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Finite element stress response analysis and strength of butt adhesive joints of similar hollow cylinders subjected to impact tensile loadings

机译:撞击拉伸荷载作用下的相似空心圆柱体对接粘合接头的有限元应力响应分析及强度

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摘要

The stress wave propagation in butt adhesive joints of similar hollow cylinders subjected to impact tensile loadings are analyzed in elastic and elasto - plastic deformation ranges using a finite - element method. The impact loading is applied to the joint by dropping a weight. The upper end of the upper adherend is fixed and the lower adherend of which the lower end is connected to a guide bar is subjected to the impact loading. The FEM code employed is DYNA3D. The effect of the adhesive thickness and Young's modulus of the adhesive on the stress wave propagation at the interfaces are examined. In addition, the characteristics of the joints subjected to the impact loadings are compared with those of the joints under static loadings, and the strengths of the joints under static and impact loadings are estimated by using the interface stress distributions. It is found that the maximum value of the maximum principal stress σ{sub}1 occurs at the outside edge of the interface of the lower adherend to which the impact loading is applied. The maximum value of the maximum principal stress σ{sub}1 increases as Young's modulus of the adhesive increases when the joints are subjected to impact loadings. It is found that the characteristics of the joints subjected to impact loadings are opposite to those subjected to static loadings. In addition, experiments were carried out to measure the strain response of the butt adhesive joints subjected to impact and static tensile loadings using strain gauges and the joint strength was also measured. Fairy good agreements are observed between the numerical and the measured results concerning the strain responses and the joint strengths.
机译:使用有限元方法分析对受冲击拉伸载荷的类似空心圆柱体的对接粘合接头的应力波传播。通过滴加重量,将冲击载荷施加到接头上。上粘物的上端是固定的,并且下端的下粘物在下端连接到引导杆进行冲击载荷。使用的有限元代码是Dyna3d。研究了粘合剂厚度和粘合剂模量对接口处应力波传播的效果。此外,将受冲击载荷的关节的特性与静态载荷下的接头进行比较,并且通过使用界面应力分布估计静态和冲击载荷下的接头的强度。结果发现,最大主应力σ{sub} 1的最大值发生在施加冲击载荷的下粘物的界面的外边缘处。当关节经受冲击载荷时,最大主应力σ{sub} 1的最大值随着杨氏模量而增加。发现经受冲击载荷的关节的特性与对静载荷进行静态载荷的相反。另外,进行实验以测量对经受冲击和使用应变仪的静态拉伸载体的对接粘合接头的应变响应,并且还测量关节强度。在数值和测量结果之间观察到童话良好协议,了解有关应变反应和关节强度的测量结果。

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