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基于粉末喷砂的熔融石英玻璃微流控通道加工

Micro Fluidic Channel Machining on Fused Silica Glass Using Powder Blasting.

作者信息

Jang Ho-Su, Cho Myeong-Woo, Park Dong-Sam

机构信息

Department of Mechanical Engineering, University of Incheon, Incheon 402-749, Korea.

Division of Mechanical Engineering, Inha University, Incheon 402-751, Korea.

出版信息

Sensors (Basel). 2008 Feb 6;8(2):700-710. doi: 10.3390/s8020700.

Abstract

In this study, micro fluid channels are machined on fused silica glass via powder blasting, a mechanical etching process, and the machining characteristics of the channels are experimentally evaluated. In the process, material removal is performed by the collision of micro abrasives injected by highly compressed air on to the target surface. This approach can be characterized as an integration of brittle mode machining based on micro crack propagation. Fused silica glass, a high purity synthetic amorphous silicon dioxide, is selected as a workpiece material. It has a very low thermal expansion coefficient and excellent optical qualities and exceptional transmittance over a wide spectral range, especially in the ultraviolet range. The powder blasting process parameters affecting the machined results are injection pressure, abrasive particle size and density, stand-off distance, number of nozzle scanning, and shape/size of the required patterns. In this study, the influence of the number of nozzle scanning, abrasive particle size, and pattern size on the formation of micro channels is investigated. Machined shapes and surface roughness are measured using a 3-dimensional vision profiler and the results are discussed.

摘要

在本研究中,通过喷砂加工(一种机械蚀刻工艺)在熔融石英玻璃上加工微流体通道,并对通道的加工特性进行了实验评估。在此过程中,材料去除是通过由高度压缩空气注入的微磨料与目标表面的碰撞来实现的。这种方法可被视为基于微裂纹扩展的脆性模式加工的一种整合。熔融石英玻璃,一种高纯度的合成无定形二氧化硅,被选作工件材料。它具有非常低的热膨胀系数、优异的光学品质以及在宽光谱范围内,特别是在紫外范围内的出色透光率。影响加工结果的喷砂工艺参数包括喷射压力、磨料粒径和密度、喷枪距工件表面的距离、喷嘴扫描次数以及所需图案的形状/尺寸。在本研究中,研究了喷嘴扫描次数、磨料粒径和图案尺寸对微通道形成的影响。使用三维视觉轮廓仪测量加工形状和表面粗糙度,并对结果进行了讨论。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a60c/3927535/440bf12bd6d9/sensors-08-00700f1.jpg

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