4.5 Article

Influence of Severe Shot Peening on the Surface State and Ultra-High-Cycle Fatigue Behavior of an AW 7075 Aluminum Alloy

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出版社

SPRINGER
DOI: 10.1007/s11665-017-2692-9

关键词

AW 7075 aluminum alloy; fatigue life; grain refinement; residual stress; severe shot peening

资金

  1. European regional development fund
  2. Slovak state budget [ITMS 313011D011, ITMS 26220220048]
  3. Scientific Grant Agency of the Ministry of Education, Science and Sports of the Slovak Republic
  4. Slovak Academy of Sciences [1/0045/17, 1/0951/17, 1/0123/15]

向作者/读者索取更多资源

The ever more pressing and concurrent requirements of light design, increased performances and reliability, energy savings together with acceptable costs, is always pushing researchers and engineers toward the definition and application of new materials and treatments, able to guarantee superior properties and adequate repeatability and reliability. This means that one step beyond the definition of a potentially successful solution, a complete characterization of the new materials is needed, in order to get the right data and use them in the design process. A promising severe plastic deformation surface treatment to improve the fatigue properties of materials and metal parts is considered in this paper. The used treatment is called the severe shot peening, and it is derived from the conventional shot peening but with use of unusually high peening parameters. It was proven that it is able to generate a nanostructured surface layer of material, which results in superior fatigue properties when applied to many structural materials. The severe shot peening is applied to an AW 7075 Al alloy, widely used in mechanical and aeronautic constructions and the effects of such a treatment on this material are investigated in this paper, with particular emphasis on the ultra-high-cycle fatigue behavior. The results address the choice of the correct treatment parameters for getting an evaluable advantage of this treatment and are critically discussed for a complete understanding of the mechanisms leading to the modified fatigue behavior, in view of the future developments and research in the field.

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