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Finite Element Analyses of Structural Stresses near Dissimilar Spot Joints in Lap-Shear Specimens

机译:膝盖剪切标本不同点关节附近的结构应力的有限元分析

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Structural stress distributions near nearly rigid, dissimilar and similar spot joints in lap-shear specimens are investigated by 3-D finite element analyses. A set of accurate closed-form structural stress solutions is first presented. The closed-form structural stress solutions were derived for a rigid inclusion in a square thin plate under various loading conditions with the weak boundary conditions along outer edges or semi-circular paths by satisfying the equilibrium conditions. Finite element analyses with different joint material behaviors, element types and mesh designs are conducted to examine the structural stress solutions near the spot joints in lap-shear specimens. The results of the finite element analyses indicate that the computational structural stress solutions on the edge of the joint depend on the joint material behavior, element type, and mesh design. However, the solutions do not significantly depend on the joint material behavior, element type, and mesh design at the radius distance of one and a half joint radius away from the joint where fatigue failures of mechanical joints, such as flow drill screw and self-piercing rivet joints, may occur.
机译:通过3-D有限元分析研究了搭接剪切样品中几乎刚性,不同和类似的点关节附近的结构应力分布。首先提出一组精确的闭合结构应力解决方案。通过满足平衡条件,在各种负载条件下,在各种负载条件下刚性包含弱边界条件的各种负载条件下闭合夹层的闭合性夹板。通过不同的关节材料行为,元素类型和网状设计进行有限元分析,以检查圈剪标本中点关节附近的结构应力溶液。有限元分析的结果表明关节边缘上的计算结构应力溶液取决于关节材料行为,元素类型和网格设计。但是,解决方案没有显着取决于一个半关节半径的接头距离的联合材料行为,元件类型和网格设计,远离机械接头的疲劳失效,例如流动钻螺钉和自我 - 可能发生刺穿铆钉关节。

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