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Effect of Surface Preparation by Non-Directional Grinding on Properties of AISI D2 Plasma-Nitride Layer

机译:非定向研磨表面制备对AISI D2等离子体氮化物层性能的影响

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This research studies the properties of plasma-nitride coating on AISI D2 tool steels prepared by non-directional grinding at various finishing. In the manufacturing process, the AISI D2 was machined to size and hardened with a typical hardening process. In addition, its surface was treated with plasma nitriding. Various levels of roughness were produced as well as possible affects on the nitride coating properties. In this study, the following five conditions of grinding were performed on the hardened specimens: 1-μm diamond particle and four SiC grinding papers: P100, P240, P800, and P2500. The surface finishing with at least 0.023-μm roughness value (P800 grinding) provided a plasma-nitride layer with a moderately good hardness profile and a thick nitride layer compared with other finer finishing. This finishing process was also more economical requiring less time and manpower to create than others. Overall, this study suggests that finer surface finishing has a tendency to significantly improve the tool steels hardness profile and hardened depth.
机译:该研究研究了在各种精加工非定向研磨中由非定向研磨制备的AISI D2工具钢上的血浆氮化物涂层的性能。在制造过程中,AISI D2加工成尺寸并用典型的硬化过程硬化。此外,其表面被等离子体氮化处理。产生各种水平的粗糙度以及可能影响氮化物涂层性能。在本研究中,在硬化的样品上进行以下五种研磨条件:1-μm金刚石颗粒和四个SiC研磨纸:P100,P240,P800和P2500。具有至少0.023μm粗糙度值(P800研磨)的表面精加工提供了等离子体氮化物层,与其他更精细的整理相比,具有中等良好的硬度曲线和厚的氮化物层。这种精加工过程也更经济地需要更少的时间和人力来创造比其他时间。总体而言,该研究表明,更精细的表面处理具有显着改善工具钢硬度曲线和硬化深度的趋势。

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