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Low-Temperature Plasma Nitriding of 3Cr13 Steel Accelerated by Rare-Earth Block

机译:稀土块加速3Cr13钢的低温等离子体氮化

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The plasma nitriding of 3Cr13 steel occurred at 450 °C for 4, 8 and 12 h in NH3 with and without rare earth (RE). The nitrided layers were characterized using an OM, SEM, TEM, XRD, XPS, microhardness tester and electrochemical workstation. The modified layer, with and without La, are composed of a compound layer and diffusion layer from surface to core. After the addition of La during nitriding, the maximum increase of layer thickness, mass gain and average microhardness was 15.6%, 35.8% and 212.50HV0.05, respectively. With the increase of the proportion of ε-Fe2-3N, the passivation zone of the corrosion resistance curve increases from 2.436 to 3.969 V, the corrosion current density decreases, the corrosion potential and pitting potential both increase, and, consequently, the corrosion resistance is significantly improved. Most of the surface microstructures of the nitrided layer was refined by the addition of La. The presence of La reduces the N content in the modified layer, which accelerates the diffusion of N atoms and, thus, accelerates the nitriding process.
机译:3Cr13钢的等离子体氮化在450℃下发生在450℃,在NH 3中,没有稀土(RE)。使用OM,SEM,TEM,XRD,XPS,微硬度测试仪和电化学工作站表征氮化层。改性层,有没有La,由化合物层和从表面到芯的扩散层组成。在氮化期间加入LA后,层厚度,质量增益和平均微硬度的最大增加分别为15.6%,35.8%和212.50hv0.05。随着ε-FE2-3N的比例的增加,耐腐蚀曲线的钝化区从2.436增加到3.969V,腐蚀电流密度降低,腐蚀电位和蚀力均增加,因此耐腐蚀性显着改善。通过添加La改进氮层的大多数表面微结构。La的存在减少了改性层中的N含量,其加速了N原子的扩散,因此加速了氮化过程。

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