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Study the Formation Process of Cuboid Microprotrusion by Glass Molding Process

机译:玻璃成型法研究长方体微凸体的形成过程

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摘要

This paper investigates the formation process of a typical microstructure in the glass microfluidic chip, i.e., cuboid microprotrusion, by the soda-lime glass molding process (GMP). The finite element models on the platform Abaqus/Standard were established for simulating the glass molding process. The glass viscoelasticity at pressing temperature was described by the General Maxwell model. The influence of the temperature, aspect ratio and side wall angle on the replication ratio was investigated, and the corresponding predicted molded profiles were demonstrated as well. The established simulation model was verified by experimental results eventually. It could provide a fundamental experience for optimizing glass molding parameters to fabricate microstructures on glass chips.
机译:本文研究了钠钙玻璃成型工艺(GMP)在玻璃微流控芯片中典型微结构的形成过程,即长方体微凸出。建立了平台Abaqus / Standard上的有限元模型来模拟玻璃成型过程。压制温度下的玻璃粘弹性由General Maxwell模型描述。研究了温度,长宽比和侧壁角度对复制率的影响,并演示了相应的预测成型轮廓。最后通过实验结果验证了所建立的仿真模型。它可以为优化玻璃成型参数以在玻璃芯片上制造微结构提供基础经验。

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