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首页> 外文期刊>Zeitschrift fur Metallkunde >Modeling of the hot deformation behavior of boron microalloyed steels under uniaxial hot-compression conditions
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Modeling of the hot deformation behavior of boron microalloyed steels under uniaxial hot-compression conditions

机译:单轴热压条件下硼微合金钢热变形行为的建模

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The present study shows that the hot deformation behavior of boron microalloyed steels can be quantitatively described by constitutive equations. These equations take into account both dynamic recovery and recrystallization phenomena. They have been fitted using experimental data taken from hot compression tests of four boron microalloyed steels in order to determine their characteristic parameters. The tests were carried out over a wide range of temperatures (950, 1000, 1050 and 1100℃) and strain rates (10{sup}(-3), 10{sup}(-2) and 10{sup}(-1)s{sup}(-1)). The analysis of the characteristic parameters of the constitutive equations describing the hot flow behavior of these steels shows that boron additions play a major role in softening mechanisms rather than on hardening. A quantification of the boron effect is also presented. The experimental data were compared with the predictions of the proposed model and an excellent agreement between measured and predicted values for all boron micro-alloyed steels over a wide range of temperatures and strain rates was obtained.
机译:本研究表明,可以通过本构方程定量描述硼微合金钢的热变形行为。这些方程式同时考虑了动态恢复和再结晶现象。已使用从四种硼微合金钢的热压缩测试中获得的实验数据对它们进行拟合,以确定它们的特征参数。该测试在很宽的温度范围(950、1000、1050和1100℃)和应变率(10 {sup}(-3),10 {sup}(-2)和10 {sup}(-1 )s {sup}(-1))。对描述这些钢的热​​流行为的本构方程的特征参数进行的分析表明,硼的添加在软化机理而不是硬化中起主要作用。还介绍了硼效应的量化。将实验数据与所提出模型的预测进行了比较,并获得了在各种温度和应变率范围内所有硼微合金钢的测量值与预测值之间的极佳一致性。

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