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Nitriding duration reduction without sacrificing mechanical characteristics and fatigue behavior: The beneficial effect of surface nano-crystallization by prior severe shot peening

机译:在不牺牲机械性能和疲劳性能的情况下减少渗氮持续时间:事先进行严格的喷丸处理后表面纳米结晶的有益效果

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摘要

Generally a clear beneficial effect of nitriding duration on resultant mechanical characteristics is reported in the literature. Considering the high energy cost in the competitive business environment, this work explores any opportunities to reduce nitriding duration while not sacrificing the resultant mechanical characteristics and fatigue behavior. To this end prior shot peening is applied with particularly severe parameters to generate ultra-fine grains and nano-structures in the surface layers. It was recently shown that the local fatigue strength improvement by combination of severe shot peening and 15 h nitriding could not eventually contribute in further increasing the fatigue limit of high strength low alloy steel smooth specimens as compared to only 15 h nitriding. In the present research combination of severe shot peening with nitriding at 7.5 h is assessed. It is affirmed that improvement by hybrid treatment can be actively exploited in the form of duration reduction. The characterization is carried out by optical and scanning electron microscopy observation, micro-hardness test, surface roughness measurement and X-ray diffraction measurement of residual stress. Fatigue limit of the treated specimens is experimentally determined. A critical comparison between the hybrid process with 50% nitriding duration reduction and the original nitriding process is presented. Based on the result of this study, nitriding duration can be successfully reduced without losing improvements in mechanical characteristics and fatigue behavior if a suitable prior severe shot peening, aimed to surface nano-crystallization, is performed.
机译:通常,文献中报道了氮化持续时间对所得机械特性的明显有益作用。考虑到竞争激烈的商业环境中的高能源成本,这项工作探索了减少氮化持续时间而又不牺牲最终机械性能和疲劳性能的任何机会。为此目的,以特别严格的参数进行喷丸硬化处理,以在表面层中产生超细晶粒和纳米结构。最近的研究表明,与仅进行15 h氮化处理相比,通过严格的喷丸处理和15 h渗氮处理来改善局部疲劳强度最终并不能最终进一步提高高强度低合金钢光滑试样的疲劳极限。在本研究中,评估了喷丸与7.5 h氮化的结合。可以肯定的是,可以以持续时间减少的形式积极地利用混合治疗来改善疾病。通过光学和扫描电子显微镜观察,显微硬度测试,表面粗糙度测量和残余应力的X射线衍射测量进行表征。通过实验确定处理样品的疲劳极限。提出了将氮化时间缩短50%的混合工艺与原始氮化工艺之间的关键比较。根据这项研究的结果,如果进行了针对表面纳米晶化的合适的事先严格的喷丸处理,则可以成功减少氮化持续时间,而不会损失机械性能和疲劳性能。

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  • 来源
    《Materials & design》 |2014年第3期|492-498|共7页
  • 作者单位

    Politecnico di Milano, Dipartimento di Meccanica, Via La Masa, 1, 20156 Milano, Italy,Department of Materials Science and Engineering, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, MA 02139, USA;

    Politecnico di Milano, Dipartimento di Meccanica, Via La Masa, 1, 20156 Milano, Italy,Department of Materials Science and Engineering, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, MA 02139, USA;

    Politecnico di Milano, Dipartimento di Meccanica, Via La Masa, 1, 20156 Milano, Italy;

    Lucchini RS S.p.A., Via G. Paglia, 45, 24065 Lovere, Italy;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Severe shot peening; Nitriding; Surface nano-crystallization; Fatigue behavior; Residual stress; Hardening;

    机译:严重的喷丸;渗氮表面纳米结晶;疲劳行为;残余应力;硬化;

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