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Stress Equations for Adhesive in Twodimensional Adhesively Bonded Joints/ Równania Napr??n W Plaskich Dwuwymiarowych Spoinach Klejowych

机译:二维胶粘接头中胶粘剂的应力方程/RównaniaNapr ?? n W Plaskich Dwuwymiarowych Spoinach Klejowych

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The subject of this paper is formulation of shear stress equations for plane twodimensional adhesive layers present in adhesively bonded joints. The adherends are assumed to have the same thickness and be made of an isotropic material. The shape of the adherends in the joint plane is arbitrary. The adhesive joint can be subjected to a shear stress arbitrarily distributed on the adherends surfaces as well as normal and shear stresses arbitrarily distributed along the adherends edges. A set of two partial differential equations of the second order with shear stresses in the adhesive as unknowns has been formulated. For a particular case of rectangular joints a set of 12 base functions has been derived; their appropriate linear combinations uniquely define shear stresses in the adhesive for a joint loaded arbitrarily by a set of axial forces, bending moments and shear forces.
机译:本文的主题是针对存在于粘结接头中的平面二维粘结层的剪切应力方程式。假定被粘物具有相同的厚度并且由各向同性材料制成。接合面上的被粘物的形状是任意的。粘合接头可以承受在被粘物表面上任意分布的剪切应力,以及沿着被粘物边缘任意分布的法向应力和剪切应力。已经制定了一组两个二阶偏微分方程组,其中粘合剂中的剪切应力为未知数。对于矩形接头的特殊情况,已经导出了一组12个基本函数。它们适当的线性组合通过一组轴向力,弯矩和剪切力唯一地定义了粘合剂在任意加载的接头中的剪切应力。

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