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In-situ Investigation of the Fracture Behaviors of 2195-T8 Aluminum-Lithium alloy

机译:2195-T8铝锂合金断裂行为的原位研究

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In this paper, the tensile crack initiation and propagation behavior of 2195-T8 Aluminum-Lithium alloy was studied by in situ scanning electron microscope observation at room temperature. It was found that cracks initiated at second phases which propagated along the grain boundaries only as T1 phases could retard crack growth inside grains. With further increase of strain, within the grain a large number of slip bands were produced, resulting in the deflection of the grains, which leaded to transgranular fracture at last. SEM examination show both intergranular and transgranular fracture surface morphology indicating that the 2195-T8 alloy revealed a mix mechanism for the fracture.
机译:本文通过室温下原位扫描电子显微镜观察了2195-T8铝锂合金的拉伸裂纹萌生和扩展行为。发现在第二相处开始的裂纹仅在T1相时才沿着晶界传播,这会阻碍晶粒内部的裂纹扩展。随着应变的进一步增加,在晶粒内产生大量的滑移带,导致晶粒的挠曲,最终导致经晶断裂。 SEM检查显示出晶间和晶间断口的表面形态,表明2195-T8合金揭示了断口的混合机制。

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