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Fatigue crack propagation in a sintered 2xxx series aluminium alloy

机译:烧结2xxx系列铝合金中的疲劳裂纹扩展

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摘要

Many potential applications for sintered aluminium are limited by the poor fatigue properties of the material. In order to increase understanding of the fatigue mechanisms in sintered aluminium, fatigue tests were carried out on a sintered 2xxx series aluminium alloy, AMB-2712. The alloy has a fatigue endurance strength of approximately 145 MPa (R = 0.1). Three regions were identified on the fatigue fracture surfaces. Region 1 contains the initiation site and transgranular crack propagation. When the size of the cyclic plastic zone ahead of the crack becomes comparable to the grain size, microstructural damage at the crack tip results in a transition to intergranular propagation. Region 2 mainly contains intergranularly fractured material, whilst the final fracture area makes up Region 3, in the form of dimple coalescence and intergranular failure. Transgranular fractographic features observed on fatigued specimens include fissure-type striations, cross-hatched grains, furrowed grains and grains containing step-like features.
机译:烧结铝的许多潜在应用受到该材料不良的疲劳性能的限制。为了增加对烧结铝的疲劳机理的了解,对烧结的2xxx系列铝合金AMB-2712进行了疲劳测试。该合金的疲劳强度约为145 MPa(R = 0.1)。在疲劳断裂表面上确定了三个区域。区域1包含起始位点和跨晶裂纹扩展。当裂纹前的环状塑性区的尺寸变得与晶粒尺寸相当时,裂纹尖端的微结构破坏会导致过渡到晶间扩展。区域2主要包含晶间断裂的物质,而最终的断裂区域以酒窝合并和晶间破坏的形式构成了区域3。在疲劳标本上观察到的经晶形断裂特征包括裂缝型条纹,交叉影线的晶粒,沟纹的晶粒和包含阶梯状特征的晶粒。

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