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Theoretical and Experimental Analysis of an Induction Planar Actuator with Different Secondaries—A Planar Driver Application for Metallic Surface Inspection

机译:带有不同二次绕组的感应平面作动器的理论和实验分析—平面驱动器在金属表面检测中的应用

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This paper presents a study on an induction planar actuator concept. The device uses the same principles as a linear induction motor in which the interaction between a travelling magnetic field and a conducting surface produces eddy currents that leads to the generation of a thrust force and can result in movement over a metallic surface. This can benefit the inspection of metallic surfaces based on the driving platform provided by the induction planar actuator. Equations of the magnetic and electric fields are presented and, by means of these equations, the forces involved were calculated. The behaviour of thrust and normal forces was analysed through the equations and by numerical models, and compared with the results obtained by measurements on a device prototype built in the laboratory as part of the study. With relation to the surface under inspection that forms the secondary, three cases were analysed: (1) a double-layered secondary formed by aluminium and ferromagnetic slabs; (2) a single aluminium layer and (3) a single ferromagnetic layer. Theoretical and measured values of thrust and normal forces showed good correlation.
机译:本文提出了对感应平面致动器概念的研究。该设备使用与线性感应电动机相同的原理,在线性感应电动机中,行进磁场和导电表面之间的相互作用产生涡流,该涡流导致推力的产生并可能导致在金属表面上移动。这可以有益于基于感应平面致动器提供的驱动平台的金属表面检查。给出了磁场和电场方程,并借助这些方程计算了所涉及的力。通过方程式和数值模型分析了推力和法向力的行为,并将其与通过在实验室中构建的设备原型进行测量而获得的结果进行了比较,作为研究的一部分。对于形成二次表面的被检查表面,分析了三种情况:(1)由铝和铁磁板形成的双层二次表面; (2)一个铝层和(3)一个铁磁层。推力和法向力的理论值和测量值显示出良好的相关性。

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