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首页> 外文期刊>Engineering Fracture Mechanics >Fatigue behavior of a low-alloy steel with nanostructured surface obtained by severe shot peening
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Fatigue behavior of a low-alloy steel with nanostructured surface obtained by severe shot peening

机译:严重喷丸处理得到的具有纳米结构表面的低合金钢的疲劳行为

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Severe shot peening aimed to generate a nanograined layer over specimens' surface has been applied by means of standard air blast equipment but using peening parameters essentially different from typical ones. Different experimental processes including microscopy observation, microhardness, roughness and X-ray diffraction measurements have been performed to characterize the treated surface of specimens. The results confirm the generation of a nanocrystallized surface layer. Rotating bending fatigue tests are then performed on smooth specimens to evaluate the effect of the nanocrystallized layer on fatigue strength. The results indicate improvement of fatigue life notwithstanding the specimen's very high surface roughness: a refinement of the treatment parameters aimed at reducing the roughness is proposed.
机译:旨在通过在标本表面上产生纳米颗粒层的强喷丸技术已通过标准鼓风设备进行了应用,但所使用的喷丸参数与典型的喷丸参数基本不同。已经进行了包括显微镜观察,显微硬度,粗糙度和X射线衍射测量在内的不同实验过程,以表征样品的处理表面。结果证实了纳米结晶表面层的产生。然后在光滑的样品上进行旋转弯曲疲劳测试,以评估纳米晶化层对疲劳强度的影响。结果表明,尽管试样的表面粗糙度非常高,但疲劳寿命得到了改善:提出了旨在降低粗糙度的处理参数的改进方案。

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