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首页> 外文期刊>Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing >Micromechanical aspects of fatigue in a MIG welded aluminium airframe alloy. Part 2. Short fatigue crack behaviour
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Micromechanical aspects of fatigue in a MIG welded aluminium airframe alloy. Part 2. Short fatigue crack behaviour

机译:MIG焊接铝机身合金疲劳的微观力学方面。第2部分。短暂的疲劳裂纹

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摘要

Short crack fatigue behaviour of a metal inert gas (MIG) welded 2024-T351 aluminium alloy has been studied in terms of crack initiation and propagation, and the microstructural features of the weld. Extensive crack initiation was noted within the weld fusion zone. Relatively small interdentritic defects are seen to be more damaging (in initiating cracks) than the larger gas bubble defects that exist in this region. Cracks were also seen to initiate within the weld heat affected zone where tensile residual stresses were found to be high, however, rapid crack growth and coalescence within the fusion zone is seen to dominate failure. Multiple crack interactions are seen to have a significant effect on failure up to relatively large crack lengths (of the order of the fusion zone width), enhancing the variability in short crack growth. Secondary electron and back-scattered electron imaging, in association with electron back-scattered diffraction (EBSD) mapping, were carried out on failed samples to assess the associated microstructural interactions.
机译:研究了金属惰性气体(MIG)焊接2024-T351铝合金的短裂纹疲劳行为,从裂纹的产生和扩展以及焊缝的微观结构方面进行了研究。在焊缝熔合区内发现了广泛的裂纹萌生。与该区域内存在的较大气泡缺陷相比,较小的树突缺陷被认为更具破坏性(引发裂纹)。还发现裂纹在焊缝热影响区中开始,在该处发现残余拉伸应力很高,但是,熔合区内的快速裂纹扩展和聚结被认为是失效的主要原因。可以看出,在相对较大的裂纹长度(约为熔合区宽度)时,多种裂纹相互作用对破坏具有重大影响,从而增强了短裂纹扩展的可变性。二次电子和背散射电子成像,结合电子背散射衍射(EBSD)映射,对失败的样品进行了评估,以评估相关的微结构相互作用。

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