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About the Role of Hydrogen in Stress Corrosion Cracking of a 7xxx Aluminium Alloy (Al-Zn-Mg)

机译:关于氢在7xxx铝合金(Al-Zn-Mg)的应力腐蚀开裂中的作用

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The effects of hydrogen during stress corrosion cracking mechanisms (SCC) have been highlighted for many years but hydrogen trapping mechanisms are not yet well understood for 7xxx aluminium alloys. The 7046-T4 Al-Zn-Mg alloy has been chosen for this study because its low corrosion susceptibility allows hydrogen embrittlement (HE) to be more easily distinguished during SCC tests. Tensile stress tests have been carried out at a strain rate of 10~(-3) s~(-1) on tensile samples after an exposure at their corrosion potential in a 0.6M chloride solution for 165 hours under an imposed loading of 80%R_(p0.2). The results were compared to those obtained for samples pre-corroded without mechanical loading applied and healthy specimens. A loss of mechanical properties was observed for the pre-corroded samples and presumably attributed to the absorption, the diffusion and the trapping of hydrogen which affects a volume under the surface of the alloy and modifies its mechanical properties. Scanning electron microscope (SEM) observations highlighted a strong effect of hydrogen on fracture modes. The ductile-intergranular initial fracture mode observed on the healthy samples was partially replaced for the pre-corroded samples by a combination of two main fracture modes, i.e. brittle intergranular and cleavage, in relation with the nature of the hydrogen trapping sites and local stress state.
机译:应力腐蚀开裂机理(SCC)中氢的影响已被强调了很多年,但对于7xxx铝合金,氢的俘获机理尚未得到很好的理解。本研究选择了7046-T4 Al-Zn-Mg合金,因为它的低腐蚀敏感性使在SCC测试中更容易区分氢脆(HE)。在0.6M氯化物溶液中将其腐蚀电位暴露于80%的载荷下165小时后,已经在拉伸样品上以10〜(-3)s〜(-1)的应变速率进行了拉伸应力测试。 R_(p0.2)。将结果与未施加机械载荷的预腐蚀样品和健康样品的结果进行了比较。对于预腐蚀的样品观察到机械性能的损失,大概归因于氢的吸收,扩散和捕获,这会影响合金表面下的体积并改变其机械性能。扫描电子显微镜(SEM)的观察结果突出了氢对断裂模式的强烈影响。在健康样品上观察到的延性-晶间初始断裂模式被两种主要断裂模式(脆性的晶间断裂和解理)结合氢捕获位点的性质和局部应力状态而部分替代了预腐蚀样品。 。

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