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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Impact of Annealing Prior to Solution Treatment on Aging Precipitates and Intergranular Corrosion Behavior of Al-Cu-Li Alloy 2050
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Impact of Annealing Prior to Solution Treatment on Aging Precipitates and Intergranular Corrosion Behavior of Al-Cu-Li Alloy 2050

机译:在溶液处理前退火的影响对老化沉淀物和铝锂合金2050的沉淀物和晶间腐蚀行为

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摘要

The influences of annealing prior to solution treatment on the grain structure, subsequent aging precipitates, and intergranular corrosion (IGC) of Al-Cu-Li alloy (AA2050) sheet with T6 aging at 448 K (175 degrees C) were investigated. Annealing impedes the full recrystallization during solution treatment, increasing the population density of T1 (Al2CuLi) precipitates, but decreasing that of theta' (Al2Cu) precipitates, of the aged alloy. Meanwhile, annealing leads to the heterogeneous distribution of T1 precipitates, increasing the alloy hardness, and decreasing the open-circuit potential of the aged alloy. With prolonged aging time, the corrosion mode of the aged AA2050 samples with and without annealing evolved in a similar manner. The corrosion mode as a function of aging may be summarized as local IGC with pitting and general IGC with pitting (following initial aging and under the underaged condition), pitting corrosion (later in the under-aging stage), pitting with slight IGC (near the peak-aged condition), and pitting with local IGC (under the overaging condition). The annealing treatment hinders IGC propagation on the rolling surface while accelerating the IGC on transverse surfaces. (C) The Minerals, Metals & Materials Society and ASM International 2018
机译:研究了在448k(175℃)下的α-Cu-Li合金(AA2050)片的晶粒结构,随后的衰老沉淀物和晶间腐蚀(IgC)的晶粒结构,随后的老化沉淀物和晶间腐蚀(IGC)的影响。退火在溶液处理期间抵抗全重结晶,增加T1(Al2Culi)沉淀物的人口密度,但降低老化合金的沉淀物(Al2Cu)沉淀物。同时,退火导致T1沉淀物的异质分布,增加合金硬度,降低老化合金的开路电位。随着延长的老化时间,老年AA2050的腐蚀模式具有和不使用退火的样品以类似的方式进化。作为老化的函数的腐蚀模式可以总结为具有蚀点和通用IGC的局部IGC,其中具有点蚀(初始老化和未发生的状态),蚀腐蚀(在衰老阶段后期),用轻微的IGC点(近峰值老化条件),并用局部IGC点(在过度划分条件下)。退火处理在横向表面加速IGC时阻碍轧制表面上的IGC传播。 (c)2018年矿物质,金属和材料协会和ASM国际

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