同步辐射制备三维聚四氟乙烯微结构形状预测的高级模拟

M. Horade, M. Tsudo, S. Kajita, S. Sugiyama
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引用次数: 0

摘要

本文对同步辐射(SR)直接刻蚀法制备的三维聚四氟乙烯(PTFE)微结构的变形形状预测进行了模拟。聚四氟乙烯是一种非凡的材料,因此有望在各种设备上得到应用。针对聚四氟乙烯器件的应用,研究了利用SR光建立高精度聚四氟乙烯三维微加工技术。作为他们研究的一部分,已经建立了形状预测的仿真系统。由于形状预测系统的优点是无需实验即可掌握形状,因此可以减少制造时间和成本。此外,它也是研究和阐明处理机制的一种有用的技术。本文对实验制作的结构和形状预测系统计算的形状进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Advanced Simulation for Shape-prediction of 3-D PTFE Microstructures Fabricated by Using Synchrotron Radiation
Simulations for deformed shape-predictions of the 3-dimensional polytetrafluoroethylene (PTFE) microstructures fabricated by synchrotron radiation (SR) direct etching is described in this paper. PTFE is a remarkable material, therefore the applications to various devices is expected. We aim at the application to the device which used PTFE, we research for establishment of the highly accuracy three-dimensional maicrofabrication technology of PTFE by using SR light. As part of their research, the simulation system for shape-prediction has been built. Since the advantage of the shape-prediction system can grasp shape without experimenting, reduction of fabrication time and cost can be performed. In addition, it is a technique useful also to investigation and an elucidation of a processing mechanism. In this report, comparison with the structure fabricated by experiment and the shape computed by the shape-prediction system was performed.
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