Chloride-induced stress corrosion cracking of powder metallurgy duplex stainless steels

被引:39
作者
Laitinen, A
Hanninen, H
机构
[1] Helsinki University of Technology, Laboratory of Engineering Materials, FIN-02150, Espoo
关键词
calcium chloride; copper; corrosion resistance; duplex stainless steels; isostatic pressing; nitrogen; phases; pitting corrosion; powder metallurgy; stress corrosion cracking;
D O I
10.5006/1.3293641
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The chloride-induced stress corrosion cracking (SCC) resistance of nitrogen-alloyed, powder metallurgically (P/M) produced and hot isostatically pressed (HIP) duplex stainless steels (DSS) was Investigated and compared to the SCC resistance of two commercial wrought (forged) DSS. Constant-strain (deflection) SCC tests with four-point, loaded-bend specimens were performed in aerated 50 wt% calcium chloride (CaCl2) solution at 100 degrees C with pH = 6.5 to 7.0. The pitting corrosion resistance index value (PREN) was not a suitable parameter to predict SCC resistance of the investigated DSS. Instead of pitting corrosion, selective corrosion of the austenite or ferrite phases seemed to determine the SCC resistance of each material. Selective corrosion was not the primary cause for failure, but it assisted the initiation and growth of stress corrosion cracks. Selective corrosion was noticed in all of the investigated DSS. The corroding phase, austenite or ferrite, was dependent on the material. High copper content in the specific material slightly lowered the stress limit at which stress corrosion cracks started to grow in the used test solution. The SCC resistance of P/M-HIP DSS was as good as Me SCC resistance of forged DSS. The banded microstructure of forged DSS led to a directional selective corrosion attack. The corrosion grooves were ideal sites for initiation of sec. Because of this phenomenon, the homogeneous microstructure of P/M-HIP DSS showed clear advantages over the banded microstructure of forged DSS.
引用
收藏
页码:295 / 306
页数:12
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