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Fatigue behaviour of bare and pre-corroded magnesium alloy AZ31

机译:裸露和预腐蚀镁合金AZ31的疲劳行为

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摘要

Constant amplitude fatigue tests have been performed using smooth specimens of a rolled AZ31 magnesium alloy in order to assess the fatigue behaviour of the material. The tests were periodically interrupted and replicas were taken from the surface of the specimens in order to reveal crack initiation and early crack propagation. Based on the derived S-N curve a very high stress sensitivity of the fatigue life can be concluded; it may be attributed to the inability of the material to accumulate fatigue damage in terms of cyclic plasticity at the early stage of fatigue. Fatigue cracks initiate already after few fatigue cycles between strain incompatibility points (e.g. grain boundaries) due to difficulties in satisfying the von Mises criterion. The initiation and propagation mechanisms of the fatigue cracks are characterized as cleavage. Furthermore, the corrosion susceptibility of the material has been investigated in a salt spray environment. It becomes evident that the presence of corrosion damage, in terms of corrosion pitting, results in the development of stress concentration, facilitating essentially the initiation and propagation of fatigue cracks. Thus, the fatigue limit is reduced to 50% of the respective value of the un-corroded material.
机译:为了评估材料的疲劳性能,已经使用轧制的AZ31镁合金的光滑试样进行了恒定振幅疲劳测试。测试被定期打断,并从试样表面上取下复制品,以揭示裂纹的产生和裂纹的早期扩展。根据导出的S-N曲线,可以得出疲劳寿命的极高应力敏感度。这可能归因于在疲劳早期,材料无法在循环可塑性方面积累疲劳损伤。由于难以满足von Mises准则,在应变不相容点(例如晶界)之间经过几次疲劳循环后,疲劳裂纹已经开始出现。疲劳裂纹的萌生和扩展机制以解理为特征。此外,已经在盐雾环境中研究了材料的腐蚀敏感性。显而易见的是,就腐蚀点蚀而言,腐蚀破坏的存在导致应力集中的发展,从本质上促进了疲劳裂纹的产生和传播。因此,疲劳极限减小到未腐蚀材料的相应值的50%。

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  • 来源
    《Materials & design》 |2010年第9期|P.4130-4137|共8页
  • 作者单位

    Laboratory of Technology & Strength of Materials, Department of Mechanical Engineering and Aeronautics, University of Patras, Panepistimioupolis Rion, 26500 Patras, Greece;

    rnLaboratory of Technology & Strength of Materials, Department of Mechanical Engineering and Aeronautics, University of Patras, Panepistimioupolis Rion, 26500 Patras, Greece;

    rnLaboratory of Technology & Strength of Materials, Department of Mechanical Engineering and Aeronautics, University of Patras, Panepistimioupolis Rion, 26500 Patras, Greece;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    fatigue; crack initiation; corrosion attack; fracture mode;

    机译:疲劳;裂纹萌生腐蚀攻击断裂模式;

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