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Experimental study of shot peening and stress peen forming

机译:喷丸和应力喷丸成形的实验研究

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摘要

Shot peening is a cold working process widely used to improve fatigue life of aerospace and automobile components. Stress peen forming is widely used in the aeronautic industry to produce thin components with complex shapes, involving double curvatures, such as wing skins. In this paper, quantitative relationships between the saturation, surface coverage and roughness with respect to peening time have been established based on aluminum Al2024 test strips. The influences of peening velocity and peening time on the resulting residual stress profiles have been experimentally presented. The quantitative relationships between the prebending moment and the resulting arc heights of narrow strips and square strips have been experimentally investigated. Experimental results show that with the increases of the prebending moment, the resulting arc height following the prebending direction increases and the tendency is almost linear. Quantitative equations of the saturation, coverage and roughness as well as the relationship between the prebending moment and resulting arc height can be used for the optimization of shot peening and stress peen forming process.
机译:喷丸处理是一种冷加工工艺,广泛用于改善航空航天和汽车零部件的疲劳寿命。应力喷头成形广泛用于航空工业中,以生产形状复杂,涉及双曲率的薄部件,例如机翼蒙皮。在本文中,基于铝Al2024试条建立了饱和度,表面覆盖率和粗糙度与喷丸时间之间的定量关系。实验表明了喷丸速度和喷丸时间对所得残余应力分布的影响。实验研究了预弯矩与窄条和方条的弧高之间的定量关系。实验结果表明,随着预弯矩的增加,沿预弯方向产生的弧高增加,其趋势几乎呈线性。饱和度,覆盖率和粗糙度的定量方程以及预弯矩与所产生的电弧高度之间的关系可以用于优化喷丸处理和应力喷丸成形工艺。

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