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Polymer Melt Rheology and Flow Simulations Applied to Cast Film Extrusion Die Design: An Industrial Perspective

机译:适用于铸膜挤出模具设计的聚合物熔体流变流程和流动模拟:工业观点

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This article is an overview of the techniques used today in the area of rheology and flow simulation, on the industrial level, for cast film extrusion die design. This industry has made significant progress over the past three decades and die and feedblock design and optimization certainly have been instrumental in the overall improvement. Dies and coextrusion feedblocks are a critical aspect of the process due to the layering and forming function, which drive the final product economics and properties. Polymer melt rheology is a key aspect to consider when optimizing the flow patterns in the extrusion equipment. Not only is rheology critical for the flow channel design when aiming at obtaining a uniform flow distribution at the die exit, but also it is playing a major role in the thermal aspect of the flow due to the strong mechanical and thermal coupling. This coupling comes, on one hand, from the occurrence of viscous dissipation in the flow and on the other hand from the significant temperatare dependency of melt viscosity. Viscous dissipation is due to relatively high melt viscosities and strain rates, especially with today's processes which involve formidable extrusion speeds. The third aspect discussed in this paper is the complexity of residence time distribution in modem flow channels, which is evaluated with advanced three-dimensional flow simulation and particle tracking.
机译:本文概述了当今在流变和流动模拟领域使用的技术,用于工业水平,用于铸造薄膜挤出模具设计。该行业在过去的三十年中取得了重大进展,并且模具和饲养块设计和优化肯定是在整体改进方面有用的。模具和共挤出馈电是由于层分层和形成功能的过程的关键方面,这驱动了最终产品经济学和性质。聚合物熔体流变学是在优化挤出设备中的流动模式时考虑的关键方面。当瞄准在模具出口处获得均匀的流动分布时,不仅是对流动通道设计至关重要的流变学,而且由于强大的机械和热耦合,它在流动的热方面发挥着重要作用。一方面,该耦合从流动中的粘性耗散的发生,另一方面,从熔体粘度的显着温度依赖性。粘性耗散是由于熔体粘度和应变率相对较高,特别是当今涉及强大挤出速度的过程。本文讨论的第三方面是调制解调器流动通道中的停留时间分布的复杂性,其通过先进的三维流动模拟和粒子跟踪评估。

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