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首页> 外文期刊>Oxidation of Metals >High-Temperature Oxidation Behavior of a Wrought Ni-Cr-W-Mn-Si-La Alloy
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High-Temperature Oxidation Behavior of a Wrought Ni-Cr-W-Mn-Si-La Alloy

机译:变形Ni-Cr-W-Mn-Si-La合金的高温氧化行为

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An investigation was carried out to study the kinetics and products of oxidation of a wrought Ni-Cr-W-Mn-Si-La alloy at temperatures in the range of 950 to 1150℃. Oxidation kinetics were evaluated from measurements of weight change, metal loss, and internal penetration. Analytical electron microscopy, scanning electron microscopy, electron probe microanalysis, and X-ray diffraction were used to characterize the scale microstructure. Initially, La was observed to segregate within a surface layer of about 5 μm thick, which promoted selective oxidation of Cr and Mn. Oxidation kinetics were found to follow a parabolic-rate law with an activation energy of about 232 kJ/mol. During steady-state oxidation, the scale consisted of an inner adherent layer of α-Cr)2O_3 modified by the presence of La and Si, and shielded by an outer layer of MnCr_2O_4. Most of the La was segregated to grain boundaries of the α-Cr_2O_3 scale, however, Si was homogeneously distributed. It was concluded that the characteristic oxidation resistance of the alloy was related to the synergistic effects of Ni and Cr and to the effective minor additions of La, Si, and Mn; however, the useful life of the scale was limited by rupture and surface depletion in Cr, leading to accelerated internal oxidation.
机译:进行了研究,以研究在950至1150℃的温度下变形的Ni-Cr-W-Mn-Si-La合金的动力学和氧化产物。通过测量重量变化,金属损失和内部渗透来评估氧化动力学。分析电子显微镜,扫描电子显微镜,电子探针显微分析和X射线衍射被用来表征氧化皮的微观结构。最初,观察到La偏析在约5μm厚的表层内,这促进了Cr和Mn的选择性氧化。发现氧化动力学遵循抛物线速率定律,其活化能约为232 kJ / mol。在稳态氧化过程中,氧化皮由被La和Si改性的α-Cr)2O_3内粘附层组成,并被MnCr_2O_4的外层屏蔽。 La的大部分偏析在α-Cr_2O_3尺度的晶界,但是Si均匀分布。结论是,合金的抗氧化特性与Ni和Cr的协同作用以及有效添加的La,Si和Mn有关。但是,氧化皮的使用寿命受到Cr破裂和表面消耗的限制,导致内部氧化加速。

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