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Analysis of the Machinability of Copper Alloy Ampcoloy by WEDM

机译:WEDM对铜合金合金切削性的分析。

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摘要

The unconventional technology of wire electrical discharge machining is widely used in all areas of industry. For this reason, there is always an effort for efficient machining at the lowest possible cost. For this purpose, the following comprehensive study has been carried out to optimize the machining of the copper alloy Ampcoloy 35, which is particularly useful in plastic injection moulds. Within the study, a half-factor experiment of 2 with 10 axial points and seven central points of a total of 33 rounds was carried out, which was focused on the response monitoring of the input factors in the form of the machine parameters setup: gap voltage, pulse on time, pulse off time, discharge current, and wire speed. Based on the study of the response in the form of cutting speed and surface topography, their statistical models were created, while the optimal setting of machine parameters was determined to maximize the cutting speed and minimize the topography parameters. Further, a detailed cross-sectional analysis of surface and subsurface layer morphology was performed using electron microscopy including chemical composition analysis. In order to study microstructural changes in the material at the atomic level, a lamella was created, which was then studied using a transmission electron microscope.
机译:电火花线切割加工的非常规技术已广泛应用于工业的所有领域。因此,总是努力以尽可能低的成本进行有效的加工。为此,进行了以下全面研究,以优化铜合金Ampcoloy 35的加工,该合金在塑料注塑模具中特别有用。在研究中,进行了一个半因子实验,其中2个实验包含10个轴向点和7个中心点,总共进行了33个回合,其重点在于以机器参数设置的形式监视输入因子的响应:间隙电压,脉冲开启时间,脉冲关闭时间,放电电流和线速。在对切削速度和表面形貌形式的响应进行研究的基础上,创建了它们的统计模型,同时确定了最佳的机床参数设置以最大化切削速度和最小化形貌参数。此外,使用包括化学成分分析在内的电子显微镜对表面和亚表面层的形态进行详细的截面分析。为了研究原子级材料的微观结构变化,创建了一个薄片,然后使用透射电子显微镜对其进行了研究。

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