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首页> 外文期刊>Mechatronics, IEEE/ASME Transactions on >Wireless In-Piping Actuator Capable of High-Speed Locomotion by a New Motion Principle
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Wireless In-Piping Actuator Capable of High-Speed Locomotion by a New Motion Principle

机译:通过新的运动原理能够进行高速运动的无线管道内执行器

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Finding damage inside pipes is important for the inspection of pipes used in nuclear power plants and chemical plants. A number of studies have investigated the mechanisms of an actuator with an electric cable to provide locomotion through various devices in pipes. A wireless actuator capable of movement in narrow pipes of several millimeters in diameter has not yet been developed. This paper proposes a novel wireless magnetic actuator with a new propulsion module that exhibits a very high thrusting force and is capable of locomotion in a thin pipe by a new motion principle. Including this principle, we completely established the motion principles of three types due to the change of a supporting force of the wireless magnetic actuator by a theory and an experiment. The application of a rubber leg having optimal flexural rigidity demonstrates that a reciprocating motion caused by vibration can be efficiently converted into movement in one direction. This actuator contains an electrical inverter that directly transforms dc from button batteries into ac. The actuator is moved by the synergy of the vibration amplitude and elastic energy of the mass–spring system due to mechanical resonance energy. Experimental results indicate that the proposed actuator is able to move upward at a speed of 68.5 mm/s by the power provided by ten button batteries when pulling a 10-g load mass. This wireless magnetic actuator has several possible applications, including small pipe inspection and maintenance.
机译:查找管道内部的损坏对于检查核电站和化工厂中使用的管道非常重要。许多研究已经研究了带有电缆的致动器的机制,以通过管道中的各种设备提供运动。尚未开发能够在直径几毫米的窄管中移动的无线致动器。本文提出了一种具有新型推进模块的新型无线电磁致动器,该推进模块具有很高的推力,并能够通过新的运动原理在细管中运动。包括该原理,通过理论和实验,我们完全确定了由于无线电磁致动器的支撑力的变化而产生的三种类型的运动原理。具有最佳抗弯刚度的橡胶腿的应用表明,由振动引起的往复运动可以有效地转换成在一个方向上的运动。该执行器包含一个电气逆变器,该逆变器将直流电从纽扣电池直接转换为交流电。由于机械共振能,执行器通过质量弹簧系统的振动幅度和弹性能的协同作用而移动。实验结果表明,当拉动10克负载质量时,由十个纽扣电池提供的动力可以使拟议的执行器以68.5毫米/秒的速度向上移动。该无线电磁执行器具有多种可能的应用,包括小管道检查和维护。

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