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Interface mechanics of layered composite beam-type structures.

机译:层状复合梁型结构的界面力学。

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摘要

In this study, improved analytical models are developed to characterize interface behavior of layered composite beam-type structures. The mechanics models of the bonded interface with and without adhesive layer are established, from which the interface fracture, delamination buckling, free vibration and stress analysis across the adhesive layer of corresponding interface are studied.;By modeling an interface cracked bi-layer composite beam as two Timoshenko's sub-beams, elegantly simple but theoretically rigorous methods for computing the interface stresses and interface crack tip deformations are summarized, from which the distinguished levels of accuracy from different joint models in capturing the crack tip deformations are illustrated. Based on the flexible joint model, closed-form solutions of energy release rate (ERR) of four-point bending fracture specimens are first provided, and the experiment of wood-FRP bond interfaces under mode-II and mixed mode fracture is evaluated. An improved one-dimensional (1-D) analytical model is then developed to analyze the buckling behavior of a delaminated bi-layer composite beam-column. By accounting for the global deformations of the intact region, the present model is capable of capturing the buckling mode shape transitions from global, to global-local coexistent, and to local buckling for asymmetric delamination buckling as the interface delamination increases. An improved vibration analysis is further developed to evaluate the free vibration behavior of delaminated bi-layer composite beams. Besides including the delamination tip deformations, the contact and friction effects between the delaminated sub-layers are accounted for by employing the piecewise linear spring model and the linear bridging model. Frequencies and mode shapes are then solved through a boundary eigen-value problem.;An improved adhesively-bonded joint model is finally proposed to study the interface stress distributions in the plated beams with moderately-thick adhesive layer. Both the shear and normal stresses along different adherend-adhesive interfaces are assumed to be different, and the adhesive layer is modeled as a simplified 2-D elastic continuum, from which the closed-form expressions of interface stresses are then obtained. The improvement of the proposed model over other existing theoretical models is demonstrated by disclosing the shear and normal stress variations across the adhesive thickness direction.
机译:在这项研究中,开发了改进的分析模型来表征层状复合梁型结构的界面行为。建立了有粘结层和无粘结层的粘结界面的力学模型,研究了相应界面粘结层的界面断裂,分层屈曲,自由振动和应力分析。作为两个Timoshenko的子光束,总结了优雅而简单但理论上严谨的计算界面应力和界面裂纹尖端变形的方法,从中说明了不同接头模型在捕获裂纹尖端变形方面的显着精度水平。基于柔性接头模型,首先提供了四点弯曲断裂标本的能量释放率(ERR)的闭式解,并评估了II型和混合模式断裂下木材-FRP粘结界面的实验。然后,开发了一种改进的一维(1-D)分析模型来分析分层双层复合梁的屈曲行为。通过考虑完整区域的整体变形,本模型能够捕获从整体到整体局部共存以及到局部屈曲的屈曲模式形状转变,以随着界面分层增加而进行不对称分层屈曲。进一步开发了一种改进的振动分析,以评估分层双层复合梁的自由振动行为。除了包括分层尖端变形之外,还通过采用分段线性弹簧模型和线性桥接模型来考虑分层子层之间的接触和摩擦效应。然后通过边界特征值问题来求解频率和模态形状。最后,提出了一种改进的粘结接头模型,以研究具有中等厚度粘结层的镀层梁的界面应力分布。假定沿着不同的被粘物-胶粘剂界面的剪切应力和法向应力都不同,并且将胶粘剂层建模为简化的二维弹性连续体,然后从中获得界面应力的闭合形式。通过揭示整个胶粘剂厚度方向的剪切力和法向应力变化,可以证明所提出的模型相对于其他现有理论模型的改进。

著录项

  • 作者

    Chen, Fangliang.;

  • 作者单位

    Washington State University.;

  • 授予单位 Washington State University.;
  • 学科 Engineering Civil.;Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 222 p.
  • 总页数 222
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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