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Influences of hydrogen on deformation and fracture behaviors of high Zn 7XXX aluminum alloys

机译:氢对高锌7XXX铝合金变形和断裂行为的影响

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Hydrogen degrades the mechanical properties of high strength 7XXX aluminum alloys in two ways: (i) degrades the mechanical properties by hydrogen embrittlement, and (ii) partitioned into micropores as molecular hydrogen and make contributions to ordinary ductile fracture. The multifaceted effects of hydrogen on the mechanical properties of high Zn content 7XXX aluminum alloys during deformation and fracture is studied by using synchrotron X-ray microtomography. Our results have revealed that the hydrogen susceptibility has increased with increasing the Zn amount. High concentration of hydrogen was induced by the EDM wire eroder. This high concentrated hydrogen induces quasi-cleavage fracture and restricts the growth of micropores during ductile deformation. The threshold concentration of hydrogen ahead of the crack tip for the nucleation of quasi-cleavage feature was estimated to be .
机译:氢以两种方式降低高强度7XXX铝合金的机械性能:(i)通过氢脆化降低机械性能,(ii)分子氢以微孔的形式分配并导致普通的韧性断裂。利用同步辐射X射线显微照相技术研究了氢对高锌含量的7XXX铝合金变形和断裂过程中力学性能的多方面影响。我们的结果表明,随着Zn含量的增加,氢的敏感性增加。 EDM线腐蚀机诱导了高浓度的氢气。这种高浓度的氢引起准裂解断裂,并在韧性变形过程中限制了微孔的生长。据估计,在裂纹尖端前的氢的阈值浓度为准裂解特征的形核。

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