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海水淡化用薄壁卷焊钛管传热及耐蚀性能
引用本文:吕宏卿,王鑫,刘洪锟,邢玉雷,韩旭,齐春华,徐克,李华.海水淡化用薄壁卷焊钛管传热及耐蚀性能[J].化工进展,2019,38(8):3556-3561.
作者姓名:吕宏卿  王鑫  刘洪锟  邢玉雷  韩旭  齐春华  徐克  李华
作者单位:自然资源部天津海水淡化与综合利用研究所,天津,300192;张家港华裕有色金属材料有限公司,江苏张家港,215627
基金项目:“十三五”国家重点研发计划专项(2016YFB0301205);“十三五”国家重点研发计划专项(2016YFE0102400);天津市科技支撑计划重点项目(17YFZCSF00910)
摘    要:采用TIG自动卷焊工艺制备了?22mm×0.4mm规格的薄壁卷焊TA2传热管,借助低温多效蒸馏海水淡化中试平台开展了薄壁卷焊钛管在海水应用环境中的传热及耐蚀性能实验研究。采用失重法分析评价了其耐腐蚀性能,并与标准规格?22mm×0.5mm无缝钛管在耐腐蚀性能、投资经济性方面进行了对比。结果表明:在低温多效海水淡化实际应用条件下,薄壁卷焊钛管总传热系数可达3400W/(m2·K)以上;在降膜蒸发喷淋冲刷及浓海水高温高湿腐蚀环境中,薄壁卷焊钛管与无缝钛管具有同等优良的耐海水腐蚀性能,年平均腐蚀速率小于0.0003mm/a,焊缝处也未发现点蚀现象,能满足实际海水淡化工程对材料的应用要求。相比于传统无缝钛管,同等传热面积条件下,薄壁卷焊钛管能使海水淡化传热材料投资降低25%以上,在海水淡化、石油化工等领域应用前景广阔。

关 键 词:海水淡化  薄壁卷焊钛管  传热系数  耐腐蚀性  经济性分析
收稿时间:2018-11-20

Heat transfer and corrosion resistance experiments of thin-wallcurling-welding titanium tube for desalination
Hongqing Lü,Xin WANG,Hongkun LIU,Yulei XING,Xu HAN,Chunhua QI,Ke XU,Hua LI.Heat transfer and corrosion resistance experiments of thin-wallcurling-welding titanium tube for desalination[J].Chemical Industry and Engineering Progress,2019,38(8):3556-3561.
Authors:Hongqing LÜ  Xin WANG  Hongkun LIU  Yulei XING  Xu HAN  Chunhua QI  Ke XU  Hua LI
Affiliation:1. The Institute of Seawater Desalination & Multipurpose Utilization, MNR, Tianjin 300192, China
2. Zhangjiagang Huayu Nonferrous Metal Material Company Limited, Zhangjiagang 215627, Jiangsu, China
Abstract:One type of ?22mm×0.4mm thin-wall welded titanium tube was developed using Tungsten Inert Gas (TIG) curling-welding technology. Heat transfer and corrosion resistance experiments on this kind of tube were conducted in the circumstance of practical desalination operating conditions based on the LT-MED pilot scale test platform. Weight loss method was adopted to evaluate the resistance to seawater corrosion of titanium tube. The ?22mm×0.4mm thin-wall welded titanium tube was compared with ?22mm×0.5mm rolled seamless titanium tube in terms of corrosion resistance and service economy. The results indicated that the total heat transfer coefficient of falling film evaporator with thin-wall welded titanium tube would be over 3400W/(m2·K) in the LT-MED experimental conditions, and the thin-wall welded titanium tube had the same excellent corrosion resistance as rolled seamless titanium tube in the operating environment of falling film flow of seawater and high temperature and high humidity corrosion of brine. The annual mean corrosion rate was less than 0.0003mm/a. No pitting corrosion was found at welded seams during the testing process. The utilization requirements validity of thin-wall welded titanium tube for desalination was verified. Comparing with the usual rolled seamless titanium tube, the spread application of thin-wall curling-welding titanium tube in the LT-MED device can greatly decrease investment cost of heat transfer tube by more than 25% under the same heat transfer area. The research results show that thin-wall welded titanium tube have an extensive application prospect in the field of thermal desalination and petrochemical engineering.
Keywords:desalination  thin-wall welded titanium tube  heat transfer coefficient  corrosion resistance  economic analysis  
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