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High temperature ductility and corrosion resistance property of novel tin-bearing economic 17Cr-xSn ferritic stainless steel

机译:新型含锡经济型17Cr-xSn铁素体不锈钢的高温延展性和耐蚀性能

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摘要

A new family of resource-saving ferritic stainless steels, with the composition of 17Cr-xSn (x=0.1-0.4 wt-%) have been developed by examining the effect of Sn on high temperature ductility, the corrosion resistance properties and the passivation film structure. The results show that tin-bearing stainless steel obtains superb plasticity and there is no evidence of tin-containing precipitation in the fracture facets. High temperature brittleness at about 900 degrees C is caused by the carbide or nitride precipitation along the grain boundary or inside. The precipitation in the grain boundary hinders the free movement of dislocation, thus increasing the strength and decreasing the toughness of steel. The polarisation curves and weight loss measurement indicate that the corrosion resistance of stainless steel is improved by adding small amount of Sn. The existence of Sn in passivation film suppresses the anodic dissolution of steels during long exposure to the aggressive solution, and the dense rust layer is thick enough to protect the steel and strongly inhabit the ingress of the solution.
机译:通过研究锡对高温延展性,耐腐蚀性和钝化膜的影响,开发了一种新型的资源节约型铁素体不锈钢,其成分为17Cr-xSn(x = 0.1-0.4 wt-%)。结构体。结果表明,含锡不锈钢具有极好的可塑性,并且在断裂面中没有含锡沉淀的迹象。大约900摄氏度时的高温脆性是由沿晶界或内部的碳化物或氮化物沉淀引起的。晶界中的沉淀阻碍了位错的自由运动,从而增加了强度并降低了钢的韧性。极化曲线和失重测量表明,通过添加少量的Sn可以提高不锈钢的耐腐蚀性。钝化膜中Sn的存在会抑制钢在长时间暴露于侵蚀性溶液期间的阳极溶解,并且致密的锈层足够厚,可以保护钢并强烈占据溶液的入口。

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