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Effect of microstructure evolution and phase precipitations on hot corrosion behavior of IN718 alloy subjected to multiple laser shock peening

机译:微观结构演化和相位沉淀对多种激光震动挖掘机的IN718合金热腐蚀行为的影响

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摘要

High-temperature hot corrosion experiments of IN718 alloy subjected to multiple laser shock peening (LSP) were conducted by coating a salt mixture (75 wt% Na2SO4 + 25 wt% NaCl) on its surfaces at 700, 800 and 900 degrees C for 10 cycles. The effect of microstructure evolution and phase precipitations on high-temperature hot corrosion behavior of the specimens was investigated. Results showed that high-temperature hot corrosion behavior is associated with delta phase precipitations. Excessive delta phase precipitations significantly accelerate hot corrosion at 900 degrees C due to Na-containing oxides formation. According to corrosion kinetics, multiple LSP treated specimens exhibit lower mass loss compared with untreated specimens, indicating multiple LSP can relieve high-temperature hot corrosion. This is mainly attributed to crystal defects, which promote outward diffusion of Cr generating protective Cr-rich oxides.
机译:通过在700,800和900摄氏度的表面上涂覆盐混合物(75wt%Na 2 SO 4 + 25wt%NaCl)进行10个循环,通过在其表面上涂覆盐混合物(75wt%Na 2 SO 4 + 25wt%NaCl)进行高温热腐蚀实验(LSP)。 。 研究了微观结构演化和相位沉淀对标本高温热腐蚀行为的影响。 结果表明,高温热腐蚀行为与δ相沉淀有关。 由于含Na的氧化物形成,过量的δ相沉淀显着加速900℃的热腐蚀。 根据腐蚀动力学,与未处理的样品相比,多种LSP处理的样本表现出较低的质量损失,表明多个LSP可以缓解高温热腐蚀。 这主要归因于晶体缺陷,这促进了Cr产生了富含保护性Cr的氧化物的外部扩散。

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