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首页> 外文期刊>Materialpruefung: Werkstoffe und Bauteile, Forschung Prufung Anwendung >Analysis of the electrical discharge machining (EDM) performance on Ramor 550 armor steel
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Analysis of the electrical discharge machining (EDM) performance on Ramor 550 armor steel

机译:ramor 550铠装钢上的电气放电加工(EDM)性能分析

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摘要

This study investigated the electrical discharge machining (EDM) performance of Ramor 500 Armor steel, a material used in the defense industry for armor production. In addition, the surface quality and amount of material wear of the treated surfaces were determined using different electrical discharge processing parameters for a copper electrode including pulse on-time (99, 150, 225, 300, 351 mu s), pulse off-time (10, 15, 23, 30, 35 mu s), and discharge current (3, 4, 6, 8, 9 A), at a constant pressure of 1 mm depth of cut. As a result of the experiments, the values related to the material removal rate (MRR) and the surface roughness (Ra) were obtained and the findings analyzed via response surface methodology (RSM). The increase in amperage and pulse on-time resulted in an increase in Ra and MRR values. The minimum and maximum Ra and MRR values emerged at currents of 3 and 9 A, respectively. In the experiments performed applying currents of between 3 and 9 A, the white layer widths were measured as 0.0474 mm and 0.0915 mm, respectively. The statistical test results showed that the most effective processing parameters for the MRR were the discharge current amperage (49.01 %) and the pulse off-time (16.51 %), whereas the most effective parameter for the Ra value was the discharge current amperage (79.07 %).
机译:本研究研究了Ramor 500 Armor Steel的电气放电加工(EDM)性能,用于防护工业的盔甲生产的材料。此外,使用包括铜电极的不同放电处理参数确定处理表面的表面质量和材料磨损量,包括脉冲接通时间(99,150,225,300,351μs),脉冲关闭时间(10,15,23,30,35μs),和放电电流(3,4,6,8,9a),在1mm切割的恒定压力下。作为实验的结果,获得了与材料去除速率(MRR)相关的值和表面粗糙度(RA),并通过响应表面方法(RSM)分析的结果。安培数和脉冲随时间的增加导致RA和MRR值的增加。最小和最大RA和MRR值分别在3和9A的电流下出现。在进行施加3至9A之间的实验中,将白色层宽度分别测量为0.0474mm和0.0915mm。统计测试结果表明,MRR的最有效的处理参数是放电电流倍增(49.01%)和脉冲关闭时间(16.51%),而RA值最有效的参数是排放电流倍增(79.07 %)。

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