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Investigation of the effect of different cooling medium on the physical and tribological properties of heat treated EN 31 and EN 8 steel

机译:不同冷却介质对热处理EN 31和EN 8钢的物理和摩擦学特性影响的研究

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EN 8 and EN 31 steel find its major application in the field of automobile and wear resistance machine constituents. Based on wide range of applications of EN 8 and EN 31 grade steel, in the present work an experimental based investigation regarding effect of different cooling medium on the mechanical and tribological properties of heat treated EN 8 and EN 31 steel is carried out at constant temperature using quartz tube furnace. The microstructural images captured from optical microscope revealed refinement of grain structure of EN 8 steel with change in cooling medium from furnace cooling to oil quenching. However, negligible microstructural changes of EN 31 steel has been observed with change in cooling medium. The hardness of EN 8 and EN 31 found to be increased by changing the cooling medium from furnace cooling to water quenching and the maximum hardness in the both the cases were observed as 241.18 BHN and 254.60 BNH respectively. The tensile strength of EN 8 and EN 31 steel evaluated through universal testing machine (UTM) found to be decreased with change in cooling medium from furnace cooling to water quenching. The maximum tensile strength of water quenched EN 8 and EN 31 was observed as 631 N/mm~2 and 675 N/mm~2 respectively.
机译:EN 8和EN 31钢材发现其在汽车和耐磨机成分领域的主要应用。基于EN 8和EN 31级钢的广泛应用,在本作工作中,基于实验的关于不同冷却介质对热处理EN 8和EN 31钢的机械和摩擦性质的影响的实验研究使用石英管炉。从光学显微镜捕获的微结构图像显示EN 8钢的晶粒结构细化,随着炉冷却到油淬火的冷却介质的变化。然而,通过冷却介质的变化观察到ZH 31钢的微观结构变化。 EN 8和EN 31的硬度通过将来自炉冷却的冷却介质改变为水猝灭而增加,并且分别观察到两种情况下的最大硬度分别为241.18bhn和254.60bnh。通过通用试验机(UTM)评估的EN 8和EN 31钢的拉伸强度因来自炉冷却到水淬火而变化的冷却介质的变化降低。将水淬火EN 8和EN 31的最大拉伸强度分别观察为631N / mm〜2和675n / mm〜2。

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