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Microwriting Using Surface Tension

机译:使用表面张力进行微写

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摘要

The design, construction, and evaluation of a non-contact microwriting system is presented. The device is based on standard technical pen nibs, which have a wire whisker inside a hollow tube. Writing with these pens normally requires contact with the writing surface (substrate). By taking advantage of surface tension and capillary forces, once a meniscus is formed on the writing surface, if the pen is lifted above the surface, fluid will continue to wick from pen to substrate ― even if the pen no longer touches the surface. A vacuum preloaded air bearing is used to control the pen height above the surface and also to control the pressure differential across the pen. This can control both line width and line thickness of the fluid deposited, to widths smaller than pen widths. Lines approximately 25 microns wide have been deposited with 0.10 mm diameter pens, with suitable pressure and height regulation. The advantages with this deposition method are reduced use of fluids, and no damage to the substrate. This apparatus is used in research of surface properties and for use in biochemical sensors and assays.
机译:介绍了非接触式微写系统的设计,构建和评估。该设备基于标准技术笔尖,该笔尖在空心管内有一个金属须。用这些笔书写通常需要与书写表面(基材)接触。利用表面张力和毛细作用力,一旦在书写面上形成了弯液面,如果将笔提起到表面上方,即使笔不再接触表面,流体也将继续从笔芯吸到基体上。真空预加载的空气轴承用于控制笔在表面上方的高度,并控制笔两端的压差。这可以将沉积的流体的线宽和线厚控制到小于笔宽的宽度。使用直径为0.10 mm的笔在适当的压力和高度调节下放置约25微米宽的线。这种沉积方法的优点是减少了对流体的使用,并且不会损坏基板。该设备用于表面性质的研究,并用于生化传感器和测定。

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