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首页> 外文期刊>Philosophical magazine: structure and properties of condensed matter >Dependence of the nitriding rate of ferritic and austenitic substrates on the crystallographic orientation of surface grains; gaseous nitriding of Fe-Cr and Ni-Ti alloys
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Dependence of the nitriding rate of ferritic and austenitic substrates on the crystallographic orientation of surface grains; gaseous nitriding of Fe-Cr and Ni-Ti alloys

机译:铁素体和奥氏体基体的氮化速率取决于表面晶粒的晶体学取向; Fe-Cr和Ni-Ti合金的气态氮化

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摘要

Gaseous nitriding of ferritic Fe-Cr and austenitic Ni-Ti solid solutions reveals that the extent of the uptake of dissolved nitrogen depends on the crystallographic orientation of the surface grains of the substrate. In both ferritic and austenitic substrates, the surface nitrogen concentration and the nitriding depth decrease upon increasing the smallest angle between the surface normal and the normal of a {100} plane of the surface grain considered. This phenomenon could be ascribed to the residual compressive macrostress developed during nitriding which varies as a function of crystallographic orientation of the (surface) grains due to the elastically anisotropic nature of ferrite and austenite solid solutions investigated in this study.
机译:铁素体Fe-Cr和奥氏体Ni-Ti固溶体的气态氮化表明,溶解氮的吸收程度取决于基材表面晶粒的晶体学取向。在铁素体和奥氏体基体中,表面氮浓度和氮化深度随着所考虑的表面晶粒的表面法线和{100}平面的法线之间的最小角度增加而减小。这种现象可能归因于在氮化过程中产生的残余压缩大应力,由于本研究中研究的铁素体和奥氏体固溶体的弹性各向异性,其随(表面)晶粒的晶体学取向而变化。

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