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首页> 外文期刊>The Journal of Adhesion >Solutions for Clamped Adhesively Bonded Single Lap Joint With Movement of Support End and Its Application to a Carbon Nanotube Junction in Tension
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Solutions for Clamped Adhesively Bonded Single Lap Joint With Movement of Support End and Its Application to a Carbon Nanotube Junction in Tension

机译:带有支撑端移动的夹紧式单圈搭接接头的解决方案及其在碳纳米管张力中的应用

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摘要

This article presents analytical solutions for a clamped-clamped adhesively bonded single lap joint with movement of supports and its application to studying the failure mechanism of carbon nanotube junctions in a tensile test. In the analytical model, the interface shear and normal stresses, movement of one support end, geometric nonlinearity, and the contact stresses between two cylinders are considered. Analytical solutions are derived for a clamped-clamped single lap joint with movement of one support end first, and then geometrically nonlinear finite element analysis is conducted to verify the present analytical solutions. An equivalent two-dimensional model is presented for a junction self-assembled by two carbon nanotubes, and the failure mechanism of the carbon nanotube junction is then studied by using the present analytical solutions. Structural performance of single lap joints with movement of support ends as boundary conditions is also investigated.
机译:本文介绍了一种具有支撑运动的夹紧式单键搭接接头的分析解决方案及其在研究拉伸试验中碳纳米管结的失效机理中的应用。在分析模型中,考虑了界面剪应力和法向应力,一个支撑端的运动,几何非线性以及两个圆柱体之间的接触应力。首先通过一个支撑端的运动获得一个夹紧式单搭接接头的解析解,然后进行几何非线性有限元分析以验证当前的解析解。针对由两个碳纳米管自组装的结,提出了一个等效的二维模型,然后利用现有的解析解研究了碳纳米管结的破坏机理。还研究了以支撑端移动为边界条件的单搭接接头的结构性能。

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