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Effect of Heat Treatments on the Mechanical and Electrochemical Corrosion Behavior of 38CrSi and AISI 4140 Steels

机译:热处理对38Crsi和AISI 4140钢的机械和电化学腐蚀行为的影响

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The aim of this investigation was to compare the microstructural, mechanical and electrochemical corrosion characteristics of 38CrSi steel with widely used AISI 4140 steel under various heat treatment processes to widen its field of applications. Experimental steels 38CrSi and AISI 4140 were subjected to austenitizing at 900 °C for 30 min followed by annealing, quenching in oil and quenching followed by tempering at 400 °C for 120 min. Microstructure of 38CrSi and AISI 4140 steels was characterized by light optical and scanning electron microscopy. Tensile, Charpy impact toughness and Rockwell hardness testing techniques were used to evaluate the mechanical properties. Electrochemical corrosion behavior was evaluated by a Tafel scan in tape water. Results show that microstructure of both steels comprised of ferrite and pearlite after annealing, packets and blocks of lath martensite with retained austenite after quenching and tempered lath martensite with retained austenite after quenching, and tempering with varying grain size distribution and volume fractions of different phases. Hardness and tensile properties of both steels varied in quite identical manner, while impact toughness of both steels varied in inverse manner. 38CrSi steel was found to be brittle, while AISI 4140 steel exhibited excellent properties under all heat treatment processes. In 38CrSi, the corrosion rate decreases as compared to the as-received sample from 0.515 to 0.486 mpy in quenching and tempering heat treatment, while in AISI 4140 steel the corrosion rate decreases during quenching from 0.620 to 0.472 mpy.
机译:该调查的目的是将38Crsi钢的微观结构,机械和电化学腐蚀特性与各种热处理过程中广泛使用的AISI 4140钢进行了扩展,以扩大其应用领域。实验钢38Crsi和AISI 4140在900℃下进行奥氏体化30分钟,然后退火,在油和淬火中淬火,然后在400℃下回火120分钟。通过光光和扫描电子显微镜表征38CrSi和AISI 4140钢的微观结构。使用拉伸,夏比冲击韧性和罗克韦尔硬度测试技术来评估机械性能。通过Tafel扫描在胶带水中评估电化学腐蚀行为。结果表明,在淬火后淬火和淬火后的奥氏体后,由淬火和淬火后的奥氏体的Lath Martensite的两种钢的微观结构,并在淬火后的保留奥氏体,以及具有不同粒度分布和不同阶段的体积分数的回火。两个钢的硬度和拉伸性质以相同的方式变化,而两个钢的冲击韧性以反向方式变化。发现38Crsi钢是脆性的,而AISI 4140钢在所有热处理过程下表现出优异的性能。在38CrSi中,与淬火和回火热处理的0.515至0.486 mpy相比,腐蚀速率降低,而在AISI 4140钢中,淬火在0.620至0.472 mpy期间腐蚀速率降低。

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