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>Corrosion Behavior of Si Diffusion Coating on an Austenitic Fe-Base Alloy in High Temperature Supercritical-Carbon Dioxide and Steam Environment
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Corrosion Behavior of Si Diffusion Coating on an Austenitic Fe-Base Alloy in High Temperature Supercritical-Carbon Dioxide and Steam Environment
In order to enhance corrosion resistance of stainless steel (SS) 316LN at high temperature environments, surface modification was carried out by Si deposition and subsequent heat treatment at 900 °C for 1 h. This resulted in the formation of Fe5Ni3Si2 phase on the surface region. The surface-modified alloy was exposed to high temperature S-CO2 (650 °C, 20 MPa) and steam (650 °C, 0.1 MPa) for 500 h and evaluated for its corrosion behavior in comparison to the as-received alloy. In S-CO2 environment, the as-received SS 316LN showed severe oxide spallation and thick Fe-rich oxide formation, while the surface-modified alloy formed a continuous and adherent Si- and Cr-rich oxide layer. In steam, as-received SS 316LN formed very thick duplex Fe- and Cr-rich oxide layers. On the other hand, surface-modified SS 316LN formed notably thinner oxides, which could be attributed to the formation of Si-rich oxide under outer Fe-rich oxides on the surface-modified alloy. Thus, in view of the weight changes, oxide thickness, and morphologies of the two conditions, it was found that Si diffusion coating was effective in improving the corrosion resistance of SS 316LN in both S-CO2 and steam environments.
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机译:为了提高高温环境下不锈钢(SS)316Ln的耐腐蚀性,通过Si沉积和随后的900℃的热处理进行表面改性1小时。这导致表面区域的Fe5Ni3 Si 2相。将表面改性合金暴露于高温S-CO 2(650℃,20MPa)和蒸汽(650℃,0.1MPa)的500小时,并与接收的合金相比,耐腐蚀行为。在S-CO2环境中,接收的SS 316LN显示出严重的氧化物浇注和富含Fe的氧化物形成,而表面改性合金形成连续和粘附的Si-和富含Cr的氧化物层。在蒸汽中,接收的SS 316Ln形成非常厚的双工Fe-和Cr的氧化物层。另一方面,表面改性的SS 316LN形成了较薄的氧化物,其可归因于在表面改性合金的外Fe富含氧化物下形成富含Si的氧化物。因此,考虑到两种条件的重量变化,氧化物厚度和形态,发现Si扩散涂层有效改善SS 316Ln在S-CO 2和蒸汽环境中的耐腐蚀性。
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