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Solutions of the interfacial shear and normal stresses in plate flexural-strengthened beams based on different complementary strain energy assumptions

机译:基于不同互补应变能量假设的板弯曲强化梁的界面剪切和正常应力的解

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A series of solutions based on five different complementary strain energy assumptions (named as Assumptions A, B, C, D, E) are developed for the prediction of interfacial shear and normal stresses in plate flexural-strengthened beams. Basic differences between the Assumptions are that in the formulating of the energy, Assumption A includes the transverse normal and shear stress fields in the beam and in the plate, Assumption B includes the normal stresses but exclude the shear stresses, Assumption C includes the shear stresses but excludes the normal stresses, Assumptions D excludes the normal stresses and the shear stresses in the beam but include the shear stresses in the plate, and Assumption E excludes the normal and shear stresses in the beam and in the plate. The energy expressions of the five Assumptions are developed based on derived statically admissible stress fields and an a generalized 2D-Hooke's law constitutive model. Through an energy variation principle, compatibility equations and boundary conditions of the interfacial stresses are obtained. Closed form and numerical solutions are then developed for the compatibility equations. By comparing against the interfacial stresses of 2D- and 3D-finite element analyses (FEA), it is observed that Assumptions A and B significantly under predict the interfacial stresses, Assumption C excellently predicts the interfacial normal stresses, Assumptions D and E excellently predict both the interfacial shear and normal stresses, and Assumptions (C, D, E) excellently capture the FEA stress fields (those are strongly varied across the adhesive thickness). The present study is applicable to plate-strengthened beams with general force boundary conditions but it is limited to linearly elastic orthotropic/isotropic materials.
机译:基于五种不同的互补应变能量假设(命名为假设A,B,C,D,e)的一系列解决方案用于预测板弯曲强化梁的界面剪切和正常应力。假设之间的基本差异在于,在配方中,假设A包括光束和板中的横向正常和剪切应力场,假设B包括正常应力但排除剪切应力,假设C包括剪切应力但排除了正常的应力,假设D排除了梁中的正常应力和剪切应力,而是包括板中的剪切应力,并且假设E不包括光束和板中的正常和剪切应力。这五个假设的能量表达是基于衍生的静止的静止的应力场和广义的2D-hoke的法律本构模型开发。通过能量变化原理,获得相容方程和界面应力的边界条件。然后为兼容方程式开发封闭形式和数值解决方案。通过比较2D-和3D-有限元分析(FEA)的界面应力(FEA),观察到假设A和B显着预测界面应力,假设C出色地预测了界面正常应力,假设D和E优先预测界面剪切和正常应力,以及假设(C,D,E)出色地捕获FEA应力场(在粘合剂厚度上强烈变化)。本研究适用于具有一般力边界条件的板加强梁,但它限于线性弹性正向/各向同性材料。

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