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Comparison of Coupled and Non-Coupled Finite Element Models for Joining of Cu-SS Tubes by Electromagnetic Forming

机译:电磁成形耦合和非耦合有限元模型与Cu-SS管连接的耦合和非耦合有限元模型

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Joining by electromagnetic forming is a high-speed joining technique mostly used for joining axisymmetric components without any metallic bond formation. It possesses huge potential for industrial applications. Finite elements models are proven very helpful in analyzing the various aspects of electromagnetic forming. Non-coupled simulation is observed to be more user-friendly and less time-consuming but less accurate at the same time. However, coupled approached is observed to more accurate but at the same time being more time consuming and bring more complexity. Therefore, this paper discusses a comparative analysis between coupled and non-coupled approach for solving electromagnetic-mechanical problems during joining of Cu-SS tubes by electromagnetic forming. The coupled model is developed using LS-DynaTMEM module, which uses the finite element method combined with the boundary element method to solve electromagnetic and mechanical process. While the coupled model is developed, using ANSYS Maxwell package to solve electromagnetic problem coupled with ANSYS explicit dynamics module to solve the mechanical problem. The magnetic field, velocity, effective plastic strain, deformation and thinning of outer tube is compared.
机译:通过电磁成形连接是一种高速连接技术,主要用于连接轴对称组分而无需任何金属粘合形成。它具有巨大的工业应用潜力。有限元模型被证明非常有助于分析电磁成形的各个方面。观察到不耦合模拟,以更用户友好,更少耗时,但同时更加准确。然而,观察到接近的接近更准确,但同时更加耗时并且带来更复杂。因此,本文讨论了通过电磁成型在Cu-SS管连接期间求解电磁 - 机械问题的耦合和非耦合方法的比较分析。耦合型号采用LS-DYNATMEM模块开发,该模块采用有限元法与边界元法相结合以解决电磁和机械过程。虽然开发了耦合型号,使用ANSYS MAXWELL包来解决与ANSYS显式动态模块耦合的电磁问题以解决机械问题。比较磁场,速度,有效塑性应变,变形和外管的变薄。

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