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Design optimization of ultrasonic horn for micro-pattern replication

机译:用于微图案复制的超声变幅杆的设计优化

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摘要

The micro-molding of thermoplastic polymer is a popular fabrication method for microano devices because several thousand parts can be produced after a mold insert has been made. Most micro-molding techniques such as hot embossing or injection molding use thermal energy to plasticize the thermoplastic polymer, and require an additional cooling stage. Recently, ultrasonic vibration energy has been used to soften a local region of thermoplastic polymer by inducing frictional heat between an ultrasonic tool horn and the polymer material. The present study aims to develop an ultrasonic patterning process in which the micro-patterns engraved on the tool horn are replicated onto the surface of a polymer film. For this purpose, the design of a tool horn for the ultrasonic patterning was investigated to obtain good replication characteristics of micro-patterns with uniformity thorough the entire pattern area. Finite element analyses were conducted to predict the vibration characteristics of the tool horn. Statistical analysis using the response surface method was concurrently performed to find the optimal design conditions to ensure high and uniform pattern replicability. Experimental verifications were then followed by application of the proposed horn design.
机译:热塑性聚合物的微模制是用于微/纳米器件的一种流行的制造方法,因为在制作模具嵌件后可以生产数千个零件。大多数微成型技术(例如热压花或注塑成型)都使用热能来增塑热塑性聚合物,并需要额外的冷却步骤。近来,超声振动能量已经用于通过在超声工具喇叭和聚合物材料之间引起摩擦热来软化热塑性聚合物的局部区域。本研究旨在开发一种超声图案化工艺,其中刻在工具角上的微图案被复制到聚合物膜的表面上。为此,研究了用于超声图案化的工具喇叭的设计,以获得在整个图案区域内具有均匀性的微图案的良好复制特性。进行了有限元分析以预测工具喇叭的振动特性。同时进行了使用响应面法的统计分析,以找到最佳设计条件,以确保高且均匀的图案可复制性。然后进行实验验证,然后应用提出的喇叭设计。

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