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Study on micro hot embossing of low temperature co-firable ceramic green substrates

机译:低温共烧陶瓷生坯的微压花研究

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摘要

Multi-layered ceramic substrates with embedded micro patterns are becoming increasingly important, for example, in harsh environment electronics, enabling microsystems and microfluidic devices. Fabrication of these embedded micro patterns, such as micro channels, cavities and vias, is a challenge. This study focuses on the process aspects of patterning micro features on low temperature co-firable ceramic (LTCC) green substrates using micro hot embossing. Green ceramic tapes that possessed near-zero shrinkage in the x-y plane were used, six layers of which were stacked and laminated as a substrate. The process parameters that impact on the embossing fidelity were investigated and optimized in this study. Micro features with channel-width as small as several micrometers were formed on green ceramic substrates. The dynamic thermo-mechanical analysis indicated that extending the holding time at a certain temperature range would harden the substrates with little effect on improving the embossing fidelity. Ceramic substrates with embossed micro patterns were obtained after co-firing; the shrinkage ratios of the embossed depth and channel-width were 8-15 and 12-17%, respectively. The changes of pitches between two embossed channels were within ±1.0% due to the interlocking effect of the ceramic tapes.
机译:具有嵌入式微图案的多层陶瓷基板在例如恶劣的环境电子设备中变得越来越重要,从而使微系统和微流体设备成为可能。这些嵌入式微图案的制造,例如微通道,腔和通孔,是一个挑战。这项研究的重点是利用微热压印技术在低温共烧陶瓷(LTCC)绿色衬底上构图微特征的工艺方面。使用在x-y平面上具有接近零收缩率的绿色陶瓷带,将其中的六层堆叠并层压为基材。在这项研究中,研究和优化了影响压纹保真度的工艺参数。在绿色陶瓷基板上形成了通道宽度小至几微米的微特征。动态热机械分析表明,在一定温度范围内延长保持时间会使基材硬化,而对提高压纹保真度的影响很小。共烧后,获得具有压纹微图案的陶瓷基板。压纹深度和通道宽度的收缩率分别为8-15%和12-17%。由于陶瓷带的互锁作用,两个压花通道之间的间距变化在±1.0%以内。

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