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通过灰度聚合和超声处理实现具有自牺牲结构的3D打印复杂微结构

3D-Printed Complex Microstructures with a Self-Sacrificial Structure Enabled by Grayscale Polymerization and Ultrasonic Treatment.

作者信息

Liao Yibo, Li Wenhao, Zhan Ziheng, Duan Huigao, Liu Peng, Chen Yiqin, Wang Zhaolong

机构信息

National Research Center for High-Efficiency Grinding, College of Mechanical and Vehicle Engineering, Hunan University, Changsha 410082, PR China.

出版信息

ACS Omega. 2021 Jul 8;6(28):18281-18288. doi: 10.1021/acsomega.1c02177. eCollection 2021 Jul 20.

Abstract

Complex three-dimensional (3D) microstructures are attracting more and more attention in many applications such as microelectromechanical systems, biomedical engineering, new materials, new energy, environmental protection, and wearable electronics. However, fabricating complex 3D microstructures by 3D printing techniques, especially those with long suspended structures, needs to introduce additional supporting structures, which are difficult to be removed. Here, we propose a simple method in which the supporting structures can be easily removed by optimizing their size and the grayscale value working with ultrasonic treatment in ethanol solution. The 3D microstructures and the supporting structures made of the same insoluble materials are fabricated simultaneously by using a projection microstereolithography system with a dynamic mask. The results demonstrate that the supporting structures play a key role in the fabrication of the long suspended structures while they can be easily removed. The removal time decreases with the increase in the height of the supporting microstructures, and the breaking force and shearing force of the supporting structures increase with the increase in their grayscale and the diameter. In addition, theory and the multiphysics simulation validate that the stress concentration at the top and the bottom of the supporting structures due to the cavitation from ultrasonic vibration dominates the removal of the supporting structures. Finally, a tree-like structure is precisely fabricated by using our method. The present study provides a new way for the removal of the supporting structures for 3D printed suspended microstructures.

摘要

复杂的三维(3D)微结构在微机电系统、生物医学工程、新材料、新能源、环境保护和可穿戴电子等众多应用中越来越受到关注。然而,通过3D打印技术制造复杂的3D微结构,尤其是那些具有长悬空结构的微结构,需要引入额外的支撑结构,而这些支撑结构很难去除。在此,我们提出一种简单的方法,通过优化支撑结构的尺寸和灰度值,并结合在乙醇溶液中的超声处理,可以轻松去除支撑结构。由相同不溶性材料制成的3D微结构和支撑结构通过使用带有动态掩膜的投影微立体光刻系统同时制造。结果表明,支撑结构在长悬空结构的制造中起着关键作用,同时它们可以很容易地被去除。去除时间随着支撑微结构高度的增加而减少,支撑结构的断裂力和剪切力随着其灰度和直径的增加而增加。此外,理论和多物理场模拟验证了由于超声振动产生的空化作用,支撑结构顶部和底部的应力集中主导了支撑结构的去除。最后,使用我们的方法精确制造了一种树状结构。本研究为去除3D打印悬空微结构的支撑结构提供了一种新方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d4c7/8296550/7b2b8c820156/ao1c02177_0002.jpg

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