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NUMERICAL ANALYSIS OF THE CONTRIBUTION OF SHOT PEENING IN THE FATIGUE STRENGTH OF MULTIPASS WELDED JOINTS

机译:多级焊接关节疲劳强度射击喷丸纺丝贡献的数值分析

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Tensile residual stress (RS) peaks near the weld toe accelerate crack generation and propagation stages reducing dramatically the life of welded components. In order to relief RS, components are typically heat-treated. However, heat treatments can affect the microstructure compromising mechanical properties. In addition, their application in big structures is complex due to size limitations. As an alternative, mechanical treatments such as shot peening can be locally applied. Moreover, they generate local compressive stresses in the treated surfaces, which present beneficial effect in the fatigue strength of treated components. In the present work, the contribution of shot peening in the fatigue strength of multipass welded joints is numerically evaluated. For that purpose, first the RS stress pattern of a 3 pass butt weld of 10mm thick, 50mm length S275JR plates is calculated. Following, the application of shot peening in the tensile RS area is modelled and the evolution of RS pattern is analyzed. Finally, the fatigue strength of treated and non-treated butt welds is evaluated.
机译:焊接脚趾附近的拉伸残余应力(RS)峰值加速裂缝产生和传播阶段在焊接部件的寿命中显着降低。为了浮雕Rs,部件通常进行热处理。然而,热处理可以影响机械性能的微观结构。此外,由于尺寸限制,它们在大结构中的应用是复杂的。作为替代方案,可以在本地施加射击喷丸等机械处理。此外,它们在处理过的表面产生局部压缩应力,这对治疗组分的疲劳强度存在有益效果。在目前的工作中,在数值评估了散发力的疲劳强度疲劳强度的贡献。为此目的,首先,首先将3毫米厚的3杆焊接焊缝的RS应力图案计算,50mm长度的S275JR板进行计算。遵循的是,在拉伸RS区域中喷射喷丸的应用是建模的,分析了RS模式的演化。最后,评估了处理和未处理的对接焊缝的疲劳强度。

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