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Effects of Two Different Cyclic Heat Treatments on Microstructure and Mechanical Properties of Ti-V Microalloyed Steel

机译:两种不同的循环热处理工艺对Ti-V微合金钢组织和力学性能的影响

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In this work the effects of two different cyclic heat treatments (traditional route and new-designed route, named as Route 1 and Route 2, respectively) on microstructure and mechanical properties of Ti-V microalloyed steel were investigated. The results showed that the mean grain size initially decreased on execution of 1-cycle (~13.9 μm) and then remained almost constant during the subsequent cycles for Route 1. By contrast, the mean grain size decreased continuously with cyclic numbers and reached ~4.6 μm at 7-cycle for Route 2. For Route 1, with cyclic numbers UTS decreased continuously and AKU kept fluctuating due to the accumulation effect of temper softening and continuous fluctuation of RD (relative differences of grain sizes), respectively. For Route 2, the continuing decline of UTS with cyclic numbers could be ascribed to the increase of mean complex carbide size, while the AKU underwent a process of increasing and then decreasing with cyclic numbers and reached the maximum (~183 J) at 3-cycle as a result of joint influence of mean grain size and proeutectoid ferrite proportion.
机译:在这项工作中,研究了两种不同的循环热处理(传统路线和新设计的路线,分别称为路线1和路线2)对Ti-V微合金钢的组织和力学性能的影响。结果表明,平均粒度在执行1个周期(〜13.9μm)时最初减小,然后在路线1的后续周期中几乎保持恒定。相比之下,平均粒度随着循环数连续减小,达到〜4.6。路线2的7个循环的μm。对于路线1,由于回火软化的累积效应和RD的连续波动(晶粒尺寸的相对差异),循环数UTS连续下降,AKU保持波动。对于路线2,UTS随循环数的持续下降可归因于平均复杂碳化物尺寸的增加,而AKU经历了一个随循环数先增大然后减小的过程,并在3时达到最大值(〜183 J)。平均晶粒度和共析铁素体比例共同影响的结果。

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