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Uniform Shell Patterning Using Rubber-Assisted Hot Embossing Process. II. Process Analysis

机译:使用橡胶辅助的热压花工艺进行均匀的外壳图案化。二。工艺分析

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摘要

This two-article sequence on rubber-assisted embossing was aimed to understand the basic mechanisms affecting the pattern uniformity and replicability and to determine a process window for achieving uniform patterning and faithful replication. In Part I, the effects of major process and material parameters were identified and studied, and strategies for successful hot embossing with rubber as a pressure medium were proposed. In Part II, the rubber-assisted embossing process was analyzed considering the unique rheological behavior of the materials involved to develop useful predictive capabilities for this new process. Specifically, a finite-strain hyperelastic formulation was used for simulating the isothermal embossing stage, and a generalized Maxwell model was used to study the stress relaxation during the holding stage and to predict the elastic recovery after demolding. The rheological properties obtained in Part I were fitted to the constitutive models and implemented in the simulation procedures. The simulation results agreed with the major findings in the experimental work and provided a more quantitative insight into the process.
机译:关于橡胶辅助压花的这一两篇文章的序列旨在了解影响图案均匀性和可复制性的基本机制,并确定实现均匀图案和忠实复制的工艺窗口。在第一部分中,确定并研究了主要工艺和材料参数的影响,并提出了以橡胶为压力介质成功进行热压花的策略。在第二部分中,考虑了所涉及材料的独特流变行为,对橡胶辅助压花工艺进行了分析,从而为该新工艺开发了有用的预测能力。具体而言,使用有限应变超弹性公式模拟等温压花阶段,并使用广义Maxwell模型研究保温阶段的应力松弛并预测脱模后的弹性回复。在第一部分中获得的流变性质被拟合到本构模型中,并在模拟程序中实现。仿真结果与实验工作中的主要发现相吻合,并提供了对该过程更定量的见解。

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