Thermoplastic micro-forming process of bulk metallic glass surgical blades using drawing velocity regulation

N. Dancholvichit, S. Salapaka, S. Kapoor
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Abstract

Drawing velocity is essential in the manufacturing of the multi-facet bulk metallic glass (BMG) knife edges used in corneal surgery since it is one of the factors that can determine good blade profiles in the thermoplastic forming process. The goal of this article is to determine and regulate drawing velocity based on the viscoelastic filament stretching and knowledge of the thermoplastic forming map of BMG. The generation of drawing velocity profile is done in two stages: the initial transient stage before the extensional viscosity stage is fully developed, and the extensional viscosity stage. The controller based on the system identification of the testbed is then optimized from the requirements of the drawing velocity and its implementation feasibility. The control objectives of regulation performance and robustness to modeling uncertainties are posed and solved in an optimal control (H∞) framework. The proposed controller shows an improvement over other controllers including proportional-integral-derivative controllers in terms of robustness to uncertainties and tracking performance. BMG samples processed from this study result in good quality with improvement of 20% and 54% in X–Y ( 2.2 ± 0.1 µm) and X–Z ( 1.3 ± 0.1 µm) straightness and 25% more consistent edge radii ( 46 ± 3 nm).
大块金属玻璃手术刀片的热塑性微成形工艺
在角膜手术中使用的多面大块金属玻璃(BMG)刀口的制造中,拉伸速度是至关重要的,因为它是决定热塑性成形过程中良好刀片轮廓的因素之一。本文的目的是根据粘弹性长丝拉伸和BMG热塑性成形图的知识来确定和调节拉伸速度。拉伸速度剖面的生成分为两个阶段:张性黏性阶段完全发育前的初始瞬变阶段和张性黏性阶段。在对试验台进行系统辨识的基础上,从拉伸速度要求和实现可行性两方面对控制器进行了优化。在最优控制(H∞)框架下提出并求解了调节性能和对建模不确定性鲁棒性的控制目标。所提出的控制器在对不确定性的鲁棒性和跟踪性能方面优于其他控制器,包括比例-积分-导数控制器。本研究处理的BMG样品质量良好,X-Y(2.2±0.1µm)和X-Z(1.3±0.1µm)直线度分别提高20%和54%,边缘半径(46±3 nm)一致性提高25%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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