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Phase change and cooling characteristics of microjets measured using microcantilever heaters

机译:使用微悬臂梁加热器测量的微射流的相变和冷却特性

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摘要

This paper reports novel microcantilever metrology tools to investigate free microjets emanating from a micromachined nozzle of diameter 10 mu m. Microcantilevers with an integrated resistive heater-thermometer were used to study microjet cooling and phase change characteristics. While the microcantilever heater was aligned to and impinged upon by hydrocarbon microjets, the heater temperature was modulated by a constant voltage source. Successive heating and cooling cycles captured the microjet phase change hysteresis properties. When the microcantilever heater temperature was controlled, it was possible to construct a full boiling curve. Measurements were made on microjets of butane, hexane, and octane. The convective heat fluxes accompanied by microjet impingement boiling were 2.9-7.6 kW/cm(2) for heater temperatures of 25-350 degrees C. Overall, the techniques reported herein show promise for characterizing microscale jet flows. (C) 2008 Elsevier B.V. All rights reserved.
机译:本文报道了新颖的微悬臂梁计量工具,以研究由直径为10微米的微加工喷嘴发出的自由微喷射。具有集成的电阻式加热器-温度计的微悬臂用于研究微射流冷却和相变特性。当微悬臂加热器对准并受到烃微射流撞击时,加热器温度由恒定电压源调节。连续的加热和冷却循环捕获了微喷射相变磁滞特性。当控制微悬臂梁加热器的温度时,可以绘制出完整的沸腾曲线。在丁烷,己烷和辛烷的微型喷嘴上进行测量。在25-350摄氏度的加热器温度下,伴随微射流冲击沸腾的对流热通量为2.9-7.6 kW / cm(2)。总体而言,本文报道的技术显示出表征微尺度射流的前景。 (C)2008 Elsevier B.V.保留所有权利。

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