的阻隔性能而具有商业价值。复杂的剪切变稀流变学对泵送、混合和处理悬浮液和实际涂层工艺的设备设计和上浆提出了挑战。本研究旨在根据现有流变学数据确定计算流体动力学(CFD)在预测纳米纤维素悬浮液流动方面的有效性。我们采用并比较了三种不同的流变模型来描述纳米纤维素悬浮液通过槽模涂布机的流变和流动,模型参数是根据现有的槽流变仪测量值确定的。采用基于流体体积(VoF)的有限体积法模拟了非常规计量模式下槽模内的流动。卡森模型的结果预测了流动中未屈服区域的存在,而幂律模型没有捕捉到这些区域。这些停滞区域将引发由流动间歇引起的涂层稳定性问题,并导致涂层中的潜在缺陷,包括断裂。结果表明,在模拟此类流动时,应考虑包含屈服应力的流变模型。还强调需要更好的流变数据来模拟纳米纤维素流动,尤其是在高稠度和剪切速率下。应用:这项工作确定并澄清了在考虑纸板工业规模纳米纤维素涂层时需要解决的挑战。

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