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Evaluation of the Mechanical Properties of Naturally Grown Multilayered Oxides Formed on HCM12A Using Small Scale Mechanical Testing

机译:使用小型机械测试评估在HCM12A上自然生长的多层氧化物的机械性能

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摘要

The microstructure and mechanical integrity of protective multilayered oxide films grown in liquid metal on F/M steel HCM12A was investigated utilizing Raman spectroscopy, nanoindentation and micro-cantilever testing methods. The Raman spectra showed a Fe3O4 outer layer and a Cr-rich spinel structure inner layer. The nanoindentation results showed a higher hardness value for the inner layer than for the outer layer. In addition, the hardness of the diffusion layer in between the inner layer and the bulk steel was measured. Quantitative fracture properties were obtained of the steel/oxide interface and within the oxide layers utilizing micro-cantilever testing. Furthermore the strength and elastic properties of the multilayered oxide film were measured and it was found that the porous structure in the inner Fe-Cr oxide limits the integrity of the steel/oxide interface.
机译:利用拉曼光谱,纳米压痕和微悬臂梁测试方法研究了液态金属在F / M钢HCM12A上生长的多层保护氧化膜的微观结构和机械完整性。拉曼光谱显示Fe3O4外层和富Cr尖晶石结构内层。纳米压痕结果显示,内层的硬度值高于外层的硬度值。另外,测量在内层与块状钢之间的扩散层的硬度。利用微悬臂梁测试获得了钢/氧化物界面以及氧化物层内部的定量断裂性能。此外,测量了多层氧化物膜的强度和弹性,发现内部Fe-Cr氧化物中的多孔结构限制了钢/氧化物界面的完整性。

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