> The effects of pre‐corrosion, i'/> Effects of pre‐corrosion on mechanical properties of 7B50‐T7751 aluminum alloy in sodium chloride solution
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Effects of pre‐corrosion on mechanical properties of 7B50‐T7751 aluminum alloy in sodium chloride solution

机译:预腐蚀对氯化钠溶液中7B50-T7751铝合金力学性能的影响

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摘要

> The effects of pre‐corrosion, including corrosion and stress corrosion, on the mechanical properties of 7B50‐T7751 aluminum alloy in sodium chloride solution were investigated. The results revealed that coarse and discontinuously distributed grain boundary precipitates (η‐MgZn 2 ) in the alloy resulted in decreased susceptibility to intergranular corrosion (IGC) and hydrogen embrittlement (HE). However, the mechanical properties (especially the elongation of the alloy) were significantly degraded, owing to the synergistic effect of anodic dissolution and hydrogenation associated with pre‐corrosion. This degradation was exacerbated by the tensile stress. With increased exposure time, the dominant mechanism for elongation degradation transformed from anodic dissolution to HE, and the effect of the tensile stress on the degradation decreased gradually. Moreover, the Weibull function model can be used to accurately and quantitatively describe the maximum pit depth evolution of the alloy.
机译: <第XML:ID =“Maco201709882-SEC-0001”编号=“否”> > 研究了预腐蚀,包括腐蚀和应力腐蚀的影响,对氯化钠溶液中7B50-T7751铝合金的机械性能进行了研究。结果表明,粗糙和不连续分布的晶界沉淀物(η-mgzn 2 )在合金中导致对晶间腐蚀(IGC)和氢脆化(HE)的易感性降低。然而,由于阳极溶解和与预腐蚀相关的氢化的协同效应,机械性能(特别是合金的伸长)显着降低。通过拉伸应力加剧了这种降解。随着曝光时间的增加,从阳极溶解转化为HE的伸长率降解的主导机制,并且拉伸应力对降解的效果逐渐降低。此外,可以使用Weibull功能模型来准确地和定量地描述合金的最大凹坑深度演化。

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