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Responses to indentation and to impedance spectroscopy of plastically compressed steels. Part 2:Case of a Fe-Ni-Cr steel

机译:塑性压缩钢对压痕和阻抗谱的响应。第2部分:Fe-Ni-Cr钢的外壳

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As in the first part of this study impedance spectroscopy was used in this second part to characterize the influence of permanent deformation in compression on the corrosion behaviour, in the same sulphuric acid solution, of a second model iron-based alloy- a ternary Fe-Ni-Cr alloy, base of many stainless austenitic steels - always for the two main orientations of surface with respect to the deformation axis. Preliminary to the EIS experiments, XRD runs and Vickers indentations showed the same effects of the plastic deformation in compression on diffraction patterns and on hardness. The Nyquist plots obtained were also similar to semi-circles and the corresponding charge transfer resistances and double layer capacitance were determined. In contrast with what was observed for pure iron in the same conditions (except the deformation rates really achieved because of the much higher strength of the simplified austenitic stainless steel studied here by comparison to pure iron) the transfer resistance rather tended here to decrease when the permanent compression deformation increased, and to be higher for the perpendicular orientation than for the parallel orientation.
机译:与本研究的第一部分一样,在第二部分中使用阻抗光谱来表征压缩过程中永久变形对第二种模型铁基合金(三元Fe-)在相同硫酸溶液中的腐蚀行为的影响。 Ni-Cr合金,许多不锈奥氏体钢的基材-始终在表面相对于变形轴的两个主要方向上起作用。在EIS实验之前,XRD运行和维氏压痕显示出压缩时塑性变形对衍射图样和硬度的影响相同。获得的奈奎斯特图也类似于半圆形,并确定了相应的电荷转移电阻和双层电容。与在相同条件下观察到的纯铁相反(除了由于与纯铁相比,此处研究的简化奥氏体不锈钢具有更高的强度而真正达到的变形速率外),当钢的抗拉强度降低时,传递阻力趋于下降。永久压缩变形增加,垂直取向要比平行取向更高。

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