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Hot Tensile and Fracture Behavior of 35CrMo Steel at Elevated Temperature and Strain Rate

机译:35CrMo钢在高温和高应变速率下的热拉伸和断裂行为

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摘要

To better understand the tensile deformation and fracture behavior of 35CrMo steel during hot processing, uniaxial tensile tests at elevated temperatures and strain rates were performed. Effects of deformation condition on the flow behavior, strain rate sensitivity, microstructure transformation, and fracture characteristic were characterized and discussed. The results indicated that the flow stress was sensitive to the deformation condition, and fracture occurs immediately after the peak stress level is reached, especially when the temperature is low or the strain rate is high. The strain rate sensitivity increases with the deformation temperature, which indicates that formability could improve at high temperatures. Photographs showing both the fracture surfaces and the matrix near the fracture section indicated the ductile nature of the material. However, the fracture mechanisms varied according to the deformation condition, which influences the dynamic recrystallization (DRX) condition, and the DRX was accompanied by the formation of voids. For samples deformed at high temperatures or low strain rates, coalescence of numerous voids formed in the recrystallized grains is responsible for fracture, while at high strain rates or low temperatures, the grains rupture mainly by splitting because of cracks formed around the inclusions.
机译:为了更好地了解35CrMo钢在热加工过程中的拉伸变形和断裂行为,在高温和高应变速率下进行了单轴拉伸试验。表征和讨论了变形条件对流动行为,应变率敏感性,微观结构转变和断裂特性的影响。结果表明,流动应力对变形条件敏感,在达到峰值应力水平后立即发生断裂,特别是在温度较低或应变率较高时。应变率敏感性随着变形温度的增加而增加,这表明在高温下可成形性可以提高。显示断裂表面和断裂部位附近基体的照片表明了材料的韧性。然而,断裂机理根据变形条件而变化,这影响了动态再结晶(DRX)条件,并且DRX伴随有空隙的形成。对于在高温或低应变率下变形的样品,在再结晶晶粒中形成的大量空隙的聚结是造成断裂的原因,而在高应变率或低温下,由于夹杂物周围形成的裂纹,晶粒主要通过分裂而破裂。

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