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Relating Almen intensity to residual stresses induced by shot peening: a numerical approach

机译:将Almen强度与喷丸引起的残余应力相关:一种数值方法

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摘要

Shot peening is a surface impact treatment widely used to improve the performance of metal parts and welded details subjected to fatigue loading, contact fatigue, stress corrosion and other damage mechanisms. The better performance of the peened parts is mainly due to the residual stresses resulting from the plastic deformation of the surface layers of the material caused by the impact of the shot. Shot peening intensity is usually quantified by means of the Almen-scale, which measures the residual arc height of a strip made of a specific material, and of a pre-defined size. The scale does not, in other words, apply solely to the residual stress field of a component of unspecified material and size. In this paper, a finite element to predict the residual stresses induced by shot peening in a metal part and to relate these stresses to Almen intensity is proposed; the aim is to provide the designer with a useful tool with which to choose the optimal treatment parameters with respect to the mechanical behaviour of the peened parts. Experimental measurements of residual stresses and a comparison with existing experimental data validate this approach.
机译:喷丸处理是一种表面冲击处理,被广泛用于改善金属零件和焊接零件的性能,这些零件和零件承受疲劳载荷,接触疲劳,应力腐蚀和其他损坏机制。喷丸零件的更好性能主要归因于由喷丸冲击导致的材料表层塑性变形产生的残余应力。喷丸强度通常通过Almen量表进行量化,该Almen量表测量由特定材料制成的钢带和预定尺寸的残余电弧高度。换句话说,该比例不仅仅适用于未指定材料和尺寸的组件的残余应力场。本文提出了一种有限元方法,用于预测金属零件喷丸硬化引起的残余应力,并将这些应力与阿尔门强度相关联。目的是为设计人员提供一个有用的工具,通过它可以根据喷丸零件的机械性能选择最佳的处理参数。残余应力的实验测量以及与现有实验数据的比较验证了该方法。

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