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电弧喷涂长效防腐新技术在煤矿立井建设中的应用及前景展望
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作者 林祥 《煤矿设计》 北大核心 1996年第6期74-75,共2页
电弧喷涂长效防腐新技术在煤矿立井建设中的应用及前景展望中国矿业大学林祥煤矿立井井筒装备的金属构件,长期处于恶劣的腐蚀环境,给煤矿安全生产带来威胁,经济上也造成巨大损失。据有关资料介绍,井筒金属构件年平均深度腐蚀率为0... 电弧喷涂长效防腐新技术在煤矿立井建设中的应用及前景展望中国矿业大学林祥煤矿立井井筒装备的金属构件,长期处于恶劣的腐蚀环境,给煤矿安全生产带来威胁,经济上也造成巨大损失。据有关资料介绍,井筒金属构件年平均深度腐蚀率为0.7~0.5mm,平均耐蚀寿命为1... 展开更多
关键词 煤矿 井筒装备 防腐 电弧喷涂 油漆 热浸锌涂层
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A Study of the Influence of Air-knife Tilting on Coating Thickness in Hot-dip Galvanizing 被引量:5
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作者 Tae-Seok CHO Young-Doo KWON Soon-Bum KWON 《Journal of Thermal Science》 SCIE EI CAS CSCD 2009年第3期262-267,共6页
Gas wiping is a decisive operation in hot-dip galvanizing process. In special, it has a crucial influence on the thickness and uniformity in coating film, but may be subsequently responsible for the problem of splashi... Gas wiping is a decisive operation in hot-dip galvanizing process. In special, it has a crucial influence on the thickness and uniformity in coating film, but may be subsequently responsible for the problem of splashing. The progress of industry demands continuously the reduction of production costs which may relate directly with the increase of coating speed, and the speed up of coating results in the increase of stagnation pressure in gas wiping system in final. It is known that the increase of stagnation pressure may accompany a harmful problem of splashing in general. Together with these, also, from the view point of energy consumption, it is necessary to design a nozzle optimally. And there is known that the downward tilting of nozzle using in air knife system is effective to prevent in somewhat the harmful problem of splashing. In these connections, first, we design a nozzle with constant expansion rate. Next, for the case of actual coating conditions in field, the effects of tilting of the constant expansion rate nozzle are investigated by numerical analysis. Under the present numerical conditions, it was turned out that the nozzle of constant expansion rate of p = having a downward jet angle of 5^0 is the most effective to diminish the onset of splashing, while the influence of small tilting of the nozzle on impinging wall pres- sure itself is not so large. 展开更多
关键词 Air-knife Constant expansion rate nozzle Impinging pressure Wall shear stress Hot-dip galvanizing Coating thickness SPLASHING
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