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Influence of Process Parameters on Quality and Properties of Microfluidic Components Made in KEKO SK47 Substrates

机译:工艺参数对Keko SK47基材进行微流体部件质量和性能的影响

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In the paper, the impact of the technological process parameters on geometry of microfluidic structures made in LTCC (Low Temperature Co-fired Ceramics) substrate is studied. Two technological steps - laser micromachining and isostatic lamination - were taken into account. We have investigated influence of laser beam velocity, frequency of laser pulses and on/off delay time on cutting quality of the LTCC material in a green state. Moreover, impact of pressure and temperature of the isostatic lamination on geometry of microchannels fabricated in the LTCC substrate and shrinkage of the fired LTCC are examined. In order to determine how strongly the process parameters influenced the quality of the LTCC-based microfluidic structures an Analysis of Variance (ANOVA) method was used. Basing on the obtained results, it is possible to select the optimal parameters of the laser micromachining and isostatic lamination processes for fabrication of various microfluidic components.
机译:本文研究了技术过程参数对LTCC(低温共烧陶瓷)衬底进行的微流体结构几何形状的影响。考虑了两种技术步骤 - 激光微机械和等静压层压。我们已经研究了激光束速度,激光脉冲频率和开/关延迟时间的影响,以在绿色状态下切割LTCC材料的切割质量。此外,研究了等静压压力和温度对LTCC衬底制造的微通道几何形状的影响和烧制LTCC的收缩。为了确定过程参数有多强的影响LTCC基微流体结构的质量,使用了方差(ANOVA)方法。基于所得结果,可以选择激光微机械线和等静压层压工艺的最佳参数,用于制造各种微流体组分。

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