首页> 外文期刊>圧力技術 >実石油タンク底板への亜鉛溶射鋼板の適用条件最適化--石油タンク底板の防食技術の開発 第五報
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実石油タンク底板への亜鉛溶射鋼板の適用条件最適化--石油タンク底板の防食技術の開発 第五報

机译:锌喷涂钢板在油箱底板漏油箱底板上的应用。

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摘要

Large efficiency of Zn sprayed steel plate for enhancement corrosion lifetime has been investigated in previous paper. To apply Zn sprayed steel to bottom plate of industrial oil tanks, weld work being essential for building affects metallic condition and corrosion preventive property of Zn layer largely. To avoid detrimental effect of welding, numeric heat input analysis and corrosion test of heat affected zone on Zn sprayed layer was carried out to find optimum utilizing conditions in this study. As a result, it is found that the surface temperature goes above melting point of zinc easily resulting oxidization of outer surface and formation of Fe-Zn alloy layer that are detrimental corrosion. And it is also found that limiting heat input of welding to 0.6kJ/mm at filet welding with 9. 0 mm thickness enables to minimize the damage to the Zn sprayed surface. Based on this finding, corrosion test of Zn sprayed plate with weld, with which heat input control at welding was carried out. Weld sample with the heat input control has shown good corrosion resistance. Based on findings above, building of bottom plate for 30,000k l industrial oil storage tank utilizing Zn sprayed steel plate has been completed successfully.
机译:在前一篇论文中研究了用于增强腐蚀寿命的Zn喷涂钢板的大效率。为了将Zn喷涂钢涂抹在工业油箱的底板上,焊接工作对于建筑物至关重要,影响Zn层的金属状况和腐蚀预防性。为避免焊接的不利影响,进行Zn喷涂层上热影响区的数值热输入分析和腐蚀试验,以找到本研究中的优化条件。结果,发现表面温度远高于锌的熔点容易导致外表面的氧化和具有不利腐蚀的Fe-Zn合金层的形成。并且还发现,在滤芯下将焊接的热输入限制为0.6kJ / mm,厚度为9. 0 mm厚度,使能最小化Zn喷涂表面的损坏。基于该发现,采用焊接Zn喷涂板的腐蚀试验,进行了焊接热输入控制。焊接样品与热输入控制显示出良好的耐腐蚀性。基于上述研究结果,成功完成了利用Zn喷涂钢板的30,000k L工业储油罐的底板建设。

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