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首页> 外文期刊>International Journal of Fracture >A study aimed at determining and understandingthe fracture behaviour of an Al-Li-Cu-Mg-Zr alloy 8090
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A study aimed at determining and understandingthe fracture behaviour of an Al-Li-Cu-Mg-Zr alloy 8090

机译:旨在确定和理解Al-Li-Cu-Mg-Zr合金8090断裂行为的研究

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The S-L fracture toughness of aluminium-lithium based alloys is generally poor and this has limited their applicability, particularly in aerospace where good damage tolerance is required. The low S-L toughness has been attributed variously to grain boundary precipitation, planar slip and lithium segregation. This work examined the S-L fracture behaviour of an 8090 Al-Li-based alloy in 34-45 mm plate. The results confirmed that the S-L fracture toughness decreases from the centre to the surface of plate material and increases with double ageing. Fracture is principally intergranu-lar, with both ductile and brittle components occurring, but some transgranular fracture also occurs and this produces steps in the fracture plane. Changes in the relative proportions of brittle and ductile intergranular fracture, as well as in the amount of transgranular fracture, accompany the changes in toughness. However, the decrease in fracture toughness across the plate is accompanied principally by an increase in the relative proportion of brittle intergranular fracture, while the toughening produced by double ageing is accompanied principally by an increase in the amount of transgranular fracture. Evidence of coarse slip, indicative of slip planarity, was seen from slip steps and dislocation structures. However, planar slip was seen only towards the centre of the plate and not towards the surface. The level of planar slip was not reduced markedly by double ageing. Texture varied with position across the plate. There were also a larger number of low angle boundaries towards the centre of the plate than towards the surface. The hardness did not change across the plate. The results could not be explained fully in terms of either the grain boundary precipitate theory or the planar slip model, but were generally consistent with the lithium segregation model. However, the basic tenet of this model is that the level of embrittlement is influenced by the grain boundary structure, and the results did not indicate a substantial difference between the boundaries that failed in a ductile manner and those which failed by brittle fracture. This suggests that the factors which affect lithium segregation may be more complex than originally envisaged.
机译:铝-锂基合金的S-L断裂韧性通常很差,这限制了它们的适用性,尤其是在要求良好的耐损伤性的航空航天中。低的S-L韧性已归因于晶界沉淀,平面滑移和锂偏析。这项工作检查了80-90 Al-Li基合金在34-45 mm钢板中的S-L断裂行为。结果证实,S-L断裂韧性从板材的中心到表面降低,并随着双重时效而增加。骨折主要发生在晶间,同时发生韧性和脆性成分,但是也发生了一些经晶状骨折,这在骨折面上产生了台阶。脆性和延展性晶间断裂的相对比例的变化,以及经晶断裂的数量的变化,伴随着韧性的变化。但是,整个钢板断裂韧性的降低主要伴随着脆性晶间断裂的相对比例的增加,而二次时效产生的韧性则主要伴随着晶界断裂量的增加。从滑移台阶和位错结构中可以看到表明滑移平面度的粗糙滑移的证据。但是,仅在板的中心而不是在表面上看到平面滑移。二次老化并没有显着降低平面滑移的水平。质地随板上的位置而变化。朝向板中心的低角度边界也比朝向表面的低角度边界更大。整个板的硬度没有变化。结果既不能用晶界沉淀理论也不能用平面滑移模型充分解释,但通常与锂偏析模型一致。但是,该模型的基本原则是脆化程度受晶界结构的影响,结果并未表明以延性方式破坏的边界与因脆性断裂而破坏的边界之间没有实质性差异。这表明影响锂偏析的因素可能比最初设想的更为复杂。

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