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Mechanisms of brittle intergranular fracture in Al-Li alloys and comparison with other alloys

机译:铝锂合金脆性晶间断裂机理及与其他合金的比较

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Evidence that brittle intergranular fracture in Al-Li alloys is associated with segregation of lithium, and maybe the formation of two-dimensional grain-boundary phases, is briefly reviewed. Particular attention is drawn to similarities between embrittlement of Al-Li alloys and segregation-induced embrittlement in other materials such as steels. High-resolution fractographic studies of Al-Li alloys to elucidate the atomic mechanisms of brittle intergranular fracture are then described. Brittle intergranular fracture surfaces were often featureless when examined by scanning electron microscopy, but transmission electron microscopy of replicas often revealed very shallow dimples, indicating that crack growth occurred by a very localized microvoid-coalescence process. The observations are explained in terms of decreased cohesion across grain boundaries due to lithium enrichment and grain-boundary structural changes. Low cohesion may facilitate void nucleation by decohesion (in the absence of grain-boundary precipitates in very underaged alloys) and may promote void growth by facilitating the emission of dislocations from crack tips. The applicability of the proposed mechanism to brittle intergranular fracture in other materials is also briefly discussed. [References: 29]
机译:简要回顾了Al-Li合金中的脆性晶间断裂与锂偏析有关的证据,并可能与二维晶界相的形成有关。特别注意Al-Li合金的脆化与其他材料(如钢)的偏析引起的脆化之间的相似性。然后描述了Al-Li合金的高分辨率分形研究,以阐明脆性晶间断裂的原子机理。当通过扫描电子显微镜检查时,脆性的晶间断裂表面通常没有特征,但是复制品的透射电子显微镜检查经常显示出非常浅的凹窝,表明裂纹的扩展是由非常局部的微孔聚结过程发生的。观察结果的解释是由于锂富集和晶界结构的变化,导致晶界内结合力降低。较低的内聚力可能通过脱内聚作用促进空隙成核(在非常不足时效的合金中不存在晶界沉淀物),并可能通过促进裂纹尖端的位错散发而促进空隙生长。还简要讨论了所提出的机制对其他材料中的脆性晶间断裂的适用性。 [参考:29]

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