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Effect of Coiling Temperature on Microstructure and Mechanical Properties of a Nb-V Microalloyed Steel

机译:卷取温度对Nb-V微合金钢组织和力学性能的影响

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The effect of coiling temperature on the microstructure and mechanical properties of a Nb-V microalloyed steel was investigated. Controlled rolling followed by accelerated cooling and coiling was simulated by means of both, uniaxial compression, using a quenching and deformation dilatometer, and torsion. Specimens were reheated at 1250° for 5-10 min, then deformed at 1150°C, ε=0.3, and subsequently at 900°C, ε=0.4, followed by rapid cooling to a temperature between 450 and 700°C where coiling was simulated by holding the specimen for one hour at the selected temperature followed by a slow cooling to room temperature. Mechanical characterization was performed by means of hardness measurements and tensile tests, using tubular specimens machined from the torsion samples. It was found that decreasing the coiling temperature the ferrite-pearlite microstructure changed to ferrite-bainite, with a hardness peak reached for coiling at 600°C-650°C.
机译:研究了卷取温度对Nb-V微合金钢组织和力学性能的影响。通过淬火和变形膨胀计的单轴压缩和扭转,模拟了控制轧制,然后加速冷却和卷取的过程。将样品在1250°加热5-10分钟,然后在1150°Cε= 0.3变形,然后在900°Cε= 0.4变形,然后快速冷却至450-700°C之间的温度通过将样品在选定温度下保持一小时,然后缓慢冷却至室温进行模拟。借助于硬度测量和拉伸试验,使用由扭转样品加工而成的管状样品进行机械表征。发现降低卷取温度,铁素体-珠光体的显微组织变为铁素体-贝氏体,在600℃至650℃下卷取时达到了硬度峰值。

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