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Fracture analyses of plastically-deforming adhesive joints.

机译:塑性变形粘合剂接头的断裂分析。

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摘要

A general modeling approach is developed for analyzing the fracture of plastically-deforming adhesive joints in this dissertation. This model involves using an embedded-process-zone (EPZ) model to represent the fracture of the adhesive and a nonlinear finite-element analysis (FEA) to calculate the elastic-plastic deformation of adherends. The EPZ model uses both the intrinsic joint toughness and the cohesive stresses to simulate the fracture process and allows the fracture of the adhesive to be coupled with the elastic-plastic deformation of the adherends. An important feature of the model is that the mode-mixedness is a natural outcome of the deformation history. As a result, the fracture of a plastically-deforming adhesive joint can be predicted without an a-priori knowledge of the mode-mixedness.; A systematic procedure to determine the model parameters experimentally is demonstrated. It is found that the parameters required for a numerical simulation can be obtained by comparing numerical and experimental results of two simple fracture tests: the wedge induced fracture of double-cantilever beams and the three-point bending of adhesively-bonded end-notched-flexure (ENF) specimens. More importantly, it is demonstrated that once the parameters have been found, the model can be used without any modification to simulate the fracture of other adhesive joints with different dimensions or different joint geometries under general loading conditions.; Based on this modeling approach, the fracture of a variety of plastically-deforming adhesive joints is simulated and the numerical predictions are compared with the associated experimental results. It is found that the numerical calculations are capable of providing quantitative predictions of adhesive joints under Mode-I (DCBs, symmetrical T-peel and 90°-peel joints), mode-II (ENF specimens) and mixed-mode (single lap-shear and asymmetrical T-peel joints) loading conditions. In addition, many important features related to the coupling effects between the fracture process and macroscopic plasticity are revealed in this study. In summary, this study establishes an effective analytical tool that is able to provide quantitative predictions of the fracture of plastic ally-deforming adhesive joints under general load conditions, which are of great importance to many key industries.
机译:本文开发了一种通用的建模方法来分析塑性变形胶接点的断裂。该模型涉及使用嵌入式工艺区域(EPZ)模型来表示粘合剂的断裂,并使用非线性有限元分析(FEA)来计算被粘物的弹塑性变形。 EPZ模型使用固有的接头韧性和内聚应力来模拟断裂过程,并使粘合剂的断裂与被粘物的弹塑性变形相关。该模型的一个重要特征是模式混合是变形历史的自然结果。结果,在没有模式混合的先验知识的情况下,可以预测塑性变形粘合剂接头的断裂。演示了系统确定模型参数的系统程序。通过比较两个简单的断裂试验的数值和实验结果,可以得出数值模拟所需的参数:楔形引起的双悬臂梁断裂和粘结端切口弯曲的三点弯曲(ENF)标本。更重要的是,证明了一旦找到参数,就可以使用该模型而无需进行任何修改来模拟在一般载荷条件下具有不同尺寸或不同几何形状的其他胶粘剂接头的断裂。基于这种建模方法,模拟了各种塑性变形粘合剂接头的断裂,并将数值预测与相关的实验结果进行了比较。结果发现,数值计算能够为模式I(DCB,对称T型剥离和90°剥离),模式II(ENF标本)和混合模式(单搭接)下的胶粘接头提供定量预测。剪切和不对称T型剥离接头的加载条件。此外,这项研究还揭示了许多与断裂过程和宏观塑性之间的耦合效应有关的重要特征。总而言之,这项研究建立了一种有效的分析工具,该工具能够对在一般载荷条件下塑性变形的胶粘剂接头的断裂提供定量预测,这对于许多关键行业都非常重要。

著录项

  • 作者

    Yang, Qingda.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Engineering Mechanical.; Applied Mechanics.
  • 学位 Ph.D.
  • 年度 2000
  • 页码 171 p.
  • 总页数 171
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;应用力学;
  • 关键词

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