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Motion behaviour of magneto-sensitive elastomers controlled by an external magnetic field for sensor applications

机译:受外部磁场控制的磁敏弹性体的运动行为,用于传感器应用

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The development of sensor systems with a complex adaptive regulation of the operating sensitivity and behaviour is an actual scientific and technical challenge. Smart materials like magneto-sensitive elastomers (MSE) are seen as one potential solution for this problem, since their mechanical properties may be controlled by external magnetic fields. The present paper deals with the investigation of elastic and damping properties of MSE containing magnetically soft particles under the influence of a uniform magnetic field. Based on the measurement of the first eigenfrequency of free bending vibrations of a fixed beam, the effective Young's modulus is evaluated theoretically and also numerically using Finite Element Method. It is shown that this parameter, as well as the first eigenfrequency of the beam, increases monotonically with the magnitude of the applied magnetic field. The results are aimed to develop an acceleration sensor with adaptive magnetically controllable sensitivity range for the detection of external mechanical stimuli of the environment.
机译:具有对操作灵敏度和行为的复杂自适应调节的传感器系统的开发是实际的科学和技术挑战。诸如磁敏弹性体(MSE)之类的智能材料被视为解决此问题的一种潜在方法,因为它们的机械性能可能受到外部磁场的控制。本文研究了在均匀磁场的作用下,含磁性软颗粒的MSE的弹性和阻尼性能。基于对固定梁自由弯曲振动的第一本征频率的测量,理论上并使用有限元方法对有效杨氏模量进行了数值评估。结果表明,该参数以及电子束的第一本征频率随所施加磁场的大小单调增加。该结果旨在开发一种具有自适应磁控灵敏度范围的加速度传感器,用于检测环境的外部机械刺激。

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