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首页> 外文期刊>Journal of engineering materials and technology >Improvement of the FatigueBehavior of Stainless SteelSubstrates by Low PressureFluidized Bed Peening (FBP)
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Improvement of the FatigueBehavior of Stainless SteelSubstrates by Low PressureFluidized Bed Peening (FBP)

机译:低压流化床喷丸强化(FBP)改善不锈钢基体的疲劳性能

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摘要

This study investigates the effectiveness of fluidized bed peening (FBP) to improve the fatigue behavior of axial-symmetric stainless steel substrates. The substrates were rotated at moderate speed inside a fluidized bed of stainless steel media. Their fatigue failure was determined by rotating bending testing procedure. The number of cycles to fracture was plotted versus the maximum amplitude of alternating stress for fluidized bed peened and unpeened substrates. The effect of peening time was also looked into. FBP was found to definitely improve the number of cycles to fracture. Fatigue life was normally increased of four to five times, although improvements up to an order of magnitude were detected. Hardness measurements, profilometry, scanning electron microscopy, and X-ray diffrac-tometry allowed interpreting the improvement of the fatigue behavior of the peened substrates. After FBP, the substrates surface was characterized by a higher hardness, a smoother and less defective morphology, as well as a beneficial compressive residual stress. Therefore, the improvement in surface and microstructural properties of the peened substrates induced a related increase in their fatigue life. Peening time was also found to influence the fatigue behavior of the substrates, although the sharpest variations in the number of cycles to fracture were observed at the beginning of the fluidized bed process. Based on the previous experimental findings, approximate analytical models, very useful for automation and process control, were proposed, thus providing to the practitioners first hints on how to best set FBP process parameters.
机译:这项研究调查了流化床喷丸(FBP)改善轴对称不锈钢基底疲劳行为的有效性。在不锈钢介质的流化床中以中等速度旋转基板。通过旋转弯曲测试程序确定其疲劳破坏。对于流化床喷丸处理的和未喷丸处理的基板,绘制了断裂的周期数与交变应力的最大幅度的关系图。还研究了喷丸时间的影响。发现FBP确实改善了断裂的循环次数。疲劳寿命通常可以提高四到五倍,尽管可以检测到提​​高一个数量级。硬度测量,轮廓测定法,扫描电子显微镜和X射线衍射测定法可以解释喷丸基体疲劳性能的改善。在FBP之后,基材表面的特征在于更高的硬度,更平滑和更少缺陷的形态以及有益的压缩残余应力。因此,经喷丸处理的基材的表面和微观结构性能的改善引起了它们疲劳寿命的相应增加。尽管在流化床工艺开始时观察到断裂循环数的最大变化,但仍发现喷丸时间会影响基材的疲劳性能。根据先前的实验结果,提出了对自动化和过程控制非常有用的近似分析模型,从而为从业人员提供了有关如何最佳设置FBP过程参数的第一条提示。

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