Through the above-mentioned studies, microfluidic chips have been successfully completed.
通过以上研究,在实验室成功制作出玻璃微流路芯片。
During its fabrication process, bonding is the key procedure to almost all microfluidic chips.
在微流控芯片的制造过程中,键合是关键步骤之一。
So, right now, we can actually miniaturize biological and chemistry laboratories onto microfluidic chips.
所以,现在我们确实可以在微流体晶片上,使生物和化学实验室微型化。
Microfluidic chips based on MEMS technology exhibit great potentials in analytical chemistry and biomedical fields.
基于MEMS技术的微流体芯片在分析化学和生物医学领域显示了巨大的应用潜力。
Micro injection molding is most appropriate for commercial production of microfluidic chips owing to its high productivity.
注塑成型因生产效率高、适用于批量生产而成为微流控芯片商业化的首选成型方法。
Therefore, theoretical and experimental research was carried out to improve uniformity of metal micro-mold insert used in microfluidic chips.
因此本文以微电铸制作微流控片芯片的模具为基础对改善微电铸器件的均匀性进行理论和实验研究。
Photolithography combined with etching technique is the most commonly used technique for fabrication of silicon, glass and quartz microfluidic chips.
光刻和蚀刻技术常用于加工硅、玻璃和石英芯片。
This paper presents a widely available CO2 laser scriber to perform the direct-writing ablation of poly (methyl methacrylate) (PMMA) substrate for the development of microfluidic chips.
提出一种广泛使用的CO2激光法,以直接读写烧蚀的方式,进行快速的聚甲基丙烯酸甲酯(PMMA)基材的微流控分析芯片的制造。
The hot embossing and bonding machines have been used practically in microfluidic chip automatic fabrication, and the chips have satisfactory quality, precision, repetition and consistency.
塑料微流控芯片热压键合设备已经投入自动化生产,生产的芯片质量、精度、重复性和一致性良好。
Results obtained are very promising for the utilization of such composites in future micro-fabrications, especially for the bio-chips and microfluidic devices.
得到的结果对于将所述复合材料在未来的微制造中使用,尤其是用于生物芯片和微流体器件,是非常有前途的。
Results obtained are very promising for the utilization of such composites in future micro-fabrications, especially for the bio-chips and microfluidic devices.
得到的结果对于将所述复合材料在未来的微制造中使用,尤其是用于生物芯片和微流体器件,是非常有前途的。
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