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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Investigation of creep-age forming of aluminum lithium alloy stiffened panel with complex structures and variable curvature
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Investigation of creep-age forming of aluminum lithium alloy stiffened panel with complex structures and variable curvature

机译:复合结构和可变曲率的铝锂合金加筋面板蠕变龄形成研究

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摘要

Creep-age forming (CAF) is one of the effective techniques to fabricate extra-large integral airframe panels due to its good forming ability. However, few experimental researches have been conducted on stiffened panel with complex structures under creep-aging condition. In this work, a 1096 x 792-mm stiffened panel with typical structure features, such as stiffeners, the base plate with variable thickness, and the opening, has been formed on the tool of variable curvature at 165 degrees C for 10 h. Springback of the stiffened panel in static loading process is 91.1%, while it decreases to 82.3% after 10-h creep aging, which shows that plastic and creep deformation play an equivalent role in restraining the springback of the panel. Deformation of the stiffened panel concentrates around the opening with thicker plate and larger curvature, while little deformation occurs in the base plate with varied thickness or stiffeners. It indicates that the size, orientation, and position of the structure features all have significant impact on final shape of the stiffened panel. The accuracy of the corresponding finite element (FE) simulation has been verified by the fact that the proportion of the area, where the gap between the simulated and the experimental part is less than 0.6 mm, accounts for more than 90%.
机译:蠕变年龄成型(CAF)是由于其良好的成型能力而制造超大型积分机构面板的有效技术之一。然而,很少有实验研究已经在加强的面板上进行了复杂的结构,在蠕变衰老条件下进行了复杂的结构。在这项工作中,具有典型结构特征的1096 x 792-mm加强面板,例如加强件,具有可变厚度的基板和开口,在可变曲率下的165℃下形成10小时。静电加载过程中加强面板的回弹为91.1%,而10-H蠕变老化后它降至82.3%,这表明塑料和蠕变变形在抑制面板的回弹时起着等效作用。加强面板的变形在具有较厚的板和较大曲率的开口周围浓缩,而在厚度或加强件的底板中发生少量变形。它表明,结构特征的尺寸,方向和位置都对加强面板的最终形状产生显着影响。相应的有限元(Fe)模拟的准确性已经通过了该区域的比例,其中模拟和实验部分之间的间隙小于0.6mm,占90%以上。

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