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Quantities Affecting the Behavior of Vibrational Magnetostrictive Transducers

机译:影响振动磁致伸缩换能器行为的数量

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Through the conversion from mechanical to electrical energy it is possible to monitor a vibrating machine of any kind by exploiting the mechanical energy produced by the vibration. To this end, one can use direct force devices inserted in the supports or in the kinematic chain of the vibrating contrivance or cantilever devices with seismic masses. Regarding the devices of the first type, the maximization of the electrical output depends on various parameters. This paper, through a combined experimental and modeling approach, analyzes the behavior of a transducer based on a rod of Terfenol-D. Many parameters are analyzed, such as the frequency of the vibration, amplitude of the force transmitted by the vibration, characteristics of the coupled electrical circuit, magnetic, and mechanical bias. It is shown how the output power and electrical current are strongly influenced by the mechanical and magnetic bias. In addition, avoiding tensile stresses, this paper shows how the maximum output power is obtained when the mechanical bias is close to the amplitude of the dynamic force imposed by the vibration.
机译:通过从机械能转换为电能,可以利用振动产生的机械能来监视任何类型的振动机。为此,可以使用插入到振动装置的支架或运动链中的直接作用力装置或具有地震质量的悬臂装置。关于第一类型的设备,电输出的最大化取决于各种参数。本文通过组合的实验和建模方法,分析了基于Terfenol-D杆的传感器的行为。分析了许多参数,例如振动的频率,由振动传递的力的幅度,耦合的电路的特性,磁和机械偏置。它显示了输出功率和电流如何受到机械和磁偏置的强烈影响。此外,为避免拉伸应力,本文说明了当机械偏置接近振动所施加的动态力幅度时,如何获得最大输出功率。

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