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Corrosion behavior of a precipitation hardened Ni-Cr-Co-Mo alloy under partial slagging coal gasification conditions

机译:沉淀的腐蚀行为硬化Ni-Cr-Co-Mo合金在局部粘接煤气化条件下

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摘要

A mechanistic exposure experiment was performed on the commercially available precipitation hardened VDM (R) alloy C-263 (Nicrofer (R) 5120 CoTi) Ni-Cr-Co-Mo alloy samples (21 wt.-% Cr, 21 wt.-% Co, 6.1 wt.-% Mo, 2.4 wt.-% Ti, 0.7 wt.-% Fe, 0.6 wt.-% Al, 0.6 wt.-% Mn, 0.4 wt.-% Si, 0.2 wt.-% Cu, 0.08 wt.-% C and bal. Ni) at coal gasification pilot plant facilities affiliated with the Institute for Advanced Engineering in Yongin, South Korea. Thermodynamic Ellingham-Pourbaix stability diagrams were constructed to provide insight into the mechanism of the observed corrosion behavior prevailing in the piping materials between the particulate removal unit and water scrubber of the coal gasification pilot plant. The thermodynamic inference on the corrosion mechanism was supplemented with the morphological, compositional and microstructural analyses of the exposed samples using scanning electron microscopy and energy-dispersive X-ray spectroscopy analyses performed on the external and cross-sectional surfaces of the recovered corrosion test samples to comprehensively examine the corrosion scale. Corrosion products with conspicuous spallation were observed after 139 h exposure to the corrosive environment (60 vol.-% CO, 28.4 vol.-% H-2, 2.5 vol.-% CO2, 0.8 vol.-% CH4, 600 ppm H2S, and 110 ppm carbonyl sulfide under 2.005 MPa and 170 degrees C). Scanning electron microscopy and energy-dispersive X-ray spectroscopy positively identified formation of rather extensively peeled-off oxides as corrosion scales on the post-exposure alloy samples, which were attributed to the combined effects of evaporation of hydrated Fe, Al, and Cr chlorides and their subsequent transformation into thin (spalled) oxides. This article contains technical contents on the effects of Cr, Mo, Fe, and Al on the observed corrosion behavior which supplement and cast engineering insight into the previously published MP 2-2018 article on corrosion behavior of Ni-Cr-Mo-Fe alloy in a similar environment.
机译:在市售沉淀硬化Vdm(R)合金C-263(NiCrofer(R)5120coti)Ni-Cr-Co-Mo合金样品(21重量%Cr,21重量%)上进行机械曝光实验。 CO,6.1重量%,%Mo,2.4重量%Ti,0.7重量%Fe,0.6重量%Al,0.6重量%Mn,0.4重量%Si,0.2重量%.-%Cu,0.2重量% ,0.08重量%的C和BAL。NI)在韩国永宁市高级工程研究所附属的煤气化试点厂房。构建热力学椭圆形浇筑稳定性图,以了解在煤气化飞行员植物的颗粒状去除单元和水洗涤器之间的管道材料中所观察到的腐蚀行为的机理。通过在回收的腐蚀试验样品的外部和横截面上进行的扫描电子显微镜和能量分散X射线光谱分析,补充了腐蚀机制的热力学推理。全面检查腐蚀量表。在暴露于腐蚀性环境139小时后观察到具有显眼介质的腐蚀产品(60体积%Co,28.4体积%H-2,2.5 Vol.%CO2,0.8 Vol.%CH4,600 ppm H2S,在2.005MPa和170℃下,110ppm羰基硫醚)。扫描电子显微镜和能量分散X射线光谱阳性地鉴定为相当广泛的去皮氧化物作为腐蚀鳞片的形成,作为曝光后合金样品的腐蚀尺度,其归因于水合Fe,Al和Cr Chlorides蒸发的组合效果并将其随后的转化成薄(掺入)氧化物。本文包含CR,MO,FE和AL的效果的技术内容,对观察到的腐蚀行为,并将工程洞察到先前公布的MP 2-2018关于NI-CR-MO-FE合金的腐蚀行为类似的环境。

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