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QUALIFICATION OF LASER WELDED HIGH PERFORMANCE S44660 FERRITIC STAINLESS STEEL FOR CONDENSER TUBE APPLICATIONS

机译:激光焊接高性能S44660铁素体不锈钢的资格,用于冷凝器管应用

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The laser tube welding process has for the first time been used to produce power plant steam condenser tubing in the high performance ferritic stainless steel grade UNS S44660. This material has traditionally been produced as welded tubing by the gas tungsten-arc welding process for use in seawater and other severe cooling water environments. To verify the corrosion resistance of this new product, corrosion tests have been conducted on production tubing to compare the traditional and new welding processes. The acidified ferric chloride test was used for evaluation because it is a meaningful aggressive test capable of measuring resistance to localized pitting corrosion, the most common potential failure mode for stainless steels used in cooling water environments. Pitting tests conducted over a range of temperatures produced a critical pitting temperature of 65°C for laser welded-annealed tube. This critical pitting temperature was demonstrated to be equal to that of as-produced S44660 sheet material or that of gas tungsten-arc produced tubing. The tubing met all other metallurgical and mechanical property quality requirements. When pitting did occur it exhibited no preference for initiation at welds. Thus, laser welded, high performance stainless condenser tubing should be fully capable of providing good performance in severe cooling water environments.
机译:激光管焊接工艺首次用于生产高性能铁素体不锈钢等级UNS S44660中的发电厂蒸汽冷凝器管。该材料传统上由气体钨电弧焊接工艺作为焊接管生产,用于海水和其他严苛的冷却水环境。为了验证这款新产品的耐腐蚀性,还在生产管道上进行了腐蚀试验,以比较传统和新的焊接过程。酸化的氯化铁试验用于评价,因为它是一种有意义的攻击性测试,能够测量抵抗局部点蚀腐蚀,是冷却水环境中使用的不锈钢的最常见的潜在故障模式。在一系列温度范围内进行的点蚀测试产生了激光焊接退火管65℃的临界蚀地温度。该关键点蚀温度被证明是等于原制的S44660片材或气体钨弧产生的管道的抗螺杆的等于。管道满足了所有其他冶金和机械性能质量要求。当发生点点时,它表现出在焊缝开始的偏好。因此,激光焊接,高性能不锈钢冷凝器管应完全能够在严重的冷却水环境中提供良好的性能。

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