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Effect of initial forging temperature on mechanical properties and fatigue behavior of EA4T steel

机译:初步锻造温度对EA4T钢力学性能和疲劳行为的影响

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An EA4T steel billet was forged at the different initial forging temperatures (1050, 1150, and 1250 degrees C). The microstructure and fatigue fracture of forged samples were observed by laser scanning confocal microscopy and scanning electron microscopy, respectively. The fatigue performance of samples forged at an initial forging temperature of 1250 degrees C was better owing to the presence of fine polygonal ferrite (PF). The difference in yield strength and ultimate tensile strength can be attributed to the average grain size of PF and acicular ferrite (AF) content, respectively. A relationship between the tensile strength and fatigue limit of EA4T steel is proposed. The mechanism of grain size and dislocation slip affecting the fatigue property was elucidated. Because the fine PF grains delayed the dislocations moving to the surface and inhibited the formation of intrusion and extrusion, premature cracks were not easily produced. This contributed to excellent fatigue behavior. Additionally, the pearlite colonies and fine PF delayed the crack growth rate and changed the crack propagation path. Studies on fatigue behavior provided a foundation for quality control and engineering application of EA4T steel.
机译:在不同的初始锻造温度(1050,1150和1250℃)上锻造EA4T钢坯。通过激光扫描共聚焦显微镜和扫描电子显微镜观察锻造样品的微观结构和疲劳骨折。由于细大多晶铁氧体(PF)存在,在1250℃的初始锻造温度下锻造的样品的疲劳性能更好。屈服强度和最终拉伸强度的差异可归因于PF和针状铁氧体(AF)含量的平均晶粒尺寸。提出了EA4T钢的拉伸强度和疲劳极限之间的关系。阐明了影响疲劳性能的晶粒尺寸和位错滑的机理。因为细PF晶粒延迟了移动到表面的脱位,并且抑制侵入和挤出的形成,不容易产生过早的裂缝。这有助于出色的疲劳行为。另外,珠光体菌落和精细PF延迟了裂缝生长速率并改变了裂缝繁殖路径。疲劳行为的研究为EA4T钢的质量控制和工程应用提供了基础。

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