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Heat transfer enhancement in cryogenic quenching process

机译:低温淬火过程中的传热增强

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This paper reports a heat transfer advancement in the cryogenic quenching process. An experiment was performed to evaluate the enhancement of quenching heat transfer by the use of metal tubes with low thermal conductivity coating layers. Four coating thicknesses with various coolant mass flow rates of liquid nitrogen were investigated. The results indicated that the tube inner surface coating greatly enhanced the quenching efficiency. The quenching efficiency was found to increase with increasing number of coating layers, and the efficiency also increased with decreasing mass flow rates. In general, the efficiencies cover a range between 40.6% and 80%. Comparing to the bare surface case, the percentage increase in the quenching efficiency was the minimum at 4.2% for a single coated layer at the highest flow rate and the maximum of 109.1% for four coated layers at the lowest flow rate. The coated tubes could save up to 53% in the amount of cryogen consumption.
机译:本文报告了低温淬火过程中的传热进步。 进行实验以评估通过使用具有低导热涂层的金属管淬火传热的增强。 研究了具有各种冷却剂质量流速的四种涂层厚度的液氮。 结果表明,管内表面涂层大大提高了淬火效率。 发现淬火效率随着越来越多的涂层增加而增加,并且随着质量流量的降低,效率也增加。 一般而言,效率占地40.6%和80%。 比较裸露的表面壳体,淬火效率的百分比增加在最高流速下单个涂层层的最小值为4.2%,并且在最低流速下为四个涂层层的最大值为109.1%。 涂层管可以在低温消耗量的情况下节省高达53%。

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