Lee Ui Seok, Sim Dae Bo, Lee Ji Hyo, Kim Bo Hyun
Department of Mechanical Engineering, Graduate School, Soongsil University, 369 Sangdo-ro, Dongjak-gu, Seoul 06978, Republic of Korea.
School of Mechanical Engineering, Soongsil University, 369 Sangdo-ro, Dongjak-gu, Seoul 06978, Republic of Korea.
Micromachines (Basel). 2024 Jan 27;15(2):194. doi: 10.3390/mi15020194.
In glass molding to produce biochips with micro holes, cavities, and channels, it is important to machine micro molds. This study presents a novel process for fabricating micro pin arrays on carbon graphite, one of the glass molding materials. The micro pin array was used as a mold to fabricate a glass-based micro hole array. Using conventional micro endmill tools, machining micro-cylindrical pins requires complex toolpaths and is time-consuming. In order to machine micro pin arrays with high efficiency, a micro eccentric tool was introduced. Micro pin arrays with a diameter of 200 µm and a height of 200 µm were easily fabricated on graphite using the micro eccentric tool. In the machining of micro pin arrays using eccentric tools, the machining characteristics such as cutting force and tool wear were investigated.
在玻璃模塑以生产具有微孔、微腔和微通道的生物芯片时,加工微模具很重要。本研究提出了一种在玻璃模塑材料之一的碳石墨上制造微针阵列的新工艺。微针阵列被用作模具来制造基于玻璃的微孔阵列。使用传统的微型立铣刀加工微圆柱销需要复杂的刀具路径且耗时。为了高效加工微针阵列,引入了一种微型偏心刀具。使用该微型偏心刀具可轻松在石墨上制造直径为200 µm、高度为200 µm的微针阵列。在使用偏心刀具加工微针阵列时,研究了切削力和刀具磨损等加工特性。