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首页> 外文期刊>International Journal of Fatigue >Surface observation and measurement techniques to study the fatigue damage micromechanisms in a duplex stainless steel
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Surface observation and measurement techniques to study the fatigue damage micromechanisms in a duplex stainless steel

机译:表面观察和测量技术,以研究双相不锈钢的疲劳损伤微观机制

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摘要

The present work presents the contribution of various experimental techniques to study the low-cycle fatigue damage micromechanisms in a duplex stainless steel at room temperature. Surface damage observations are performed in real-time with an in situ microscopic device during a low-cycle fatigue test allowing to follow the development and localization of the plastic slip markings. An interferometric pro-filometer allows to characterize the morphology of the slip markings with surface relief measured at the end of the test. Moreover, a crystallographic description of the cyclic plasticity completes the surface damage analysis by the identification of slip systems activated in each grain in each phase from SEM and optical photographs and EBSD measurements. Finally, displacement and strain fields on the micro-structural scale calculated using digital image correlation technique from surface images taken during cycling explains from a qualitative and quantitative point of view the observed micromechanisms.
机译:本工作介绍了各种实验技术对研究室温下双相不锈钢的低周疲劳损伤微机制的贡献。在低循环疲劳测试期间,使用原位显微设备实时执行表面损伤观察,从而可以跟踪塑料滑行标记的发展和定位。干涉式轮廓仪可以在测试结束时通过表面起伏来表征滑痕的形态。此外,循环可塑性的晶体学描述通过从SEM和光学照片以及EBSD测量中识别出每个相中每个晶粒中激活的滑移系统,从而完成了表面损伤分析。最后,使用数字图像相关技术从循环过程中获取的表面图像计算出的微结构尺度上的位移和应变场,从定性和定量的角度解释了所观察到的微机制。

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