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Cyclic plasticity and low cycle fatigue damage characterisation of thermally simulated X100Q heat affected zone

机译:热模拟X100Q热影响区的循环塑性和低周疲劳损伤特征

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This paper presents the cyclic plasticity and low cycle fatigue (LCF) damage characterisation of thermally simulated heat affected zone (HAZ) for API 5L X100Q weldments. Microstructures representative of the HAZ for two cooling rates are generated using a Gleeble thermomechanical simulator for manufacture of strain-controlled cyclic plasticity test specimens. The simulated HAZ specimens are subjected to a strain controlled test programme which examines the cyclic effects of strain-range and the tensile response at room temperature. A modified version of the Chaboche rate independent plasticity model, which accounts for early stage damage is implemented to characterise the cyclic plasticity response, including isotropic and kinematic hardening effects. The constitutive parameters are fitted to experimental data using an optimisation procedure developed within a MATLAB code. The measured response of the simulated HAZ specimens is compared to that of the X100Q parent material (PM), and the simulated HAZ is shown to share the early stage fatigue damage behaviour of the PM, but exhibits significantly a higher yield and cyclic strength.
机译:本文介绍了API 5L X100Q焊件的热模拟热影响区(HAZ)的循环可塑性和低循环疲劳(LCF)损伤特征。使用Gleeble热机械模拟器生成代表两种冷却速率的热影响区的微结构,以制造应变控制的循环塑性试样。对模拟的热影响区样品进行应变控制测试程序,该程序检查应变范围的循环效应和室温下的拉伸响应。 Chaboche速率无关可塑性模型的修正版本解决了早期损坏,用于表征周期性可塑性响应,包括各向同性和运动学硬化效应。本构参数使用MATLAB代码内开发的优化程序拟合到实验数据。将模拟的HAZ样品的测量响应与X100Q母材(PM)的响应进行了比较,并显示模拟的HAZ具有PM的早期疲劳损伤行为,但具有较高的屈服强度和循环强度。

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