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Super Stainless Steel Welded Tubing Solutions: An Alternative To Titanium Welded Tubing For Seawater-Cooled Heat Exchangers?

机译:超级不锈钢焊接管材解决方案:钛焊管替代品,用于海水冷却热交换器吗?

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Thanks to its outstanding resistance to general and localized corrosion attack properties, Titanium has been successfully established as the commonly used material for seawater-cooled heat exchanger tubing, be it for power plants' surface condensers, thermal desalination plants' heat exchangers or heat exchangers used in the chemical and petrochemical processing industry. In the current material market context in which Titanium price has increased significantly, engineering companies and end-users have shown an increasing interest for more cost-effective alternative solutions using what are called super alloys which are highly alloyed stainless steels showing a far better corrosion resistance than conventional stainless steels. In addition to Titanium, this paper will focus on six different super stainless steel alloys which may be considered alternative solutions to Titanium for seawater-cooled applications: UNS S31254, N08367 and S34565 super austenitic alloys, UNS S44735 and UNS S44660 super-ferritic alloys, and S32750 super-duplex alloy. Taking power plants' condensers as an example, the paper reviews both mechanical and corrosion properties for ranking the seven different materials. Both standardized ASTM and electrochemical tests in artificial seawater have been carried out on welded tubes in order to rank the different grade materials according to their pitting and crevice corrosion resistance.
机译:由于其一般的和局部腐蚀侵袭性质优秀性,钛已经成功地建立作为用于海水冷却的热交换器管道的常用的材料,无论是对于发电厂表面冷凝器,热脱盐植物的使用的热交换器或热交换器在化学和石化加工行业。在其中钛价格显著上升,工程商和最终用户已经显示了使用所谓的这些高合金不锈钢呈现出更好的耐腐蚀性超合金更具成本效益的替代解决方案的兴趣日益增加目前材料市场背景比传统的不锈钢。除了钛,本文将集中在其可被视为用于海水冷却的应用中钛的替代解决方案六个不同的超级不锈钢合金:UNS S31254,N08367和S34565超级奥氏体合金,UNS S44735和UNS S44660超级铁素体合金,和S32750超级双相合金。以发电厂冷凝器作为一个例子,本文的评价进行排名的七个不同的材料的机械和腐蚀特性。两个标准化的ASTM和电化学测试在人工海水中已经根据他们的点蚀和缝隙腐蚀性,以便被上进行焊接管到秩不同等级的材料。

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