首页> 外文期刊>Meccanica: Journal of the Italian Association of Theoretical and Applied Mechanics >A mesomechanical analysis of the stress-strain localisation in friction stir welds of polycrystalline aluminium alloys
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A mesomechanical analysis of the stress-strain localisation in friction stir welds of polycrystalline aluminium alloys

机译:多晶铝合金搅拌摩擦焊中应力应变局部化的细观力学分析

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摘要

A numerical analysis is presented of the microstructural effects on the deformation and fracture of friction stir welds in aluminium alloys. A dynamic boundary-value problem in a plane strain formulation is solved numerically by the finite-difference method. Experimental polycrystalline microstructures inherent in different weld zones-base material, weld nugget, and thermo-mechanically affected zones-were accounted for explicitly in the calculations. To simulate the mechanical response of individual grains, use was made of an elastic-plastic formulation of the problem accounting for isotropic strain hardening, including the Hall-Petch effect, and of a fracture model allowing for crack initiation and growth in the regions of maximum equivalent plastic strains. Plastic strain and fracture localisation is shown to depend on the strength of welded materials.
机译:数值分析表明了合金对铝合金搅拌摩擦焊缝变形和断裂的影响。用有限差分法数值求解了平面应变公式中的动态边值问题。计算中明确考虑了不同焊接区域固有的实验性多晶微观结构,包括基体材料,熔核和受热机械影响的区域。为了模拟单个晶粒的机械响应,使用了一种弹塑性配方,该配方解决了各向同性应变硬化问题,包括霍尔-帕奇效应(Hall-Petch effect),并采用了允许最大范围内裂纹萌生和扩展的断裂模型。等效的塑性应变。塑性应变和断裂的局部性取决于焊接材料的强度。

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