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Positive pressure induced channeled suction cups

机译:正压引导通道吸盘

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摘要

Leaking in water pipe is a critical issue in Middle Eastern countries such as Kuwait where water is scarce. In-pipe robots can be dispatched to discover the network and inspect the inner surface of the pipe. This thesis describes the design and characterization of suction pads for in-pipe robots. The suction cups are made of hyperelastic materials that contain air channels inside. Instead of using conventional suction technique that is prone to leaking and loosing adhesion force, the suction cup is actuated by compressed air or liquid, which deforms the geometry of the cup to achieve suction. In order to verify the geometry changes during actuation, a uniaxial tension test was done on the elastic material used to acquire the material properties and the suction cup designs were then simulated using FEA in ABAQUS. Next, prototypes were designed in SolidWorks and fabricated using soft lithography techniques. To measure the suction force, pressure measurements were taken both inside the prototype channels and underneath the suction cup. Results show that a Positive Pressure Actuated Suction-cup (PPAS) of diameter forty millimeters can achieve suction force up to 68 N. As more air is inserted into PPAS, the suction force also increases. The concept has proved to be a feasible solution for pipe inspection robot.
机译:在水短缺的中东国家(例如科威特),水管泄漏是一个关键问题。可以派遣管道机器人来发现网络并检查管道内表面。本文介绍了管道机器人吸盘的设计和特性。吸盘由超弹性材料制成,内部装有空气通道。代替使用易于泄漏和失去附着力的常规抽吸技术,吸盘由压缩空气或液体致动,这使吸盘的几何形状变形以实现抽吸。为了验证驱动过程中的几何形状变化,对用于获取材料特性的弹性材料进行了单轴拉伸测试,然后在ABAQUS中使用FEA模拟了吸盘设计。接下来,在SolidWorks中设计原型并使用软光刻技术进行制造。为了测量吸力,在原型通道内部和吸盘下方都进行了压力测量。结果表明,直径为40毫米的正压驱动吸盘(PPAS)可以实现高达68 N的吸力。随着向PPAS中插入更多空气,吸力也会增加。该概念已被证明是用于管道检查机器人的可行解决方案。

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