Effect of Cryogenic Treatment on Mechanical Properties of AISI 4340 and AISI 4140 Steel

Abdul Rauf Rauf Jamali, Waseem Khan, A. Chandio, Zubai Anwer, M. H. Jokhio
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引用次数: 3

Abstract

From last epoch till to date, AISI 4340 and AISI 4140 have been widely used in different engineering applications. These applications include bolt, screws, gears, drive shafts, crane shaft and piston rods for engines due to its upright mechanical properties, cost-effective and easily available in market. In present work, deep cryogenic treatment effect on the mechanical properties of AISI 4340 and AISI 4140 have been studied. Present work was carried out at laboratory scale and can be extended for mass production. Our work is simple, straight forward safe and economical. In our work, samples were heat treated in simple muffle furnace and followed by cryogenic treatment in liquid nitrogen. Before cryogenic treatment, all samples were normalized at 860°C to obtain homogenized micro structure. Samples were also compared conventionally heat treatment with quenched in oil quenchant. Experimental results showed that after cryogenic treatment with tempering treatment, one could easily increase the tensile strength, impact toughness and hardness. Advanced optical microscopy (IMM 901) and SEM (Scanning Electron Microscopy), FIT Quanta 200 methods have also been deployed to reveal and interpret the internal structure of samples. It was found from micro structure that cryogenic treated sample increases the impact strength, hardness and tensile strength as compared conventional heat treated quenching approaches.
低温处理对AISI 4340和AISI 4140钢力学性能的影响
从上一个时代到今天,AISI 4340和AISI 4140已广泛应用于不同的工程应用。这些应用包括螺栓,螺钉,齿轮,传动轴,起重机轴和发动机活塞杆,由于其直立机械性能,成本效益高,易于在市场上获得。本文研究了深冷处理对AISI 4340和AISI 4140力学性能的影响。目前的工作是在实验室规模上进行的,可以扩展到大规模生产。我们的工作简单、直接、安全、经济。在我们的工作中,样品在简单的马弗炉中热处理,然后在液氮中低温处理。在深冷处理前,所有样品在860℃下正火,得到均匀的微观组织。并对样品进行了常规热处理和油淬的比较。实验结果表明,经低温回火处理后,可以很容易地提高拉伸强度、冲击韧性和硬度。先进的光学显微镜(IMM 901)和扫描电子显微镜(SEM), FIT Quanta 200方法也被用来揭示和解释样品的内部结构。显微组织分析发现,与常规热处理淬火方法相比,低温淬火试样的冲击强度、硬度和抗拉强度均有所提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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