[1]张青科, 刘 峰, 冯小龙, 等. 高精密蚀刻引线框架用铜合金板带性能要求于发展展望[J]. 热加工工艺, 2020, 49(20): 6-9, 14. Zhang Qingke, Liu Feng, Feng Xiaolong, et al. Performance requirements and development prospect of Cu alloy strip for high precision etching lead frame[J]. Hot Working Technology, 2020, 49(20): 6-9, 14. [2]张专利. 压延铜箔发展现状及市场分析[J]. 有色冶金设计与研究, 2015, 36(4): 36-39, 42. Zhang Zhuanli. Development status and market analysis on rolled copper foil[J]. Nonferrous Metals Engineering and Research, 2015, 36(4): 36-39, 42. [3]李 勇, 王昭东, 马鸣图, 等. 高品质铝合金汽车板预处理气垫炉技术[J]. 中国工程科学, 2014, 16(1): 14-22, 2. Li Yong, Wang Zhaodong, Ma Mingtu, et al. Review and prospect of the air cushion furnace technology for aluminum alloy automotive sheet pre-treatment[J]. Engineering Sciences, 2014, 16(1): 14-22, 2. [4]陈文修, 何英和, 刘非轼, 等. 气垫式金属板带材连续热处理炉内气体动力过程的研究[J]. 中南矿冶金学院学报, 1987(2): 31-36, 116. [5]Hornig K, Blling R, Odenthal H J, et al. Simulation of fluid flow and strip stability in a strip floatation furnace by physical and numerical methods[C]// 6th Thermoprocess Conference, 2003: 1-18. [6]Chang Y B, Moretti P M. Aerodynamic characteristics of pressure-pad air bars[J]. Journal of Applied Mechanics, 2000, 67(1): 177-182. [7]Ozmen Y. Confined impinging twin air jets at high Reynolds numbers[J]. Experimental Thermal and Fluid Science, 2011, 35(2): 355-363. [8]Abdel-Fattah. Numerical and experimental study of turbulent impinging twin-jet flow[J]. Experimental Thermal and Fluid Science, 2007, 31(8): 1061-1072. [9]Attalla M, Maghrabie H M, Specht E. Effect of inclination angle of a pair of air jets on heat transfer into the flat surface[J]. Experimental Thermal and Fluid Science, 2017, 85: 85-94. [10]Miao J M, Wu C Y, Chen P H. Numerical investigation of confined multiple-jet impingement cooling over a flat plate at different crossflow orientaions[J]. Numerical Heat Transfer, 2009, 55(11): 1019-1050. [11]Baydar E, Ozmen Y. An experimental investigation on flow structures of confined and unconfined impinging air jets[J]. Heat and Mass Transfer, 2005, 42(4): 338-346. [12]Afroz F, Sharif M A R. Numerical study of heat transfer from an isothermally heated flat surface due to turbulent twin oblique confined slot-jet impingement[J]. International Journal of Thermal Sciences, 2013, 74: 1-13. [13]Öztekin E, Aydin O, Avcı M. Hydrodynamics of a turbulent slot jet flow impinging on a concave surface[J]. International Communications in Heat and Mass Transfer, 2012, 39(10): 1631-1638. |