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The Use of Model Alloys to Develop Corrosion-Resistant Stainless Steels

机译:使用模型合金开发耐腐蚀不锈钢

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The goal of this program is to develop a cost-competitive replacement for type 347 stainless steel with better high temperature corrosion and creep resistance. Several series of model alloys have been fabricated in order to better understand the role of alloy composition in resisting accelerated corrosion attack due to the presence of water vapor. Alloys were tested at 650°-800℃ for 500-5000h in air plus 10 vol.% water vapor. The first series examined Fe-Cr-Ni ternary alloys and found that increased Ni contents improved corrosion resistance, as did decreased grain size. A second series of Fe-16Cr alloys with minor alloy additions was produced to determine if any minor alloy additions might provide improved resistance similar to reactive element additions at higher temperatures. Beneficial effects were observed for additions of Mn, Si, TiB_2 and NbC, but individual additions of Al, Ti, La and Y showed little benefit. A third series with austenitic alloys focused on Mn and Si additions to alloys with 16-20%Cr and 15-20%Ni. Alloys based on Fe-20Cr-20Ni showed the most promise from this testing. The final stage of alloy development will explore alloy additions and processing variations to improve the creep strength for this application.
机译:该计划的目标是开发一种具有成本竞争力的替代品,以替代具有更好的高温腐蚀和抗蠕变性的347型不锈钢。为了更好地理解合金成分在抵抗由于水蒸气的存在而导致的加速腐蚀侵蚀中的作用,已经制造了几种系列的模型合金。合金在650°-800℃的空气中加500%(体积)的水蒸气在500-5000h下进行测试。第一个系列检查了Fe-Cr-Ni三元合金,发现增加的Ni含量可以改善耐腐蚀性,减小的晶粒尺寸也可以。生产了第二系列的带有少量合金添加物的Fe-16Cr合金,以确定是否有任何少量的合金添加物可以提供与更高温度下的反应性元素添加物相似的改进的电阻。观察到Mn,Si,TiB_2和NbC的有益作用,但是单独添加Al,Ti,La和Y几乎没有好处。奥氏体合金的第三个系列着重于向含16-20%Cr和15-20%Ni的合金中添加Mn和Si。基于Fe-20Cr-20Ni的合金显示了该测试的最大前景。合金开发的最后阶段将探索合金的添加和工艺变化,以提高该应用的蠕变强度。

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