微型剪应力传感器的热特性分析

Thermal Analysis of a Micro Shear-Stress Sensor

  • 摘要: 研究不同结构、不同热敏元件温度和不同工作介质等情况下剪应力传感器的性能差异. 通过实验和数值模拟相结合的方法对剪应力传感器进行了热特性分析. 数值模拟结果发现:采用热敏元件下部埋置真空空腔的结构,隔热效果最佳;选择相对较高的热敏元件温度和较高热物性系数的工作气体有助于获得较高的灵敏度. 该结果对优化设计微型剪应力传感器具有通用的指导意义.

     

    Abstract: Thermal analysis based on numerical simulation is carried out to study the performance of sensors with various micro-structures, thermal element temperature, and gas working media. The simulation results showed that the heat loss on the substrate is the smallest for the sensor with vacuum cavity. The numerical results also indicate that high thermal element temperature and high gas conduction coefficient are beneficial to the sensitivity.

     

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