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Optimization of equipment and process conditions for film winding

机译:薄膜卷绕设备和工艺条件的优化

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Mathematical modeling of film winding has progressed to a point where it can offer much insight into the mechanics of this process. However, experience and testing on the actual hardware are still necessary to maximize yields. The puropse of this work is to describe the practice of using both modeling and testing in consort to optimize winding. Modeling is the first step. For the best results, this is done before the winding hardware is fabricated. The use of models for roll stresses, air entrainment, buckling, air leakage and roll aging are discussed. Films are divided into categories based on the predominant defect type. Winding hardware and film surface design requirements are discussed for each of these film groups. An example of this approach is included that describes the process from the concept to on-line testing phases to optimize the process conditions.
机译:薄膜缠绕的数学建模已经发展到可以为这一过程的机理提供更多见识的程度。但是,仍然需要在实际硬件上进行经验和测试以最大化产量。这项工作的目的是描述结合使用建模和测试来优化绕组的实践。建模是第一步。为了获得最佳结果,这是在制造绕组硬件之前完成的。讨论了轧辊应力,空气夹带,屈曲,漏气和轧辊老化模型的使用。胶片根据主要缺陷类型分为几类。讨论了每个薄膜组的卷绕硬件和薄膜表面设计要求。包括此方法的示例,该示例描述了从概念到在线测试阶段的过程,以优化过程条件。

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