Titu Aurel Mihail, Pop Alina Bianca
Industrial Engineering and Management Department, Faculty of Engineering, "Lucian Blaga" University of Sibiu, 10 Victoriei Street, 550024 Sibiu, Romania.
Department of Engineering and Technology Management, Faculty of Engineering, Northern University Centre of Baia Mare, Technical University of Cluj-Napoca, 62A Victor Babes Street, 430083 Baia Mare, Romania.
Polymers (Basel). 2024 Oct 28;16(21):3019. doi: 10.3390/polym16213019.
Electrical erosion molding (EDM) is an unconventional machining technology widely used in the manufacture of injection molds for plastics injection molding for the creation of complex cavities and geometries. However, EDM productivity can be challenging, directly influencing mold manufacturing time and cost. This work aims to improve EDM productivity in the context of mold manufacturing for plastics injection molding. The research focuses on the optimization of processing parameters and strategies to reduce manufacturing time and increase process efficiency. Through a rigorous experimental approach, this work demonstrates that the optimization of EDM parameters and strategies can lead to significant productivity gains in the manufacture of plastic injection molds without compromising part quality and accuracy. This research involved a series of controlled experiments on a Mitsubishi EA28V Advance die-sinking EDM machine. Different combinations of pre-cutting parameters and processing strategies were investigated using copper electrodes on a heat-treated steel plate. Productivity was evaluated by measuring the volume of material removed, and geometrical accuracy was checked on a coordinate measuring machine. The experimental results showed a significant increase in productivity (up to 61%) by using the "processing speed priority" function of the EDM machine, with minimal impact on geometric accuracy. Furthermore, the optimized parameters led to an average reduction of 12% in dimensional deviations, indicating improved geometric accuracy of the machined parts. This paper also provides practical recommendations on the selection of optimal EDM processing parameters and strategies, depending on the specific requirements of plastic injection mold manufacturing.
电火花加工成型(EDM)是一种非常规加工技术,广泛应用于制造用于塑料注塑成型的注塑模具,以创建复杂的型腔和几何形状。然而,电火花加工成型的生产率可能具有挑战性,直接影响模具制造时间和成本。这项工作旨在提高塑料注塑成型模具制造中的电火花加工成型生产率。该研究专注于优化加工参数和策略,以减少制造时间并提高加工效率。通过严谨的实验方法,这项工作表明,在不影响零件质量和精度的情况下,优化电火花加工成型参数和策略可在塑料注塑模具制造中显著提高生产率。这项研究在一台三菱EA28V Advance电火花成型机上进行了一系列对照实验。使用铜电极在一块热处理钢板上研究了预切割参数和加工策略的不同组合。通过测量去除的材料体积来评估生产率,并在坐标测量机上检查几何精度。实验结果表明,通过使用电火花加工成型机的“加工速度优先”功能,生产率显著提高(高达61%),对几何精度的影响最小。此外,优化后的参数使尺寸偏差平均降低了12%,表明加工零件的几何精度有所提高。本文还根据塑料注塑模具制造的具体要求,就选择最佳电火花加工成型工艺参数和策略提供了实用建议。