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Analysis Method for Inelastic, Adhesively Bonded Joints with Anisotropic Adherends

机译:具有各向异性粘附的无弹性,粘合接头的分析方法

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A one-dimensional analysis method for evaluating adhesively bonded joints composed of anisotropic adherends and adhesives with nonlinear material behavior is presented in the proposed paper. The strain and resulting stress field in a general, bonded joint overlap are determined by using a variable-step, finite-difference solution algorithm to iteratively solve a system of first-order differential equations. Applied loading is given by a system of combined extensional, bending, and shear forces that are applied to the edge of the joint overlap. Adherends are assumed to behave as linear, cylindrically bent plates using classical laminated plate theory that includes the effects of first-order transverse shear deformation. Using the deformation theory of plasticity and a modified von-Mises yield criterion, inelastic material behavior is modeled in the adhesive layer. Results for the proposed method are verified against previous results from the literature and shown to be in excellent agreement. An additional case that highlights the effects of transverse shear deformation between similar adherends is also presented.
机译:在拟议的纸上提出了一种评价各向异性粘附和具有非线性材料行为的粘合接头的一维分析方法。通过使用可变步骤,有限差分解决方案算法确定一般,键合的关节重叠的应变和产生的应力场。迭代地解决一阶微分方程的系统。施加的加载由施加到关节重叠边缘的组合延伸,弯曲和剪切力的系统给出。假设使用经典层压板理论,以包括一阶横剪变形的影响,假设被粘物表现为线性的圆柱形弯曲板。使用可塑性的变形理论和改性的von-mises屈服标准,在粘合剂层中建模无弹性材料行为。所提出的方法的结果是针对文学的先前结果验证,并显示出很好的一致性。还提出了一种突出横向剪切变形的效果的额外情况,还提出了类似的粘物之间的影响。

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