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Rheology and Modeling of the Spin Coating Process

机译:旋涂工艺的流变学和建模

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This study examines the spin coating process both experimentally and from a fundamental point of view. The analysis has produced a model and a quantitative relationship between spin coating thickness and pertinent material and process variables. The model predicts that the simplest and most reproducible results occur in a region which is independent of thickness and time and is characterized by low steady state radial flow on the substrate. The model also includes a time-dependent term, shown to be important for the region of high radial flow—fluids of relatively low viscosity and process conditions of relatively high speed and/or long times. Experimentally, Newtonian-like polyamide in iso-amyl alcohol solutions was examined on large rotating substrates, and measurements showed excellent correlation with the model. The sensitivity of the spin coating process to substrate size and shape is also reported and a comparison with other data in the literature, particularly on photoresist solutions, is presented. The potential applicability of the model to non-ideal fluids is also developed.
机译:这项研究从实验和从根本的角度考察了旋涂工艺。该分析产生了旋涂厚度与相关材料和工艺变量之间的模型以及定量关系。该模型预测,最简单和最可重复的结果出现在一个区域,该区域与厚度和时间无关,并且特征在于基材上的稳态径向流较低。该模型还包含一个随时间变化的术语,对于高径向流量区域来说是重要的,该区域具有较低的粘度和较高的速度和/或长时间的加工条件。在实验中,在大型旋转基材上检查了异戊醇溶液中的牛顿型聚酰胺,并且测量结果与模型具有极好的相关性。还报道了旋涂工艺对基底尺寸和形状的敏感性,并且与文献中的其他数据进行了比较,特别是关于光刻胶溶液。还开发了该模型对非理想流体的潜在适用性。

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