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首页> 外文期刊>材料と環境 >Effect of tantalum addition on pitting corrosion behavior of super duplex stainless steels - Development of high corrosion resistant duplex stainless steels by inclusion control (1)
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Effect of tantalum addition on pitting corrosion behavior of super duplex stainless steels - Development of high corrosion resistant duplex stainless steels by inclusion control (1)

机译:钽添加对超级双相不锈钢点蚀行为的影响 - 通过夹杂物控制开发高耐腐蚀双相不锈钢 (1)

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To improve the corrosion resistance of the duplex stainless steels, great efforts have been made to clarify the pitting initiation in order to suppress the pitting corrosion which is one of the most hazardous forms of the stainless steels' failure. In general, manganese sulfide( MnS) is known to act as the pitting initiation in environments containing chloride ions. Thus, the inclusion control is essential for the development of duplex stainless steels with high corrosion resistance. In this study, the effects of the inclusion control by Ta addition on the pitting corrosion resistance of the duplex stainless steels were investigated. The Ta-bearing duplex stainless steels exhibited the remarkably high pitting corrosion resistance compared to that of the duplex stainless steels without Ta. The Ta-bearing duplex stainless steel contains no MnS inclusion but( Ta, Mn)-oxysulfide. This indicates that sulfur is stabilized as( Ta, Mn) -oxysulfide instead of MnS which is the typical pitting initiation. Ta addition to the super duplex stainless steel improved the pitting corrosion resistance because MnS, which acts as a pitting initiation, was modified to the electrochemically-stable Ta-containing inclusions.
机译:为了提高双相不锈钢的耐腐蚀性,为了抑制点蚀,已经做出了巨大的努力来澄清点蚀起始,点蚀是不锈钢失效最危险的形式之一。一般来说,硫化锰(MnS)在含有氯离子的环境中充当点蚀引发物。因此,夹杂物控制对于开发具有高耐腐蚀性的双相不锈钢至关重要。本研究研究了添加Ta控制夹杂物对双相不锈钢抗点蚀性能的影响。与不含钽的双相不锈钢相比,含钽的双相不锈钢表现出非常高的抗点蚀性。含钽的双相不锈钢不含 MnS,但含有 ( Ta, Mn)-氧硫醚。这表明硫稳定为(Ta,Mn)-氧硫化物,而不是典型的点蚀引发的MnS。在超级双相不锈钢中加入钽,提高了抗点蚀性,因为作为点蚀引发剂的 MnS 被改性为电化学稳定的含钽夹杂物。

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