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首页> 外文期刊>Materials Characterization >A role of initial microstructure in characteristics of the surface layers produced by ion-plasma treatment in CrNiMo austenitic stainless steel
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A role of initial microstructure in characteristics of the surface layers produced by ion-plasma treatment in CrNiMo austenitic stainless steel

机译:初始微观结构在CRNIMO奥氏体不锈钢中离子等离子体处理产生的表面层特性的作用

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摘要

A study on elemental composition, phase composition, microstructure, nanohardness and fracture micro mechanisms of the surface layers obtained by ion-plasma treatment of a stable CrNiMo austenitic stainless steel with different initial microstructures has been carried out. In cold-rolled specimens, containing a high dislocation density and deformation-induced low-and high-angle boundaries and possessing structural elements of 330 nm in size, interstitial concentration (carbon and nitrogen) is much higher than that for cold-rolled and annealed specimens with a similar size of structural elements. After ion-plasma treatment, a surface nano hardness of the pre-deformed specimens is higher by 8 GPa than one for specimens annealed after cold rolling. Deformation-assisted microstructure accumulates carbon more likely than nitrogen under ion-plasma treatment. These results provide experimental support for decisive role of high dislocation density and deformation-assisted well-developed microstructure in accumulation and bulk diffusion of interstitials under ion-plasma treatment of steel.
机译:已经进行了通过离子等离子体处理具有不同初始微结构的离子等离子体处理而获得的表面层的元素组成,相组合物,微观结构,纳米术和裂缝微结构的研究。在冷轧标本中,含有高位脱位密度和变形诱导的低和大角度边界,并且具有330nm的结构元素,间质浓度(碳和氮)远高于冷轧和退火的具有相似尺寸的结构元素的标本。在离子等离子体处理之后,预变形样品的表面纳米硬度高8GPa,对于冷轧后的样品退火。在离子等离子体处理下,变形辅助微观结构在离子等离子体处理下更可能比氮容纳碳。这些结果提供了高位脱位密度和变形辅助良好的微观结构的决定性作用的实验支持,其在钢的离子等离子体处理下的间隙中积聚和散装扩散中的堆积和散装扩散。

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