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Research Status and Development Trend of Magnetic Fluid Micro-differential Pressure Sensor

机译:磁流体微差压传感器的研究现状及发展趋势

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As a nano-scale composite functional material, the basic structure of the new magnetic fluid is to uniformly disperse the magnetic solid particles adsorbed with surfactants into the base liquid, thus forming a stable colloid system with high dispersion. Magnetic fluid can exist stably for a long time even under the action of gravity field, magnetic field and electric field without precipitation and separation. This kind of magnetic fluid has both magnetic and liquid fluidity under the action of magnetic field, so it has great potential for the application of magnetic fluid in the field of sensors. This paper mainly analyzes the research achievements of magnetic fluid in the neighborhood of micro-differential pressure sensor at home and abroad in recent years, and introduces the working principle and latest research progress of magnetic fluid sensor. Thus, making use of the special properties of magnetic fluid, it is applied to some problems in the field of micro-pressure difference sensor and the research direction of magnetic fluid micro-pressure difference sensor in the future.
机译:作为纳米级复合功能材料,新磁性流体的基本结构是将吸附物吸附的磁性固体颗粒均匀地分散到基础液体中,从而形成具有高分散体的稳定的胶体系统。即使在没有沉淀和分离的重力场,磁场和电场的作用下,磁性流体也可以稳定地存在很长的时间。这种磁性流体在磁场的作用下具有磁性和液体流动性,因此它具有在传感器领域中施加磁性流体的潜力。本文主要分析了近年来国内外微压力传感器附近磁流体的研究成果,介绍了磁流体传感器的工作原理和最新研究进展。因此,利用磁性流体的特殊性质,将来应用于微压差传感器领域的一些问题和未来磁流体微压差传感器的研究方向。

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