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Carburization behavior under the pits induced by metal dusting in 304L and 347 stainless steels

机译:304L和347不锈钢中金属粉尘引起的坑底渗碳行为

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The metal dusting behavior of Type 304L and 347 stainless steels (SSs) in a flowing mixed CO/H2/H2O gas stream at 600 ℃ was investigated. After exposure in a 35% CO + 60% H_2 + 5% H_2O gas for 500 h, large pits were formed on both steel surfaces. The aspect ratio of the pits formed in 304L SS was higher than that of the pits formed in 347 SS. The microstructures and chemical compositions of the reaction products and those of the substrate under the pits were examined by using a scanning electron microscope (SEM) combined with an energy dispersive spectrometer (EDS). A Cr-depleted zone containing voids was formed on the outer surface just beneath the pit. Massive matrix carburization and intergranular carbide precipitation were seen for both steels. The experimental results showed that niobium (Nb) could delay the ingress of carbon and retard the metal dusting reaction.
机译:研究了在600℃下流动的CO / H2 / H2O混合气流中304L和347型不锈钢(SSs)的金属喷粉行为。在35%CO + 60%H_2 + 5%H_2O气体中暴露500小时后,两个钢表面都形成了大坑。 304L SS中形成的凹坑的长宽比高于347 SS中形成的凹坑的长宽比。通过使用扫描电子显微镜(SEM)结合能量色散光谱仪(EDS)检查反应产物的化学结构和凹坑底物的化学结构。在凹坑正下方的外表面上形成了一个含铬的含空隙区域。两种钢均出现大量基质渗碳和晶间碳化物沉淀。实验结果表明,铌(Nb)可以延缓碳的进入并延缓金属粉尘的反应。

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