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Fatigue Damage Monitoring of a Laser Surface Treated Steel by X-Ray Diffraction Methods

机译:X射线衍射方法激光表面处理钢的疲劳损伤监测

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The evolution of fatigue damage in an austenitic stainless steel has been investigated by metallographic and X-ray diffraction (XRD) methods. The experimental results confirm a previously developed idea based on X-ray line breadth measurements. According to this idea, the operating mechanism for fatigue damage is the progressive work hardening of the material which takes place preferentially at the surface and advances gradually into the bulk. Fatigue fracture is related to the attainment of a critical work hardening level at the surface. The so-called integral breadth of the X-ray diffraction line was taken as an estimate of the work hardening. In the present work the X-ray line integral breadth has been used to monitor the accumulated work hardening of laser surface treated and untreated specimens during fatigue and is proposed as a non-destructive fatigue damage parameter. It is also shown that the map of the surface damage resulting from integral breadth measurements on broken specimens gives information about the microstructure and the fatigue damage evolution. Particularly, the change in the damage accumulation after the laser surface treatment is related to the microstructural changes caused by the treatment.
机译:通过金相和X射线衍射(XRD)方法研究了奥氏体不锈钢疲劳损伤的演变。实验结果证实了基于X射线线宽测量的先前开发的思路。根据这个思想,疲劳损坏的操作机制是优先在表面进行的材料的逐步工作硬化,逐渐进入散装。疲劳骨折与达到表面的关键工作硬化水平有关。 X射线衍射线的所谓积分宽度被视为估计硬化的工作。在本工作中,X射线线的整体宽度已用于监测疲劳期间激光表面处理和未处理标本的累积工作硬化,并提出作为非破坏性疲劳损伤参数。还示出了由破损标本上积分宽度测量产生的表面损伤的地图给出了关于微观结构和疲劳损伤演化的信息。特别地,激光表面处理后损伤积累的变化与治疗引起的微观结构变化有关。

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