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Influence of Crystallographic Texture on Mechanical Properties in cold rolled 7XXX series Al alloys used in Space Applications

机译:空间应用冷轧7XXX系列铝合金的晶体织构对力学性能的影响

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This paper covers the influence of crystallographic texture on the mechanical properties in two of the most important high strength Al-Zn-Mg family of aluminium alloys, viz., AA7075 and AFNOR7020 alloys, used in the Aerospace industry. AFNOR7020 Alloy developed a stronger texture compared to the other two alloys. S component of texture is stronger in AA7075 alloy whereas the Bs component is stronger in AFNOR7020 alloy. This is attributed to the shear banding which was found absent in the other alloy. The starting material, AA7075 in T7352 condition and AFNOR7020 in T652 condition show some degree of anisotropy of mechanical properties with regard to yield strength and ultimate tensile strength. Higher degree of deformation leads to more pronounced anisotropy in mechanical properties with regard to yield strength and ultimate tensile strength, with a maxima along the transverse direction. For the alloys, experimentally measured Plastic Strain Ratio, r value, which is a measure of the texture present in the material in the deformation conditions, agree well with the computed values with a maximum at 45° orientation to the rolling direction.
机译:本文介绍了在航空航天工业中使用的两种最重要的高强度Al-Zn-Mg铝合金族(即AA7075和AFNOR7020合金)的晶体织构对力学性能的影响。与其他两种合金相比,AFNOR7020合金的织构更强。 AA7075合金中织构的S成分更强,而AFNOR7020合金中Bs成分更强。这归因于在其他合金中不存在的剪切带。在屈服强度和极限拉伸强度方面,起始材料T7352条件下的AAA7075和T652条件下的AFNOR7020表现出一定程度的机械性能各向异性。在屈服强度和极限抗拉强度方面,较高的变形程度导致机械性能的各向异性更加明显,并且沿横向方向具有最大值。对于合金,通过实验测得的塑性应变比r值(在变形条件下衡量材料中存在的织构)与计算值非常吻合,最大值与轧制方向成45°。

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