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首页> 外文期刊>International Journal of Minerals,Metallurgy and Materials >Effect of melting temperature on microstructural evolutions, behavior and corrosion morphology of Hadfield austenitic manganese steel in the casting process
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Effect of melting temperature on microstructural evolutions, behavior and corrosion morphology of Hadfield austenitic manganese steel in the casting process

机译:熔化温度对铸造过程中Hadfield奥氏体锰钢组织的微观结构演进,行为和腐蚀形态的影响

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摘要

In this study, the effect of melting temperature on the microstructural evolutions, behavior, and corrosion morphology of Hadfield steel in the casting process is investigated. The mold was prepared by the sodium silicate/CO2 method, using a blind riser, and then the desired molten steel was obtained using a coreless induction furnace. The casting was performed at melting temperatures of 1350, 1400, 1450, and 1500 degrees C, and the cast blocks were immediately quenched in water. Optical microscopy was used to analyze the microstructure, and scanning electron microscopy (SEM) and X-ray diffractrometry (XRD) were used to analyze the corrosion morphology and phase formation in the microstructure, respectively. The corrosion behavior of the samples was analyzed using a potentiodynamic polarization test and electrochemical impedance spectroscopy (EIS) in 3.5wt% NaCl. The optical microscopy observations and XRD patterns show that the increase in melting temperature led to a decrease of carbides and an increase in the austenite grain size in the Hadfield steel microstructure. The corrosion tests results show that with increasing melting temperature in the casting process, Hadfield steel shows a higher corrosion resistance. The SEM images of the corrosion morphologies show that the reduction of melting temperature in the Hadfield steel casting process induced micro-galvanic corrosion conditions.
机译:在该研究中,研究了熔化温度对铸造过程中Hadfield钢的微观结构演进,行为和腐蚀形态的影响。使用盲提的链器,通过硅酸钠/ CO 2制备模具,然后使用无芯感应炉获得所需的钢水。铸件在熔化温度下在1350,1400,1450和1500℃下进行,并且将浇铸块立即在水中淬灭。光学显微镜用于分析微观结构,并且扫描电子显微镜(SEM)和X射线衍射术(XRD)分别用于分析微观结构中的腐蚀形态和相形成。使用3.5wt%NaCl中的电位偏振试验和电化学阻抗谱(EIS)分析样品的腐蚀行为。光学显微镜观察和XRD图案表明,熔化温度的增加导致碳化物的降低和哈尔菲尔德钢微观结构中奥氏体晶粒尺寸的增加。腐蚀试验结果表明,随着铸造过程中熔化温度的增加,Hadfield钢呈现出更高的耐腐蚀性。腐蚀形态的SEM图像表明,哈尔菲尔德钢铸造工艺熔化温度的降低诱导的微电抗腐蚀条件。

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