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作 者:行九晖 张蔷 王珂 陈灼宁 张帅 张玉霞 刘源 林斌 陈有为 冯景飞 XING Jiu-hui;ZHANG Qiang;WANG Ke;CHEN Zhuo-ning;ZHANG Shuai;ZHANG Yu-xia;LIU Yuan;LIN Bin;CHEN You-wei;FENG Jing-fei(South China Branch,CGN New Energy Shenzhen Co.,Ltd.,Shenzhen 518000,Guangdong,China;Shenzhen Guoneng Chentai Technology Co.,Ltd.,Shenzhen 518000,Guangdong,China)
机构地区:[1]中广核新能源华南分公司,广东深圳518000 [2]深圳国能宸泰科技有限公司,广东深圳518000
出 处:《现代涂料与涂装》2024年第8期40-42,53,共4页Modern Paint & Finishing
摘 要:本研究旨在解决风机塔筒锈蚀导致的故障问题,降低人工运维成本并提高安全性。为此,研究人员开发了一种风电塔筒防腐维修智能作业装备,并对其喷涂模块的自动喷涂性能进行了研究。研究结合了风机塔筒的腐蚀环境特点和装备喷涂特性,进行了一系列室内加速腐蚀测试,包括紫外老化、耐盐雾、耐碱性、耐水性等方面的评估。通过这些测试,研究人员评估了常用风电防腐涂料体系的性能,并选择了适用于风电塔筒防腐维修自动喷涂模块的涂料体系。这些选择旨在满足人工喷涂要求,并适应塔筒常规环境下的防腐维修施工条件。This study aims to address the issue of failures caused by corrosion in wind turbine towers,with the goals of reducing manual maintenance costs and improving safety.To achieve this,researchers have developed an intelligent equipment for corrosion protection and maintenance of wind turbine towers,and conducted research on the automatic spray performance of its coating module.The study combines the corrosion environment characteristics of wind turbine towers with the coating properties of the equipment,and carries out a series of indoor accelerated corrosion tests,including evaluations of UV aging,salt fog resistance,alkali resistance,and water resistance.Through these tests,the researchers evaluated the performance of commonly used anti-corrosion coating systems in wind turbines and selected a coating system suitable for the automatic spray module used in the corrosion protection and maintenance of wind turbine towers.These choices aim to meet the requirements of manual spraying and adapt to the conditions of corrosion protection and maintenance in typical tower environments.
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