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Influence of heat treatment on fatigue and fracture toughness behavior of AISI 4140 steel

机译:热处理对AISI 4140钢疲劳和断裂韧性行为的影响

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The present study is concerned with the effect of tempering temperature and time on the microstructure and its correlation with the mechanical properties, endurance strength and fracture toughness of AISI 4140 steel. In this study, the endurance strength of AISI 4140 steel in as received and heat treated conditions (hardening and tempering at different temperatures and time) were determined using Rotary Bending Fatigue tests at a constant stress ratio of R= -1. The fatigue strength was found to increase with decrease in tempering temperature. The fractured surfaces of the failed samples were examined under SEM and the micro mechanisms of fracture are used to explain the variations in the fatigue strength. An attempt has been made to evaluate the fracture toughness i.e. K_(IC) and J_(IC) on the CT specimen for as received material and heat treated samples, respectively. Fracture toughness values significantly improve after heat treatment as compared to the as received material. This is attributed to the change in microstructure from pearlite-ferrite to tempered martensite after heat treatment.
机译:本研究涉及回火温度和时间对微观结构的影响及其与AISI 4140钢的力学性能,耐久性强度和断裂韧性的相关性及其相关性。在该研究中,使用旋转弯曲疲劳试验以恒定应力比在R = -1的恒定应力比下测定AISI 4140钢的耐久性强度(在不同温度和时间和时间)确定。发现疲劳强度随着回火温度的降低而增加。在SEM下检查失败样品的裂缝表面,使用裂缝的微观机制来解释疲劳强度的变化。已经尝试评估CT样本上的裂缝韧性I..K_(IC)和J_(IC),分别为接受物质和热处理样品。与接受材料相比,在热处理后,断裂韧性值显着改善。这归因于珠光体 - 铁素体的微观结构变化在热处理后以磨料的马氏体。

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