聚合物微流控芯片的原型设计与生产

Honggang Zhang, Haoyang Zhang, Tianyu Guan, Xiangyu Wang, Nan Zhang
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引用次数: 5

摘要

微流控芯片在生命科学、分析化学、农业食品分析和环境检测等领域有许多先进的应用。本章重点研究了微流控芯片原型和批量生产的常用制造技术和工艺链。首先详细介绍了由PDMS铸造、微加工和3d打印组成的快速成型技术,并给出了一些重要的研究成果。从工装技术、复制技术和粘接技术等方面对微流控芯片生产工艺链的规模化进行了讨论和总结,并介绍了每种工艺方法的主要工作机理、技术优势和局限性。最后,给出结论和未来展望。总体而言,本章展示了如何选择加工材料和方法来满足微流控芯片批量生产的实际要求。为微流控芯片的应用提供了重要的指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Prototyping and Production of Polymeric Microfluidic Chip
Microfluidic chips have found many advanced applications in the areas of life science, analytical chemistry, agro-food analysis, and environmental detection. This chapter focuses on investigating the commonly used manufacturing technologies and process chain for the prototyping and mass production of microfluidic chips. The rapid prototyping technologies comprising of PDMS casting, micro machining, and 3D-printing are firstly detailed with some important research findings. Scaling up the production process chain for microfluidic chips are discussed and summarized with the perspectives of tooling technology, replication, and bonding technologies, where the primary working mechanism, technical advantages and limitations of each process method are presented. Finally, conclusions and future perspectives are given. Overall, this chapter demonstrates how to select the processing materials and methods to meet practical requirements for microfluidic chip batch production. It can provide significant guidance for end-user of microfluidic chip applications.
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