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High-Temperature Oxidation of Stellite 12 Hardfacings: Effect of Mo on Characteristics of Oxide Scale

机译:脱衣石的高温氧化12个硬扫描:MO对氧化物量表特性的影响

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摘要

This study aims to understand the oxide scale formation on the surfaces of commercial and Mo (10wt.%)-modified Stellite 12 hardfacings deposited on 4140 steel. For this purpose, samples of the hardfacings were isothermally oxidized in air at various temperatures in between 500 and 900 degrees C for 30 h. As a result of changes in the microstructure upon Mo addition, about 50% higher mass gain at all oxidation temperatures was observed. The characteristics of the developed oxide scales were examined by utilizing Raman spectroscopy, scanning electron microscopy and x-ray diffraction analysis. The oxide scale formed over Stellite 12 consisted of CoO-, Co3O4- and Cr2O3-type oxides, while additionally CoMoO4-type complex oxide was detected on Mo-modified hardfacing, more likely at the alloy-scale interface. On the basis of findings of isothermal oxidation tests, the formation mechanisms of this complex oxide imposing better wear resistance as reported in our previous studies were explained during high-temperature wear testing, i.e., dynamic oxidation conditions.
机译:本研究旨在了解商业和MO(10wt.%)的氧化物尺度形成 - 改性沉积在4140钢上的改性的脱衣石12个硬扫描。为此目的,在500至900℃的各种温度下,在空气中在空气中在500至900℃的各种温度下为30小时。由于Mo添加时微观结构的变化,观察到所有氧化温度的大约50%的质量增益。通过利用拉曼光谱,扫描电子显微镜和X射线衍射分析来检查所发育氧化物鳞片的特性。在脱衣石12上形成的氧化物刻度由COO-,CO 3 O 4和CR2O3型氧化物组成,而另外在Mo-Demified HardFacing上检测到COOO 4型复合氧化物,更可能在合金级界面上。在等温氧化试验的发现的基础上,在高温磨损试验期间,在高温磨损试验期间,解释了在我们以前的研究中报告的这种复合氧化物造成更好的耐磨性的形成机制,即动态氧化条件。

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