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首页> 外文期刊>Engineering Fracture Mechanics >Corrosion fatigue behavior of 7050 aluminum alloys in different tempers
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Corrosion fatigue behavior of 7050 aluminum alloys in different tempers

机译:不同回火温度下7050铝合金的腐蚀疲劳行为

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摘要

Corrosion fatigue (CF) experiments, including both high-cycle axial fatigue (S-N curve) and fatigue crack growth (FCG), have been performed on 7050 aluminum alloys in a 3.5 wt% NaCl solution as a function of aging treatment. The results of theseenvironmental tests were compared with those obtained in laboratory air to characterize the effect of aging treatment on CF susceptibility. Fatigue resistance in both peak aged (T6) and overaged (T73) tempers was dramatically reduced by the aqueouschloride environment. The FCG rates for T73 condition were lower than the counterparts for T6 condition in both air and saline solution. 7050-T73 alloy exhibited longer fatigue lives in air but shorter ones in the corrosive environment as compared to theT6 temper. This may be attributed to the formation of more extensive and larger corrosion pits acting as crack nuclei to facilitate crack initiation, in the T73 tempered condition. Comparison of CF and stress corrosion cracking (SCC) results reveals thatover-aging treatments used to improve grain boundary characteristics and increase the intergranular SCC resistance might not guarantee an equivalent improvement in the resistance to transgranular CF cracking.
机译:根据时效处理,已经在7050铝合金的3.5 wt%NaCl溶液中进行了包括高循环轴向疲劳(S-N曲线)和疲劳裂纹扩展(FCG)在内的腐蚀疲劳(CF)实验。将这些环境测试的结果与实验室空气中的结果进行比较,以表征老化处理对CF敏感性的影响。在氯化氢环境下,在峰值时效(T6)和过度时效(T73)的疲劳强度均大大降低。在空气和盐溶液中,T73条件的FCG率均低于T6条件的FCG率。与T6回火相比,7050-T73合金在空气中的疲劳寿命更长,而在腐蚀性环境中的疲劳寿命更短。这可能归因于在T73回火条件下,形成了更大且更大的腐蚀点,它们起裂纹核的作用,从而促进了裂纹的萌生。 CF和应力腐蚀开裂(SCC)结果的比较表明,用于改善晶界特性和增加晶界SCC抵抗力的过时效处理可能无法保证对晶界CF裂纹抵抗力的等效提高。

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