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海洋平台桩腿防腐层修复三层包覆防护结构研究与应用 被引量:6
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作者 张彦军 韩文礼 +3 位作者 张贻刚 杨耀辉 解蓓蓓 徐忠苹 《表面技术》 EI CAS CSCD 北大核心 2016年第11期123-128,共6页
目的研究开发一种可在海水环境中施工的海洋平台桩腿飞溅区防腐层修复体系——三层包覆结构及其施工方法。方法通过材料研究及产品生产研究和性能评价及现场应用及检测,开发出满足防腐层修复的材料体系和施工方法。结果该三层包覆防护... 目的研究开发一种可在海水环境中施工的海洋平台桩腿飞溅区防腐层修复体系——三层包覆结构及其施工方法。方法通过材料研究及产品生产研究和性能评价及现场应用及检测,开发出满足防腐层修复的材料体系和施工方法。结果该三层包覆防护结构的自憎水密封油的憎水率达到98.4%,防腐带的拉伸强度达18.6 MPa,断裂伸长率达21.6%;防护套的拉伸强度达31.8 MPa,断裂伸长率达760%,抗紫外光时间达3000 h,三层包覆防护体系能够耐渤海湾百年一遇的冰冲击。结论研制的三层包覆防护材料能满足海洋环境的施工和防腐要求,同时满足海洋平台飞溅区桩腿防腐蚀和抗冰冲击的要求,是一种海洋平台桩腿及其他类似构筑物飞溅区腐蚀防护效果很好的修复技术。 展开更多
关键词 桩腿 防腐层 修复 自憎水 三层包覆防护结构 抗冰冲击
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n-Octadecanethiol Self-Assembled Monolayer Coating with Microscopic Roughness for Dropwise Condensation of Steam 被引量:2
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作者 Liang CHEN Shiqiang LIANG +3 位作者 Runsheng YAN Yanjun CHENG Xiulan HUA Shuling CHEN 《Journal of Thermal Science》 SCIE EI CAS CSCD 2009年第2期160-165,共6页
Here we presented a novel technology to achieve a Super-hydrophobic coating with microscopic roughness on copper surface. First, make a layer of verdigris grow on the fresh pure copper surface. Gain it by exposing the... Here we presented a novel technology to achieve a Super-hydrophobic coating with microscopic roughness on copper surface. First, make a layer of verdigris grow on the fresh pure copper surface. Gain it by exposing the copper to air and the mist of acetic acid solution. The green coating is a mixture of basic copper(II) carbonate and copper(II) acetate. Second heat the coating and make it decompose to CuO. Lastly, form an n-octadecanethiol self-assembled monolayers coating on the outermost surface. Contact angle test, scanning electron microscope analysis and electrochemical testing were carded out to characterize the surface, and a heat transfer experiment for dropwise condensation of steam was performed also. Results show that the modified surface bears a few Super-hydrophobic features, the static contact angle is higher than that in literatures, reaching 153.1±1.7°. The microscopic roughness can be seen in SEM images, differing much from H2O2 etched surface and bare copper surface. The condensation of steam on the surface is a typical form of dropwise condensation, in the measured range of temperature difference, under 0.1 MPa, the average convection heat transfer coefficients of the vertical surface are 1.7-2.1 times for those of film condensation. At the same time, the inhibition efficiency of surface is improved to some extent comparing with the same kind of SAMs, which suggests that the lifetime of maintenance dropwise condensation would have the possibility to surpass the existing record. 展开更多
关键词 Dropwise condensation Self-assembled monolayers Microscopic roughness Super-hydrophobic surface Heat transfer coefficient
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