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An IR Methodology to Assess the Behavior of Ferrofluidic Transducers—Case of Study: A Contactless Driven Pump

机译:红外方法评估铁磁换能器的性能—研究案例:非接触驱动泵

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摘要

A single drop of ferrofluid can be used as active mass in an innovative pump scheme. The absence of mechanical moving parts and solid-inertial masses provides high reliability and the possibility to implement the pumping mechanism on preexisting channels. The main focus of this paper is to describe the IR-based technique adopted to "observe" the cap movement inside the channel of the developed pump, thus validating the supposed pumping mechanism. Moreover, experiments have been performed on the pump prototype in order to estimate the average amount of pumped liquid, the drop pressure, and the flow rate as functions of frequency and amplitude of the driving signals.
机译:在创新的泵方案中,单滴铁磁流体可用作活性物质。缺少机械运动部件和固体惯性质量提供了很高的可靠性,并有可能在预先存在的通道上实施泵送机构。本文的主要重点是描述基于IR的技术,该技术可“观察”已开发泵通道内的瓶盖运动,从而验证了假定的泵送机制。此外,已经对泵原型进行了实验,以估计泵送液体的平均量,下降压力和流量与驱动信号的频率和幅度有关。

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