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Effect of High-Temperature Nitriding on the Corrosion Resistance of Ferrite Chromium Steels

机译:高温氮化对铁氧体铬钢耐腐蚀性的影响

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High-temperature nitriding with subsequent annealing allows changing the structure and increasing the mechanical properties of the entire volume of thin-walled samples from corrosion-resistant high-chromium ferrite steels without the formation of a continuous nitride layer on the surface. At the same time, the influence of high-temperature nitriding on the corrosion resistance of the steels has not been studied. In this paper, a comparative study of the effect of high-temperature nitriding on the electrochemical corrosion resistance and resistance to prolonged high-temperature oxidation of high-chromium ferrite steels with different content of Cr and V (17Cr-1Ti (AISI 439 type), 25Cr-1Ti (AISI 446 type), and Fe-20Cr-5V) has been carried out. High-temperature nitriding of ferrite steel at a temperature of 1075-1100°C with subsequent heat treatment (annealing at 550°C and annealing at 700°C with/without degassing) provides a different content of Cr and V in a solid solution and changes the corrosion resistance of materials. It is ascertained that high-temperature nitriding has a positive effect on the corrosion resistance of the steels in an aqueous solution of 1 mol/L NaCl + 0.5 mol/L H_2SO_4, and in an aqueous solution of 3% NaCl, the effect is negative. In this case, the degassing of the samples from their surface leads to a sharp displacement of the steady-state corrosion potential toward electropositive values, which indicates an increase in the corrosion resistance of the materials. The steels investigated are characterized by a high resistance to oxidation at high temperature (700°C for 30 h). For Cr20V5 steel in the initial (non-nitrided) state, the specific weight gain is several times greater than for the other steels. Nitriding with annealing both at a temperature of 550°C and at 700°C significantly increases the resistance of Cr20V5 steel to oxidation.
机译:随后退火的高温氮化允许改变结构并增加来自耐腐蚀的高铬铁氧体钢的整个薄壁样品的机械性能,而不形成表面上的连续氮化物层。同时,尚未研究高温氮化对钢的耐腐蚀性的影响。本文中,高温氮化效果对电化学耐腐蚀性和延长高温氧化的比较研究,具有不同含量的Cr和V(17Cr-1ti(AISi 439型)的高铬铁氧体钢已经进行了25cr-1ti(AISI 446类型)和FE-20CR-5V)。在1075-1100℃的温度下,高温氮化铁素体钢随后热处理(在550℃下退火并在700℃下退火/无脱气)在固溶下提供不同的Cr和V含量改变了材料的耐腐蚀性。确定高温氮化对1mol / L NaCl + 0.5mol / L H_2SO_4的水溶液中钢的耐腐蚀性产生积极影响,并且在3%NaCl的水溶液中,效果是阴性的。在这种情况下,从它们的表面脱气导致稳态腐蚀电位朝向正电态的急剧置换,这表明材料的耐腐蚀性增加。研究的钢的特征在于高温下氧化高耐氧化(700℃,30小时)。对于初始(非氮化)状态下的CR20V5钢,比重量增益比其他钢更大数倍。在550℃和700℃下的温度下氮化退火显着增加了Cr20v5钢对氧化的电阻。

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