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Flow behavior of Fe-3Si steel at high temperatures and strain rates

机译:Fe-3%Si钢在高温下的流动性能和应变率

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Hot deformation behavior of Fe-3%Si steel within temperature range of 1073~1473K and strain rate range of 0.01~5s~(-1) was investigated by isothermal compression test using thermo-simulation method. Over the applied deformation conditions, steady state flow behavior was well described by the power law relationship with dislocation climb as the rate-controlling mechanism, and the high apparent activation energy can be attributed to the high yield stress. A modified Bergstr?m model was proposed by introducing yield stress, and consequently the whole stress-strain curves can be accurately predicted.
机译:使用热模拟方法研究了1073〜1473K温度范围内Fe-3%Si钢的热变形行为,在1073〜1473K的温度范围内,0.01〜5s〜(-1)的温度范围为0.01〜5s〜(-1)。在施加的变形条件下,由于速率控制机制,电力法与位错升降的电力法律关系很好地描述了稳态流动行为,并且高表观激活能量可归因于高屈服应力。通过引入屈服应力提出了一种改进的BERGSTRαM模型,因此可以精确预测整个应力 - 应变曲线。

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