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Tensile properties and bendability of T4 treated AA6111 aluminum alloys

机译:T4处理的AA6111铝合金的拉伸性能和弯曲性

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The ductility and bendability of the AA6111 aluminum alloy have been investigated as a function of iron content ranging from 0.06 to 0.68 wt.%. A significant decrease in ductility (as measured by the reduction of area at fracture) is observed as the iron level increases. Both the low and high iron-containing alloys fail in a shear mode due to void sheeting. The low iron alloy can be bent fully, although it develops significant grooves on the tensile surface linked to shear bands. The high iron alloy, however, develops cracks, running parallel to the bend axis. Both shear bands and cracks propagate along lines of maximum shear, i.e. close to 45°to the maximum tensile direction. These processes are closely linked. Observations suggest that this material is damage-sensitive such that once voids nucleate in shear bands they rapidly develop shear cracks that propagate through a void sheeting process. This results in a significant loss of both tensile ductility (as defined by the reduction of area) and bendability with increasing Fe content.
机译:已经研究了AA6111铝合金的延展性和可弯曲性,其作为铁含量的函数,范围为0.06-0.68 wt。%。随着铁含量的增加,延展性显着下降(通过断裂面积的减少来衡量)。低和高铁合金由于空薄而在剪切模式下失效。低铁合金可以完全弯曲,尽管它在拉伸表面上形成了与剪切带相关的大量凹槽。但是,高铁合金会产生平行于弯曲轴的裂纹。剪切带和裂纹都沿着最大剪切线传播,即在最大拉伸方向上接近45°。这些过程紧密相连。观察结果表明,这种材料对损伤很敏感,因此一旦空隙在剪切带中成核,它们就会迅速形成剪切裂纹,并在空隙薄片过程中传播。随着Fe含量的增加,这导致拉伸延展性(由面积的减小定义)和弯曲性的显着损失。

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