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In-plane shear behaviour of composite sandwich panel incorporated with shear keys methodology at different orientations: finite element study

机译:结合了剪切键法的复合夹芯板在不同方向的面内剪切特性:有限元研究

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摘要

The effect of introducing semi-circular shear keys in at the skin-core interface of the composite sandwich panels is illustrated numerically in the current study using ABAQUS software. Particularly, the effect of the shear keys orientation (shear grid), namely ±15°, ±30°, ±45°, ±60° and 90/0°, on the shear response of the sandwich panel is introduced. Composite sandwich panels consisting of polyurethane foam core sandwiched between stiff glass fibre reinforced polymer skins were used, while chopped strand glass fibre impregnated with epoxy resin was utilized for the keys. The nonlinear finite element model was built to capture the shear response and the damage mode of the sandwich panel with the shear grid. The finite element model nominated the model with ±60° grid orientation to be the most sustainable one among the other investigated models. In comparison to the model with shear keys in one direction (uni-axial model), the model with shear grid showed a significant reduction in the shear strength.
机译:在当前的研究中,使用ABAQUS软件以数字方式说明了在复合夹芯板的皮芯界面处引入半圆形剪切键的效果。特别地,介绍了剪切键方向(剪切网格),即±15°,±30°,±45°,±60°和90/0°对夹心板的剪切响应的影响。使用了由夹在硬质玻璃纤维增​​强的聚合物蒙皮之间的聚氨酯泡沫芯组成的复合夹芯板,而将浸渍有环氧树脂的短切玻璃纤维用作键。建立了非线性有限元模型,以捕获带有剪切网格的夹层板的剪切响应和损伤模式。在其他研究的模型中,有限元模型提名了±60°网格定向的模型为最可持续的模型。与具有一个方向的剪切键的模型(单轴模型)相比,具有剪切网格的模型显示出剪切强度的显着降低。

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