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Influence of Nitrogen Content in the Working Gas Mixture on the Structure and Properties of the Nitrided Surface of Die Steel

机译:工作气体混合物中氮含量对模具钢渗氮表面组织和性能的影响

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The paper presents the results of studies of the phase composition and structure of the nitrided layer of Cr6VW die steel formed by ion-plasma nitriding in a plasma of a non-self-sustained low-pressure glow discharge with a hollow cathode, as well as an analysis of the physicomechanical properties of the material surface. It was found that the nitrogen content in the plasma-forming gas mixture significantly affects the phase composition of the surface of the nitrided layer. After nitriding, the microhardness of steel in a layer up to 50 µm thick increases to ~ 11 GPa. The smallest surface wear was obtained as a result of nitriding of Cr6VW steel with a nitrogen content of 10% in a nitrogen-argon gas mixture at a working pressure of 1 Pa. The regularities revealed during the studies make it possible to control the structure and phase composition of the nitrided layer by changing of the ratio of N2 and Ar content in the nitrogen-argon mixture at low pressure and the magnitude of the negative bias voltage applied to the substrate.
机译:本文介绍了在具有空心阴极的非自持低压辉光放电的等离子体中通过离子等离子体氮化形成的Cr6VW模具钢的渗氮层的相组成和结构的研究结果,以及材料表面的物理机械性能分析。发现等离子体形成气体混合物中的氮含量显着影响氮化层表面的相组成。氮化后,钢层的显微硬度高达50 µm,增加到〜11 GPa。在工作压力为1 Pa的情况下,通过在氮气-氩气混合物中氮化10%的Cr6VW钢进行氮化,可获得最小的表面磨损。研究过程中揭示的规律性使得控制组织和结构成为可能。通过改变低压下氮气与氩气混合物中N2和Ar含量的比率以及施加到基板上的负偏置电压的大小来改变氮化层的相组成。

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