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首页> 外文期刊>Journal of nanoscience and nanotechnology >Effect of Pulsed Plasma Nitriding on Mechanical and Tribological Performance of Ck45 Steel
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Effect of Pulsed Plasma Nitriding on Mechanical and Tribological Performance of Ck45 Steel

机译:脉冲等离子渗氮对Ck45钢力学和摩擦学性能的影响

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We studied the mechanical properties and wear performance of AISI 1045 (Ck45) carbon steel under the influence of pulsed plasma nitriding. The treatments were performed at temperatures of 500 and 550℃ in N_2:H_2 gas ratios of 1:3 and 3:1 and the working pressure of 10 mbar for 1 to 4 hours. Samples were examined by X-ray diffraction, optical, electron and atomic force microscopy, microhardness tests, roughness measurements and wear tests. Nitride layers were mainly composed of ε-(Fe_(2-3)N) or γ'-(Fe_4N) depending on the gas ratio and/or temperature and time. When the nitriding time is increased, the composition of the compound layer varies from monophase γ'-(Fe_4N) to the two phase of ε-(Fe_(2-3)N) and γ'-(Fe_4N). The highest thickness and hardness of the layers were obtained at 550℃ in the N_2:H_2 gas ratios of 3:1 for 4 h. The topographical evolution and surface roughness of the samples showed that all the roughness parameters increase with increasing the temperature. The friction coefficient of all samples was higher than that of untreated material. Wear performance of all nitrided samples was significantly better than that of untreated material.
机译:我们研究了脉冲等离子渗氮影响下AISI 1045(Ck45)碳钢的力学性能和磨损性能。该处理在500和550℃的温度下,以N_2:H_2气体比为1:3和3:1,在10 mbar的工作压力下进行1-4小时。通过X射线衍射,光学,电子和原子力显微镜,显微硬度测试,粗糙度测量和磨损测试检查样品。取决于气体比率和/或温度和时间,氮化物层主要由ε-(Fe_(2-3)N)或γ'-(Fe_4N)组成。当氮化时间增加时,化合物层的组成从单相γ'-(Fe_4N)变为ε-(Fe_(2-3)N)和γ'-(Fe_4N)的两相。在550℃的N_2:H_2气体比为3:1的条件下保持4h的厚度和硬度最高。样品的形貌演变和表面粗糙度表明,所有粗糙度参数均随温度的升高而增加。所有样品的摩擦系数均高于未处理材料。所有氮化样品的磨损性能均明显优于未处理材料。

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