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Numerical simulation of the magnetic pressure in tube electromagnetic bulging

机译:管电磁鼓胀中磁压的数值模拟

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摘要

Electromagnetic forming is a kind of high energy rate forming; in which magnetic pressure analysis is the foundation of theoretical analysis. Usually equivalent methods are used to resolve any problems, but because of the limitations of the calculation methods, only the average force which acts on the workpiece can be obtained. Especially, the tolerances at the end of the workpiece are higher, which results in great difficulties in the deformation analysis of the workpiece. This paper carries out a numerical simulation of the magnetic pressure acting on the workpiece during electromagnetic bulge forming by use of the FEA software ANSYS. The boundary conditions of the analysis model are established on the basis of theoretical analysis of the magnetic field properties. Through measuring the magnetic induction intensity between the coil and the workpiece, the simulative results are proven to be accurate. This is the first time that the magnetic pressure distribution in the thickness direction of the workpiece has been explored through FEM.
机译:电磁成形是一种高能率成形。其中电磁压力分析是理论分析的基础。通常使用等效方法来解决任何问题,但是由于计算方法的局限性,只能获得作用在工件上的平均力。特别是,在工件的端部的公差更高,这在工件的变形分析中造成很大的困难。本文利用有限元分析软件ANSYS对电磁胀形过程中作用在工件上的磁压力进行了数值模拟。分析模型的边界条件是在对磁场特性进行理论分析的基础上建立的。通过测量线圈和工件之间的磁感应强度,仿真结果被证明是准确的。这是首次通过FEM探索工件厚度方向的电磁压力分布。

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