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首页> 外文期刊>International Journal of Machine Tools & Manufacture: Design, research and application >Experimental and numerical study of angular error in wire-EDM taper-cutting
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Experimental and numerical study of angular error in wire-EDM taper-cutting

机译:电火花线切割机锥度切割角度误差的实验与数值研究

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摘要

Wire electro discharge machining (WEDM) has become one of the most popular processes for producing precise geometries in hard materials, such as those used in the tooling industry. The so-called taper-cutting involves the generation of inclined ruled surfaces, and it is especially important in the manufacturing of tooling requiring draft angles. In this paper a new approach to the prediction of angular error in wire-EDM taper-cutting is presented. A systematic analysis of the influence of process parameters on angular error is carried out using Design of Experiments (DoE) techniques. A quadratic equation for the prediction of angular error that takes into account electrical parameters and part geometry is derived. Validation results reveal a dominant influence of the mechanical behaviour of the wire, rather than that of EDM regime. Following this assertion an original finite element model (FEM) to describe the mechanical behaviour of soft wires, typically used in taper-cutting operations, has been developed taking into account non-linear phenomena such as contact mechanics, plastic behaviour, stress-stiffening and large displacements. Both the results of DoE techniques and FEM simulation have been validated through experimental tests in industrial conditions. Deviations of accuracy of WEDM-tapered parts can be reduced to values below 4' using these models.
机译:线切割加工(WEDM)已成为在硬质材料(例如在工具行业中使用的那些材料)中产生精确几何形状的最受欢迎的工艺之一。所谓的锥度切削涉及倾斜的直纹表面的产生,这在需要拔模斜度的工具的制造中尤其重要。在本文中,提出了一种新的在线EDM锥度切削角度误差预测方法。使用实验设计(DoE)技术对过程参数对角度误差的影响进行了系统分析。推导了考虑到电参数和零件几何形状的用于预测角误差的二次方程。验证结果表明,焊丝机械性能的主要影响因素是电火花线切割,而不是电火花加工方式。在此主张之后,考虑到非线性现象(例如接触力学,塑性行为,应力刚度和应力),开发了一种通常用于锥形切割操作中的软线力学行为的原始有限元模型(FEM)。大排量。通过工业条件下的实验测试,已经验证了DoE技术的结果和FEM仿真。使用这些模型,可以将WEDM锥形零件的精度偏差减小到4'以下。

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