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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Determining cutting parameters in wire EDM based on workpiece surface temperature distribution
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Determining cutting parameters in wire EDM based on workpiece surface temperature distribution

机译:根据工件表面温度分布确定电火花线切割中的切削参数

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摘要

The material removal process in wire electrical discharge machining (WEDM) may result in work-piece surface damage due to the material thermal properties and the cutting parameters such as varying on-time pulses, open circuit voltage, machine cutting speed, and dielectric fluid pressure. A finite element method (FEM) program was developed to model temperature distribution in the workpiece under the conditions of different cutting parameters. The thermal parameters of low carbon steel (AISI4340) were selected to conduct this simulation. The thickness of the temperature affected layers for different cutting parameters was computed based on a critical temperature value. Through minimizing the thickness of the temperature affected layers and satisfying a certain cutting speed, a set of the cutting process parameters were determined for workpiece manufacture. On the other hand, the experimental investigation of the effects of cutting parameters on the thickness of the AISI4340 workpiece surface layers in WEDM was used to validate the simulation results. This study is helpful for developing advanced control strategies to enhance the complex contouring capabilities and machining rate while avoiding harmful surface damage.
机译:电火花线切割加工(WEDM)中的材料去除过程可能会由于材料的热特性和切削参数(例如,变化的接通时间脉冲,开路电压,机器切削速度和介电流体压力)而导致工件表面损坏。开发了有限元方法(FEM)程序,以模拟不同切削参数条件下工件中的温度分布。选择低碳钢(AISI4340)的热参数进行模拟。基于临界温度值,计算出不同切割参数的温度影响层的厚度。通过最小化温度影响层的厚度并满足一定的切割速度,确定了一组用于工件制造的切割工艺参数。另一方面,在电火花线切割加工中,切削参数对AISI4340工件表面层厚度的影响的实验研究被用来验证仿真结果。这项研究有助于开发先进的控制策略,以增强复杂的轮廓加工能力和加工速度,同时避免有害的表面损伤。

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