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A study to evaluate and understand the response of aluminum alloy 2026 subjected to tensile deformation

机译:评估和理解铝合金2026拉伸变形响应的研究

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The strain concentration factors were determined for aluminum alloy 2026 in the T3511 temper using multi-hole structural coupon specimens. Samples of the alloy were evaluated for both the 6.25 mm (0.25 in.) thick and 10 mm (0.4 in.) thick specimens and having widths of 50 mm (2 in.) and 100 mm (4 in.), respectively. For the case of the specimens that were 50 mm in width the mechanical tests were conducted for both the open hole and filled hole conditions and the corresponding strain concentration value was determined. Threaded fasteners having collars were used for the case of the filled hole specimens. The fasteners posses a shank diameter that was slightly larger than the nominal hole size in order to provide for some interference. The strain concentration values were evaluated at both the failure strain (ε_f) and the strain at maximum load (ε_(max)). The average strain concentration value was then used to predict the results for the stack-up tests.
机译:使用多孔结构试样样本确定了T3511回火中2026铝合金的应变集中系数。对合金样品的厚度分别为6.25毫米(0.25英寸)和10毫米(0.4英寸)的样品进行评估,其宽度分别为50毫米(2英寸)和100毫米(4英寸)。对于宽度为50 mm的样品,对裸眼和实心条件均进行了机械测试,并确定了相应的应变浓度值。对于填充孔的样品,使用具有轴环的螺纹紧固件。紧固件的柄直径略大于标称孔的直径,以提供一些干扰。分别在破坏应变(ε_f)和最大负荷应变(ε_(max))下评估应变浓度值。然后,将平均应变浓度值用于预测堆积测试的结果。

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