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ADVANCED NUMERICAL SIMULATION OF THE CRIMPING PROCESS OF ELECTRIC CONNECTORS

机译:电连接器压接过程的高级数值模拟

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Crimping is a classical technology process to. ensure the electrical and the mechanical link between a wire and a connector. Numerical modelling of the process is helpful to choose and to optimize the dimensions of the crimping part of the connector. In this paper, we discuss a 2D simulation of the crimping process, using implicit and explicit finite element methods (ABAQUS/Standard and ABAQUS/Explicit) and we compare the results with experimental data from the industrial process of crimping (geometry, shape, surfaces and punch force). This non-linear problem involves large elasto-plastic strains and multiple contact conditions, with friction between the strands and the grip. One of the major difficulties of the simulation is due to the definition of all possible contact couples between strands. The explicit method is preferred for the modelling of multi-contact problems, in spite of the quasi-static process of crimping. Thus, some simulations with the implicit method have been performed to compare the results and tune the simulation parameters of the explicit approach (space and time discretization). Subsequently, parametric studies are performed to show the effect of the friction ratio or the position of the strands in the wire.
机译:压接是一种古典技术过程。确保电线和连接器之间的电气和机械连接。该过程的数值建模有助于选择和优化连接器的压接部分的尺寸。在本文中,我们讨论了压接过程的2D模拟,使用隐式和显式的有限元方法(ABAQUS /标准和ABAQUS /显式),并将结果与​​来自压接工业过程的实验数据进行比较(几何形状,形状,表面和打拳)。这种非线性问题涉及大的弹塑性菌株和多种接触条件,在股线和夹具之间摩擦。模拟的主要困难之一是由于股线之间所有可能的接触耦合的定义。尽管有压接的准静态过程,但对于多触点问题的建模是优选的显式方法。因此,已经执行了一些具有隐式方法的模拟以比较结果和调整显式方法的模拟参数(空间和时间离散化)。随后,进行参数研究以显示摩擦比或线中股线的位置的效果。

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