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The Influence of Substrate Stiffness on the Performance of a Magnetoelastic Bilayer Gas Flow Sensor

机译:基板刚度对磁弹性双层气体流量传感器性能的影响

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A bilayer sensor consisting of a stress sensitive magnetoelastic layer mounted onto a support substrate has been developed utilizing its change in curvature when subjected to gas flow forces. Two different materials, aluminium and HAVAR, with various thicknesses were used as the support layer to investigate the effect of bilayer stiffness on sensor sensitivity. Selection of the support layer was also important in determining the location of the neutral bending axis of the composite bilayer ensuring maximum stress sensitivity within the magnetic layer. Change in magnetic permeability proportional to stress was detected by measuring the inductance of a pickup coil positioned around one end of the bilayer sensor. The sensor was subjected to various airflow speeds and delivered consistent signal outputs for flow speeds up to 25 ms while proving to be extremely robust in turbulent conditions.
机译:已经开发出了一种双层传感器,该双层传感器由安装在支撑基板上的应力敏感磁弹性层组成,该双层传感器利用了其在受到气流作用时的曲率变化。两种不同厚度的铝和HAVAR材料用作支撑层,以研究双层刚度对传感器灵敏度的影响。支撑层的选择对于确定复合双层的中性弯曲轴的位置也很重要,以确保磁性层内的最大应力敏感性。通过测量位于双层传感器一端附近的拾波线圈的电感,可以检测出与应力成比例的导磁率变化。该传感器经受了各种气流速度的影响,并提供了一致的信号输出,流速高达25 ms,同时在湍流条件下也表现出极强的耐用性。

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