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A study on the strength of adhesively bonded joints with different adherends

机译:不同被粘物粘接接头强度的研究

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In this study, mechanical properties of adhesively bonded single-lap joint (SLJ) geometry with different configurations of lower and upper adherends under tensile loading were investigated experimentally and numerically. The adherends were AA2024-T3 aluminum and carbon/epoxy composite with 16 laminates while, the adhesive was a two-part liquid, structural adhesive DP 460. In experimental studies, four different types of single-lap joints were produced and used namely; composite-composite (Type-Ⅰ) with lower and upper adherends of the same thicknesses and four different stacking sequences, composite-aluminum (Type-Ⅱ) with lower and upper adherends of the same thicknesses and four different stacking sequences, composite-aluminum (Type-Ⅲ) with lower adherend (composite) of the same thickness but upper adherend of three different thicknesses, aluminum-aluminum (Type-Ⅳ) with lower adherend of the same thickness but upper adherend of three different thicknesses, composite-composite (Type-Ⅴ) with [0]_(16) stacking sequences and three different overlap length, aluminum-aluminum (Type-Ⅵ) with three different overlap length. In the numerical analysis, the composite adherends were assumed to behave as linearly elastic materials while the adhesive layer and aluminum adherend were assumed to be nonlinear. The results obtained from experimental and numerical analyses showed that composite adherends with different fiber orientation sequence, different adherend thicknesses and overlap length affected the failure load of the joint and stress distributions in the SLJ.
机译:在这项研究中,通过实验和数值研究了具有上下下被粘物不同构型的粘合单搭接接头(SLJ)几何形状的力学性能。被粘物是AA2024-T3铝和碳/环氧复合材料,具有16个层压板,而粘合剂是两部分的液体结构粘合剂DP460。在实验研究中,生产并使用了四种不同类型的单搭接接头:具有上下相同厚度和四个不同堆积顺序的被粘物的复合复合材料(Ⅰ型),复合铝(类型Ⅱ),四个相同的堆积顺序,具有上下厚度的被粘物,复合铝(Ⅱ型)具有相同厚度但下被粘物的厚度相同但具有三个不同厚度的上被粘物的Ⅲ型),具有相同厚度但具有三个不同厚度的上被粘物的下部铝(Ⅳ)具有相同的厚度,复合材料(类型Ⅲ) -Ⅴ)具有[0] _(16)的堆积顺序和三种不同的重叠长度,铝-铝(类型Ⅵ)具有三种不同的重叠长度。在数值分析中,假定复合被粘物表现为线性弹性材料,而假定粘合层和铝被粘物为非线性。通过实验和数值分析获得的结果表明,具有不同纤维取向顺序,不同被粘物厚度和重叠长度的复合被粘物会影响SLJ接头的破坏载荷和应力分布。

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