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Study on magnetic field distribution and electro-magnetic deformation in wire electrical discharge machining sharp corner workpiece

机译:钢筋电压加工锋轨工件磁场分布与电磁变形研究

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摘要

Sharp corner is a common characteristic in many precise parts, and wire electrical discharge machining (WEDM) is a popular method for manufacturing sharp corner parts because the corner radius processed by WEDM is much less than that by traditional tool cutting. But, the experiment results show that there is an inevitable corner deformation caused by electro-magnetic force in WEDM when workpiece thickness is less than 5 mm. This paper aims to analyze and decrease this inevitable corner deformation. Firstly, a set of corner cutting experiment is implemented to obtain the characteristic of corner deformation, and it can be found that the corner deforming direction of Al alloy is opposite to that of Q235 steel. Additionally, a finite element model (FEM) is established to analyze the magnetic field distribution and qualitatively reveal the formation mechanism of electro-magnetic deformation in single pulse discharge machining. Then, two empirical formulas between corner deformation and input factors are acquired by the method of generalized regression fitting. Eventually, two practical methods are proposed to improve corner accuracy, including adjusting machining parameters and adapting the programmed wire path. Moreover, confirmative experiment data shows that the corner deformations of 6061 Al alloy (Q235 steel) is reduced from 213 mu m (97 mu m) to 21.6 mu m (55.9 mu m), respectively.
机译:锋利的角是许多精确部件的共同特性,电线电气放电加工(WEDM)是制造锋利角部件的流行方法,因为WEDM处理的拐角半径远低于传统工具切割的拐角半径。但是,实验结果表明,当工件厚度小于5mm时,通过WEDM的电磁力引起的不可避免的角变形。本文旨在分析和减少这种不可避免的角落变形。首先,实施了一组角切割实验以获得角变形的特性,并且可以发现,Al合金的角变形方向与Q235钢的角落变形方向相反。另外,建立有限元模型(FEM)以分析磁场分布,并定性地揭示单脉冲放电加工中电磁变形的形成机制。然后,通过广义回归配合的方法获取角变形和输入因子之间的两个经验公式。最终,提出了两种实际方法来提高角度精度,包括调节加工参数并调整编程的线路路径。此外,确认实验数据表明,6061 Al合金(Q235钢)的角变形分别从213μm(97μm)降至21.6μm(55.9μm)。

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