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Numerical Simulation of Blind Hole Bolt Connection with 3-D Finite Element Approach

机译:盲孔螺栓连接的三维有限元数值模拟

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摘要

The simple, reliable and feasible finite element model with three-dimensional solid elements about blind hole bolt connection based on ANSYS is proposed to obtain bolt pre-tensional effect. It uses node coupling to simulate the connection effect of the thread and applies preload to the bolt in order to achieve pre-tensional effect by using the pretension elements in ANSYS. The FE model would be of great benefit to avoid computation of iterative large non-linearity contact behaviour when using a series of bolt joints, where the bolts are loaded in tension. The proposed model is verified by theoretical computing and shows to have good agreement. The FEM simulation analysis and theoretical computing results indicate that the maximum stress occurs in the first tooth of the thread, which bears about 30 percent of the load, and stress distribution is the same as real thread connecting.
机译:提出了一种基于ANSYS的盲孔螺栓连接三维实体元简单,可靠,可行的有限元模型,以获得螺栓预张效果。它使用节点耦合来模拟螺纹的连接效果,并对螺栓施加预载荷,以便通过使用ANSYS中的预应力元素来实现预应力效果。当使用一系列螺栓连接承受拉力的螺栓连接时,有限元模型对于避免迭代的大非线性接触行为的计算将大有裨益。通过理论计算验证了所提模型的有效性。有限元仿真分析和理论计算结果表明,最大应力出现在螺纹的第一个齿上,承担大约30%的载荷,应力分布与实际螺纹连接相同。

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