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Low Temperature Hot Corrosion Screening of Single Crystal Superalloys

机译:单晶高温合金的低温热腐蚀筛选

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摘要

Single crystal superalloys were screened in Type II molten (Na,K)-sulfate hot corrosion re-coat tests in air +300 ppm SO2 at 700 °C. They exhibited large 20–40 mg/cm2 weight changes, repeated spallation, and non-protective, 25–50 μm thick corrosion layers after 300 h of testing. Scale cross sections revealed dual outer Ni(Co)O and inner Al(Cr)S-rich corrosion layers. This chemical differentiation was partially consistent with previous models of oxide fluxing, alloy sulfidation, NiO micro-channel diffusion, and synergistic dissolution mechanisms. Broad shallow pits or uniform attack morphologies were consistent with prior studies performed in high >100 ppm pSO2 environments. Higher Mo experimental alloys trended toward more degradation, producing 100 μm thick scales with distinct Al(Cr)S-rich inner layers or 500 μm thick NiO. The aggressive behavior in these environments supports the need for LTHC-resistant coatings for single crystal superalloys.
机译:在II型熔融(Na,K)硫酸盐热腐蚀重涂试验中,在空气中+ 300 ppm SO2和700°C下筛选了单晶高温合金。测试300小时后,它们表现出20–40 mg / cm 2 较大的重量变化,反复剥落和非保护性的25–50μm厚腐蚀层。鳞片的横截面显示了外部Ni(Co)O和内部富含Al(Cr)S的双重腐蚀层。这种化学差异部分与以前的氧化物助熔剂,合金硫化,NiO微通道扩散和协同溶解机制的模型一致。宽浅的凹坑或均匀的侵蚀形态与先前在> 100 ppm pSO2高环境中进行的研究一致。较高的Mo实验合金趋向于进一步降解,产生100μm的氧化皮,并具有明显的Al(Cr)S富集的内层或500μm的NiO。在这些环境中的侵蚀性行为支持了对单晶高温合金的耐LTHC涂层的需求。

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