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首页> 外文期刊>Journal of Applied Physics >Controllable elastocapillary folding of three-dimensional micro-objects by through-wafer filling
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Controllable elastocapillary folding of three-dimensional micro-objects by through-wafer filling

机译:通过晶圆填充可控制的三维微对象的弹性毛细管折叠

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摘要

We present a technique for the controllable capillary folding of planar silicon nitride templates into 3D micro-structures by means of through-wafer liquid application. We demonstrate for the first time hydro-mechanical, repeatable, actuation of capillary folded structures via the addition or retraction of water on demand. Silicon nitride objects with a central through-wafer tube are connected to a dedicated pumping system to enable assembly. When remaining wetted, structures can be assembled and reopened up to several dozens of times and still reach the same final folding angle. Objects were actuated up to 60 times without signs of wear. Extracted curves from our self-folding experiments are in agreement with our two-dimensional elastocapillary folding model. When structures are allowed to dry in between foldings, we observe an increase in the bending stiffness of the hinges, by a factor 50% after first folding and subsequent drying. This stiffening causes a decrease of the finally achieved angle. Residue from the fabrication process found on the structures after folding is suspected to be the cause of the stiffening.
机译:我们提出了一种技术,用于通过硅片液体涂敷将平面氮化硅模板可控地折叠成3D微观结构。我们首次展示了通过按需添加或撤回水来对毛细折叠结构进行液压机械,可重复的驱动。具有中心贯穿晶片管的氮化硅物体被连接到专用泵系统以实现组装。当保持湿润状态时,可以将结构组装并重新打开多达数十次,并且仍然达到相同的最终折叠角度。物体被启动多达60次而没有磨损迹象。从我们的自折叠实验中提取的曲线与我们的二维弹性毛细管折叠模型一致。当允许结构在两次折叠之间干燥时,我们观察到铰链的弯曲刚度增加,在第一次折叠和随后的干燥之后增加了50%。这种硬化导致最终达到的角度减小。折叠后在结构上发现的制造过程中的残留物被怀疑是变硬的原因。

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