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Experimental Characterization of Quenching Boiling Phenomena

机译:淬火沸腾现象的实验表征

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Simulation of quenching operations offers a means of determining the mechanisms behind quench-related distortion and residual stress, and provides a tool for developing process improvements. While isothermal flow models can provide qualitative insight, a comprehensive model that includes boiling phenomena is required if a quantitative prediction is desired. To date, however, there is little published data on the characteristics of boiling phenomena in sub-cooled oils.To fill that gap in the data, an experimental facility is being developed to characterize the boiling phenomena relevant to quenching processes. The effect of quenchant velocity, orientation of the surface relative to the flow, and the effect of gravity on parameters such as vapor film thickness, Leidenfrost temperature, nucleation site density, and bubble departure size will be determined. These data will then be used in the development of a comprehensive quenching model. This paper provides an overview of the requirements of that test facility and provides an update on its development.
机译:淬火操作的仿真提供了一种确定与淬火有关的变形和残余应力背后的机制的手段,并提供了改进工艺的工具。虽然等温流动模型可以提供定性见解,但如果需要定量预测,则需要包含沸腾现象的综合模型。然而,迄今为止,关于过冷油沸腾现象的特征的公开数据很少,为了填补数据中的空白,正在开发一种实验设备来表征与淬火过程有关的沸腾现象。将确定淬火剂速度,表面相对于流动的方向以及重力对参数的影响,例如蒸汽膜厚度,莱顿弗罗斯特温度,成核位点密度和气泡离开尺寸。这些数据将用于开发全面的淬火模型。本文概述了该测试设备的要求,并提供了其开发的最新信息。

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