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Characterization of Low Cycle Fatigue Performance of New Ferritic P92 Steel at High Temperature: Effect of Strain Amplitude

机译:新型铁素体P92钢在高温下的低周疲劳性能的表征:应变幅度的影响

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Low cycle fatigue (LCF) tests were performed at various strain amplitudes ranging from 0.2 to 0.8% to investigate the effects of strain amplitude on cyclic softening behavior and LCF lifetime of new ferrtic P92 steel. LCF tests were conducted under strain controlled in fully reversed manner with strain rate of 1.0x10(-3)s(-1) at high temperature of 650 degrees C. A novel fatigue life end criterion was adopted in this analysis. The effects of strain amplitude on the cyclic softening behavior, the evolution of plastic strain amplitude, hysteresis loop area, and the fatigue life were discussed. Similar softening curves were achieved except for the strain amplitude of 0.2%. The evolution of hysteresis loop areas at the smaller strain range amplitude (less than 0.4%) is contrary to the larger ones. A modified life prediction model was proposed based on Coffin-Manson model and energy-based model, comparison of predicted lifetime and experimental data shows that the model gives a good estimation. In order to better understand the basic stress-strain behavior, time-independent cyclic plasticity model was used to represent the cyclic mechanical behavior of this steel. Comparison of the simulated and experimental results shows that the proposed model can give a reasonable prediction of stress-strain hysteresis loop for P92 steel at high temperature.
机译:在0.2至0.8%的各种应变幅度下进行了低循环疲劳(LCF)测试,以研究应变幅度对新型铁素体P92钢的循环软化行为和LCF寿命的影响。 LCF测试在完全反向控制的应变下进行,应变速率为1.0x10(-3)s(-1),在650摄氏度的高温下进行。本分析采用了新的疲劳寿命终止准则。讨论了应变振幅对循环软化行为,塑性应变振幅的演变,磁滞回线面积和疲劳寿命的影响。除了0.2%的应变幅度外,获得了相似的软化曲线。磁滞回线区域在较小的应变范围振幅(小于0.4%)处的演化与较大的相反。在Coffin-Manson模型和基于能量的模型的基础上,提出了一种改进的寿命预测模型。为了更好地理解基本的应力-应变行为,使用了与时间无关的循环可塑性模型来表示该钢的循环力学行为。仿真结果与实验结果的比较表明,所提出的模型可以合理预测P92钢在高温下的应力应变滞后回线。

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