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Effects of cooling rate on the precipitation behavior of grain boundary carbide and corrosion resistance of 5Cr15MoV stainless steel

机译:冷却率对5Cr15mov不锈钢晶界碳化物沉淀行为的影响及耐腐蚀性

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High-carbon and high-chromium alloy steels are prone to pitting and intergranular corrosion, which reduces corrosion resistance. The precipitation behavior of the carbides of high-carbon and high-chromium alloy steels is one of the main factors affecting pitting and intergranular corrosion of stainless steel. In this study, 5Cr15MoV stainless steel was heated to 1,200celcius and then cooled by cooling rates varying from 25 to 150 degrees C/min. The precipitation behavior of grain boundary carbides of 5Cr15MoV steel at different cooling rates, and its effect on the corrosion resistance of materials was studied. The results show that the carbides of 5Cr15MoV steel mainly precipitate along the grain boundaries, which leads to the formation of chromium-depleted zones near the grain boundaries and reduces resistance to intergranular corrosion. It has been found that a higher cooling rate shortens the width of the Cr-depleted zone near the boundary from 0.871 to 0.569 mu m, reduces the Cr-concentration gradient near the grain boundary from 36.422% to 12.667%, and suppresses the nucleus growth rate of grain boundary carbides. As the cooling rate increases, the corrosion current density decreases from 13.29 to 2.42 mu A/cm(2). The corrosion rate is the lowest, while the cooling rate is 150 degrees C/min. The corrosion rate decreases from 218.339 to 158.488 mm/a. The phenomenon of intergranular corrosion and pitting corrosion was found to be weakened; and thereby, it is shown that an intensive cooling rate can improve the corrosion resistance of 5Cr15MoV steel.
机译:高碳和高铬合金钢容易蚀刻和晶间腐蚀,这降低了耐腐蚀性。高碳和高铬合金钢的碳化物的沉淀行为是影响不锈钢蚀蚀和骨间腐蚀的主要因素之一。在该研究中,将5CR15moV不锈钢加热至1,200celcius,然后通过从25至150℃/ min的冷却速率冷却。研究了5Cr15mov钢的晶界碳化物以不同的冷却速率的沉淀行为,研究了其对材料耐腐蚀性的影响。结果表明,5Cr15mov钢的碳化物主要沿晶界沉淀,这导致形成晶界附近的铬耗尽的区域,并降低了对骨间腐蚀的抗性。已经发现,较高的冷却速率缩短了从0.871到0.569 mu m的边界附近的CR耗尽区的宽度,从36.422%到12.667%的晶界附近的Cr浓度梯度降低,并抑制核生长晶界碳化物的速率。随着冷却速率的增加,腐蚀电流密度从13.29降至2.42μA/ cm(2)。腐蚀速率是最低的,而冷却速率为150℃/ min。腐蚀速率从218.339降至158.488 mm / a。发现骨间腐蚀和点蚀腐蚀的现象被削弱;由此,表明强化冷却速率可以提高5Cr15mov钢的耐腐蚀性。

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