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Dynamic numerical simulation of plastic deformation and residual stress in shot peening of aluminium alloy

机译:铝合金喷丸强化中塑性变形和残余应力的动态数值模拟

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摘要

Shot peening is a cold surface treatment employed to induce residual stress field in a metallic component beneficial for increasing its fatigue strength. The experimental investigation of parameters involved in shot peening process is very complex as well as costly. The most attractive alternative is the explicit dynamics finite element (FL) analysis capable of determining the shot peening process parameters subject to the selection of a proper material's constitutive model and numerical technique. In this study, Ansys / LS-Dyna software was used to simulate the impact of steel shots of various sizes on an aluminium alloy plate described with strain rate dependent elasto-plastic material model. The impacts were carried out at various incident velocities. The influence of shot velocity and size on the plastic deformation, compressive residual stress and force-time response were investigated The results exhibited that increasing the shot velocity and size resulted in an increase in plastic deformation of the aluminium target. However, a little effect of the shot velocity and size was observed on the magnitude of target's subsurface compressive residual stress. The obtained results were close to the published ones, and the numerical models demonstrated the capability of the method to capture the pattern of residual stress and plastic deformation observed experimentally in aluminium alloys. The study can be quite helpful in determining and selecting the optimal shot peening parameters to achieve specific level of plastic deformation and compressive residual stress in the aluminium alloy parts especially compressor blades.
机译:喷丸处理是一种冷表面处理,用于在金属部件中引起残余应力场,有利于增加其疲劳强度。喷丸处理过程中涉及的参数的实验研究非常复杂且昂贵。最具吸引力的替代方法是显式动力学有限元(FL)分析,该分析能够确定喷丸处理工艺参数,但要选择适当的材料本构模型和数值技术。在这项研究中,使用了Ansys / LS-Dyna软件来模拟各种尺寸的钢丸对铝合金板的影响,并根据应变速率相关的弹塑性材料模型对其进行了描述。冲击是在各种入射速度下进行的。研究了弹丸速度和大小对塑性变形,压缩残余应力和力时响应的影响。结果表明,增加弹丸速度和大小会导致铝靶塑性变形的增加。但是,观察到弹丸速度和大小对目标物的地下压缩残余应力的大小影响很小。所得结果与已发表的结果接近,并且数值模型证明了该方法具有捕获铝合金中实验观察到的残余应力和塑性变形模式的能力。该研究对于确定和选择最佳喷丸强化参数,以达到铝合金零件(尤其是压缩机叶片)的塑性变形和压缩残余应力的特定水平非常有帮助。

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