Neutron and x-ray scattering studies of the metallurgical condition and residual stresses in Weldalite welds

S. Spooner, E. Pardue
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引用次数: 1

Abstract

Weldalite is a lithium-containing aluminum alloy which is being considered for aerospace applications because its favorable strength-to-weight ratio. Successful welding of this alloy depends on the control of the metallurgical condition and residual stresses in the heat affected zone. Neutron and x-ray scattering methods of residual stress measurement were applied to plasma arc welds made in aluminum-lithium alloy test panels as part of an evaluation of materials for use in welded structures. In the course of these studies discrepancies between x-ray and neutron results from the heat affected zone (HAZ) of the weld were found. Texture changes and recovery from the cold work, indicated in peak widths, were found in the HAZ as well. The consideration of x-ray and neutron results leads to the conclusion that there is a change in solute composition which modifies the d-spacings in the HAZ which affects the neutron diffraction determination of residual stresses. The composition changes give the appearance of significant compressive strains in the HAZ. This effect and sharp gradients in the texture give severe anomalies in the neutron measurement of residual stress. The use of combined x-ray and neutron techniques and the solution to the minimizing of the neutron diffraction anomalies are discussed.
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Weldalite焊缝中冶金条件和残余应力的中子和x射线散射研究
Weldalite是一种含锂的铝合金,由于其良好的强度重量比,正被考虑用于航空航天应用。这种合金的成功焊接取决于对冶金条件和热影响区的残余应力的控制。作为焊接结构材料评估的一部分,将中子和x射线散射法应用于铝锂合金测试板的等离子弧焊。在这些研究过程中,发现了焊缝热影响区(HAZ)的x射线和中子结果之间的差异。冷加工后的织构变化和恢复(峰宽)也在热影响区发现。考虑了x射线和中子的结果,得出了溶质组成的变化,改变了热影响区d-间距,从而影响了中子衍射测定残余应力的结论。成分的变化使热影响区出现了显著的压缩应变。这种效应和织构中的尖锐梯度使残余应力的中子测量出现严重异常。讨论了x射线和中子联合技术的应用以及使中子衍射异常最小化的方法。
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