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Controlling Normal Stiffness in Droplet-Based Linear Bearings

机译:控制基于液滴的线性轴承的法向刚度

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摘要

While capillary forces are negligible relative to gravity at the macroscale, they provide adequate force to effectively manipulate millimeter to micro meter objects. The fluidic actuation can be accomplished using droplets that also act as bearings. While rotary droplet bearings have been previously demonstrated, this paper addresses the positioning accuracy of a droplet-based bearing consisting of a droplet between a moving plate and a stationary substrate with constrained wetting region under a normal load. Key wetting cases are analyzed using both closed form analytical approximations and numerical simulations. The vertical force and stiffness characteristics are analyzed in relation to the wetting boundaries of the supporting surface. Case studies of different wetting boundaries are presented and summarized. Design strategies are presented for maximizing load carrying capability and stiffness. These results show that controlled wetting and opposing droplet configurations can create much higher stiffness fluidic bearings than simple droplets.
机译:虽然毛细作用力在宏观范围内相对于重力可以忽略不计,但它们提供了足够的作用力来有效地操纵毫米到微米的物体。可以使用还充当轴承的液滴来完成流体致动。虽然先前已经证明了旋转液滴轴承,但本文提出的是基于液滴的轴承的定位精度,该轴承由在正常载荷下受约束的润湿区域的活动板和固定基板之间的液滴组成。使用封闭形式的解析近似和数值模拟来分析关键的润湿情况。相对于支撑表面的润湿边界分析了垂直力和刚度特性。介绍并总结了不同润湿边界的案例研究。提出了用于最大化承载能力和刚度的设计策略。这些结果表明,与简单的液滴相比,受控的润湿和相反的液滴构型可以产生更高的刚度流体轴承。

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