渗硼提高8620低合金钢增材制造的力学和电化学性能

Ezazul Haque Sabuz, Mohammed Noor-A-Alam, Waseem Haider, Ishraq Shabib
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引用次数: 1

摘要

本文研究了8620低合金钢的力学性能和电化学性能,并与裸合金钢进行了比较。渗硼8620的显微组织表现为具有锯齿状形貌的FeB和Fe2B相。在硬度、磨损、动电位极化(PD)、电化学阻抗谱(EIS)和线性极化电阻(LPR)实验中,AM和变形后的硼化物层样品表现出相似的性能。然而,与裸钢相比,渗硼钢的维氏硬度提高了8倍,耐磨性提高了6倍。在0.1 M Na2S2O3 + 1 M NH4Cl溶液中进行的电化学实验表明,与裸样品相比,带硼试样(AM和变形试样)的腐蚀电流密度降低了3 - 6倍,电荷转移电阻提高了约6倍,双层电容降低了约6倍,表明其耐腐蚀性能有所提高。腐蚀后表面分析显示,裸露钢表面存在较厚的硫化物和氧化物层,而在渗硼样品上观察到分散的腐蚀颗粒。硼化钢的磨损性能和电化学性能的提高主要是由于其表面的FeB/Fe2B层较硬,其表面吸附的硫量减少。
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Improving the Mechanical and Electrochemical Performance of Additively Manufactured 8620 Low Alloy Steel via Boriding
In this study, mechanical and electrochemical performance of borided additively manufactured (AM) and wrought 8620 low alloy steel were investigated and compared to their bare counterparts. The microstructure of borided 8620 exhibited the presence of FeB and Fe2B phases with a saw tooth morphology. Both AM and wrought samples with boride layers showed a similar performance in hardness, wear, potentiodynamic polarization (PD), electrochemical impedance spectroscopy (EIS), and linear polarization resistance (LPR) experiments. However, borided steels exhibited about an 8-fold increase in Vickers hardness and about a 6-fold enhancement in wear resistance compared to bare ones. Electrochemical experiments of borided specimens (both AM and wrought) in 0.1 M Na2S2O3 + 1 M NH4Cl solution revealed a 3–6-fold lower corrosion current density, about a 6-fold higher charge transfer resistance, and about a 6-fold lower double-layer capacitance, demonstrating an improved corrosion resistance compared to their bare counterparts. Post-corrosion surface analysis revealed the presence of thick sulfide and oxide layers on the bare steels, whereas dispersed corrosion particles were observed on the borided samples. The enhanced wear and electrochemical performance of the borided steels were attributed to the hard FeB/Fe2B layers and the reduced amount of adsorbed sulfur on their surface.
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