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Prediction of Fiber Die Coating Thickness

机译:纤维模具涂层厚度的预测

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摘要

Fiber coating is an effective way to impart smartness to a fiber. Die coating is a process that utilizes a die to control the thickness and concentricity of the coating layer. In the present work the die coating mechanism is studied numerically. A mathematical model for the fiber coating thickness has been developed. Compared with the previous work, the proposed model considers the effect of gravity force to get the general solution. The shear rate acting on the fiber surface is proportional to the fiber draw speed in an unpressurized applicator and can be minimized in a pressurized applicator through the applied external pressure. A serials of experiments using open-cup and pressurized applicators have been designed and conducted to measure simultaneously the coating speed and coating thickness in the coating process. It was found that the gravity may be an important driving force for the coating flow when the drawing velocity is small and the viscous force decreases, but may be relatively insignificant for high speed coating process. The calculated results were compared with the experimental data and a good agreement was obtained.
机译:纤维涂层是赋予纤维聪明感的有效方法。模涂是利用模头来控制涂层的厚度和同心度的过程。在目前的工作中,对模具涂覆机理进行了数值研究。已经开发出纤维涂层厚度的数学模型。与以前的工作相比,所提出的模型考虑了重力的作用以获得一般解。作用在纤维表面上的剪切速率与未加压涂布器中的纤维拉伸速度成正比,并且可以在加压涂布器中通过施加的外部压力最小化。设计并进行了一系列使用敞口和加压施涂器的实验,以同时测量涂覆过程中的涂覆速度和厚度。已经发现,当拉伸速度小且粘性力降低时,重力可能是涂料流动的重要驱动力,但对于高速涂料过程而言,重力可能相对较小。将计算结果与实验数据进行比较,取得了很好的一致性。

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