6000 系列铝合金板强度差效应的测量和分析

Kaisei Akiyama
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摘要

摘要使用单轴拉伸试验和平面压缩试验测量了经过 3 个月时效硬化的 1.1 毫米厚 6000 系列铝合金板 A6116-T4 的拉伸-压缩不对称(TCA,退火材料称为强度差效应,SDE)。结果发现,面内压缩流动应力比单轴拉伸流动应力高出 1-7%,因此该材料表现出 SDE。此外,还进行了试样法线(通厚)方向(ND)的堆叠压缩试验,以测量屈服应力的静水压力相关性。结果发现,ND 方向的单轴压缩流动应力比十字形等轴拉伸试验(ISO 16842)测得的等轴拉伸流动应力高 4-9%;因此,屈服应力的静水压力依赖性得到了证实。因此,结论是在 A6116-T4 中观察到的 SDE 是由屈服应力的静水压力依赖性引起的。
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Measurement and analysis of the strength differential effect of 6000-series aluminum alloy sheet
Abstract. The tension-compression asymmetry (TCA, referred to as the strength differential effect, SDE, for annealed materials) of a 1.1-mm-thick 6000-series aluminum alloy sheet, A6116-T4, which is 3-months age hardened is measured using a uniaxial tensile test and an in-plane compression test. It is found that the in-plane compressive flow stress is 1-7 % higher than the uniaxial tensile flow stress; therefore, the material exhibits the SDE. Moreover, a stacked compression test in the normal (through-thickness) direction (ND) of the test sample is also performed to measure the hydrostatic stress dependence of the yield stress. It is found that the uniaxial compressive flow stress in the ND is 4-9 % higher than the equibiaxial tensile flow stress measured using a cruciform equibiaxial tension test (ISO 16842); therefore, the hydrostatic stress dependence of the yield stress is confirmed. Hence, it is concluded that the SDE observed in A6116-T4 is caused by the hydrostatic stress dependence of the yield stress.
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