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首页> 外文期刊>Materials Science and Engineering >Experimental And Theoretical Studies Of Corrosion-induced Mechanical Properties Degradation Of Aircraft 2024 Aluminum Alloy
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Experimental And Theoretical Studies Of Corrosion-induced Mechanical Properties Degradation Of Aircraft 2024 Aluminum Alloy

机译:飞机2024铝合金腐蚀力学性能退化的实验与理论研究。

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摘要

In the present work, the influence of the corrosion exposure time on the mechanical properties degradation of the aluminum 2024-T3 alloy is studied. Tensile and fracture toughness mechanical tests had been carried out on pre-corroded specimens, exposed for different times to laboratory accelerated, exfoliation corrosion solution. The test results show that both the tensile mechanical properties as well as the fracture toughness exponentially decreased with increasing exposure time. A mechanical model has been devised to calculate the specimen's remaining effective thickness after different corrosion exposure times. It has been shown that the decrease in the alloy's fracture toughness is mainly associated with the thickness reduction degradation mechanism and a small reduction is attributed to hydrogen embrittlement. The hydrogen embrittlement degradation mechanism is saturated for exposure times up to 24h. For higher exposure times, the prevailing degradation mechanism of alloy's fracture toughness is the formation of corrosion-induced surface cracks and the resulting reduction of the effective thickness of the test specimen. An FE model has been developed for a fast calculation of the uncorroded alloy's fracture toughness with good results. The model has also been exploited to predict the alloy's fracture toughness degradation for the increasing exposure time to corrosive environment.
机译:在目前的工作中,研究了腐蚀时间对铝2024-T3合金力学性能下降的影响。已经对预腐蚀的试样进行了拉伸和断裂韧性的机械测试,这些试样在不同时间暴露于实验室加速的剥落腐蚀液中。测试结果表明,拉伸机械性能和断裂韧性均随着暴露时间的增加而呈指数下降。设计了一个机械模型来计算在不同的腐蚀暴露时间后样品的剩余有效厚度。已经表明,合金的断裂韧性的降低主要与厚度减小的降解机理有关,并且少量的减小归因于氢脆。氢脆降解机理在暴露时间长达24h时达到饱和。对于更长的暴露时间,合金断裂韧性的主要降级机理是腐蚀引起的表面裂纹的形成以及导致试样有效厚度的减小。已经开发了一个有限元模型来快速计算未腐蚀合金的断裂韧性,并取得了良好的效果。该模型还被用来预测随着腐蚀环境暴露时间的延长,合金的断裂韧性会下降。

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