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Delay of wetting propagation during jet impingement quenching for a high temperature surface

机译:喷射冲击淬火过程中高温表面的润湿传播延迟

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Transient heat transfer has been investigated experimentally with a subcooled water jet during quenching of hot cylindrical blocks made of copper, brass and steel for initial surface temperatures from 250 to 400℃. The jet velocity was from 3 to 15 m/s and jet subcooling from 5 to 80 K with a jet diameter of 2 mm. When the jet strikes the hot surface, the wetting front becomes stagnant for a certain period of time in a small central region before wetting the entire surface. This wetting delay may be described as the resident time which is a strong function of block material and jet subcooling and also a function of initial block temperature and jet velocity. New correlations for the resident time and the surface temperature at the resident time at the wetting front have been proposed.
机译:已经对由铜,黄铜和钢制成的圆柱形圆柱体在初始表面温度为250至400℃的淬火过程中使用过冷喷水进行了瞬态传热实验。射流速度为3至15 m / s,射流过冷度为5至80 K,射流直径为2 mm。当射流撞击热表面时,在润湿整个表面之前,在较小的中央区域中,润湿前沿会在一段时间内停滞。该润湿延迟可被描述为停留时间,其是块材料和射流过冷的强烈函数,并且也是块的初始温度和射流速度的函数。已经提出了对于停留时间和润湿时间处的停留时间的表面温度的新的相关性。

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