首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part J. Journal of engineering tribology >Dynamic performance of a thin film temperature sensor in a lubricated contact
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Dynamic performance of a thin film temperature sensor in a lubricated contact

机译:薄膜温度传感器在润滑触点中的动态性能

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摘要

A thin film temperature sensor integrated onto mechanical component surface is promising for real-time machine condition monitoring. In this article, a one-dimensional heat conduction model has been developed to study the dynamic performance of the thin film sensor designed for monitoring the temperature distribution in an elastohydrodynamic lubrication contact. A control volume approach was used to numerically analyse the effects of sensor film thickness (from 0.1 to 100 μm), sensing materials, and substrate materials on the transient time response of the thin film sensor. The numerical model was evaluated by an analytical solution in a semi-infinite domain. The sensor time constant is obtained on the basis of a constant heat load and sensor sensitivity is studied when a typical elastohydrodynamic pressure distribution in a lubricated contact is applied. Faster response time and short time delay of a thin film sensor are expected in a higher conductivity of substrate. It is also clear that the response time decreases with increasing sensor film thickness and with increasing conductivity of the substrate. The results show that when the thickness of the sensor is < 1μm, the sensor is feasible to capture transient temperature profile in real time for machine health monitoring under various operating conditions. One of the experimental validations given in this article has proven the robustness of the developed model.
机译:集成在机械部件表面上的薄膜温度传感器有望用于实时机器状态监控。在本文中,已经开发了一维热传导模型来研究薄膜传感器的动态性能,该薄膜传感器旨在监控弹性流体动力润滑接触中的温度分布。使用控制体积方法来数值分析传感器膜厚度(从0.1到100μm),传感材料和基板材料对薄膜传感器的瞬态时间响应的影响。通过半无限域中的解析解评估了数值模型。在恒定的热负荷的基础上获得传感器时间常数,并在施加润滑触点中典型的弹性流体动压力分布时研究传感器的灵敏度。在更高的基板电导率下,薄膜传感器的响应时间更快,延迟时间更短。同样清楚的是,响应时间随着传感器膜厚度的增加和基板电导率的增加而减少。结果表明,当传感器的厚度小于1μm时,该传感器可实时捕获瞬态温度曲线,以在各种操作条件下监控机器的健康状况。本文给出的一项实验验证已经证明了所开发模型的鲁棒性。

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