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Effects of Pre-Stretching on Creep Behavior Mechanical Property and Microstructure in Creep Aging of Al-Cu-Li Alloy

机译:预拉伸对Al-Cu-Li合金蠕变时效的蠕变行为力学性能和显微组织的影响

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摘要

The effects of pre-stretching on creep behavior, mechanical properties and microstructure during the creep aging process of Al-Cu-Li alloy were investigated. AA2195 was taken as the representative of Al-Cu-Li alloys. It is found that the total creep strain and strength property of creep aged AA2195 specimens can be improved through effective pre-stretching. Unlike with artificial aging, yield strength increased increasing by 47%. The TEM images show that the constitution of aging precipitates in the creep-aged specimens are obviously changed by pre-stretching. Precipitates in the 2% pre-stretched specimen are mainly composed of T1 phase, while a great amount of θ’ phase accompanied with a few T1 phase were found in the non-pre-stretched specimen. Moreover, pre-stretching introduces many dislocations which benefit the creep deformation, but the increasing dislocation density also accelerates the nucleation and growth of the precipitates as well. The premature T1 phase has a great blocking effect to the dislocation motion, creating a lower decrease rate but a longer duration in the early creep stage. Except for the initial dislocations, the dislocation motion in the creep aging process is also a favorable factor to precipitate the T1 phase.
机译:研究了预拉伸对Al-Cu-Li合金蠕变时效过程中蠕变行为,力学性能和微观组织的影响。以AA2195为代表的Al-Cu-Li合金。发现通过有效的预拉伸可以改善蠕变时效的AA2195试样的总蠕变应变和强度性能。与人工时效不同,屈服强度提高了47%。 TEM图像表明,蠕变时效试样中的老化析出物的成分通过预拉伸而明显改变。 2%预拉伸试样中的析出物主要由T1相组成,而在非预拉伸试样中发现了大量的θ’相和少量T1相。此外,预拉伸引入了许多有利于蠕变变形的位错,但位错密度的增加也加速了析出物的形核和生长。 T1期过早对位错运动有很大的阻碍作用,在蠕变初期,降低速率较低,但持续时间较长。除初始位错外,蠕变时效过程中的位错运动也是促使T1相析出的有利因素。

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