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首页> 外文期刊>Zeitschrift fur Metallkunde >The morphology of nitrided iron-chromium alloys; influence of chromium content and nitrogen supersaturation
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The morphology of nitrided iron-chromium alloys; influence of chromium content and nitrogen supersaturation

机译:氮化铁铬合金的形貌;铬含量和氮过饱和的影响

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Different iron-chromium alloys (4, 8, 13 and 20 wt.% Cr) were nitrided in NH{sub}3/H{sub}2 gas mixtures at 580 ℃. The nitrided microstructure was investigated by X-ray diffraction, light microscopy, hardness measurements and scanning electron microscopy. Composition depth-profiles of the nitrided zone were determined by electron probe microanalysis. Various microstructures develop, depending on the nitriding conditions and the alloy composition (chromium content). The initial development of coherent, sub-microscopical CrN nitrides leads to a state of hydrostatic stress allowing the uptake of excess nitrogen dissolved in the ferrite matrix. It is shown that the outcome of the subsequent discontinuous coarsening process, which leads to a lamellar microstructure, has a close relation to the nitrogen supersaturation. As a result, the occurrence of a distinct gradient in hardness across the nitrided zone can be understood.
机译:在580℃的NH {sub} 3 / H {sub} 2气体混合物中氮化了不同的铁铬合金(4、8、13和20 wt。%Cr)。通过X射线衍射,光学显微镜,硬度测量和扫描电子显微镜研究渗氮的微观结构。通过电子探针显微分析确定渗氮区的成分深度分布。取决于氮化条件和合金成分(铬含量),会形成各种微观结构。相干的,亚显微的CrN氮化物的最初发展导致流体静应力状态,从而吸收溶解在铁氧体基质中的过量氮。结果表明,随后的不连续粗化过程的结果导致了层状的微观结构,与氮的过饱和关系密切。结果,可以理解在氮化区域上出现明显的硬度梯度。

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