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Resonant operation and cycle work from a MEMS-based micro-heat engine

机译:基于MEMS的微热引擎的共振运行和循环工作

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摘要

The documentation of a new engine thermodynamic cycle on the micro-scale is presented. This new cycle is the result of resonant operation and cycle work production from a MEMS-based micro-heat engine. The engine is constructed of two thin membranes surrounding a cavity filled with working fluid. This new thermodynamic cycle is shown to include nearly constant volume pressure increase, expansion, heat rejection, and compression components. A thermal switch is integrated with the micro-engine to control heat rejection. The micro-engine is shown to produce up to 6.7 μW of cyclic mechanical power when operated on this cycle. Micro-engine natural frequency is shown to vary from 90 to 140 Hz. The Micro-engine is shown to operate across a low temperature gradient of 1.5°C.
机译:介绍了新的微型发动机热力学循环的文档。这个新的循环是基于MEMS的微热引擎进行共振操作和产生循环功的结果。该发动机由围绕工作腔充满的两个薄膜构成。该新的热力学循环显示出包括几乎恒定的体积压力增加,膨胀,散热和压缩成分。热开关与微引擎集成在一起以控制散热。当在该循环上运行时,微型发动机可产生高达6.7μW的循环机械功率。微型发动机的固有频率显示为从90到140 Hz。所示的微型发动机可在1.5°C的低温梯度下运行。

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  • 来源
    《Microsystem Technologies》 |2009年第3期|485-492|共8页
  • 作者

    L. W. Weiss;

  • 作者单位

    Louisiana Tech University Institute for Micromanufacturing 911 Hergot Ave Ruston LA 71272 USA;

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  • 原文格式 PDF
  • 正文语种 eng
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