Apostoł Marcin, Skubisz Piotr, Adrian Henryk
Faculty of Mechanical Engineering and Robotics, AGH University of Science and Technology in Cracow, 30 Mickiewicz Avenue, 30-059 Cracow, Poland.
Faculty of Metals Engineering and Industrial Computer Science, AGH University of Science and Technology in Cracow, 30 Mickiewicz Avenue, 30-059 Cracow, Poland.
Materials (Basel). 2022 Mar 23;15(7):2366. doi: 10.3390/ma15072366.
The paper presents the method and results of determination of heat transfer coefficient for air-atomized water spray cooling with consideration of infrastructural factors of industrial cooling conveyor, such as effect of accelerated air. The established values of heat transfer coefficient were implemented into a numerical model of cooling line, with special definition of sprayers and the movement of the part subjected to quenching. After quantitative validation on selected samples, the obtained coefficients were used for the solution of the technological problem by means of localized cooling rate enhancement, which forms a case study confirming reliability of the established water spray heat transfer functions and suitability of the determined models for design of thermomechanical controlled processing of complex-geometry parts.
本文介绍了考虑工业冷却输送机基础设施因素(如加速空气的影响)来测定空气雾化水喷雾冷却传热系数的方法和结果。将确定的传热系数值应用于冷却线的数值模型中,对喷雾器和淬火零件的运动进行了特殊定义。在对选定样本进行定量验证后,所得系数用于通过局部提高冷却速率来解决工艺问题,这构成了一个案例研究,证实了所建立的水喷雾传热函数的可靠性以及所确定模型对复杂几何形状零件热机械控制加工设计的适用性。