等离子切割
弧(几何)
津贴(工程)
机械工程
过程(计算)
失真(音乐)
机械加工
材料科学
结构工程
计算机科学
工程类
电子工程
放大器
CMOS芯片
操作系统
作者
Guojian He,Lin Gu,Yingmou Zhu,Jipeng Chen,Wansheng Zhao,K. P. Rajurkar
标识
DOI:10.1007/s40436-022-00406-0
摘要
Electrical arc contour cutting (EACC) is a novel high-efficiency material cutting process that applies arc plasma to perform efficient and economical contour cutting of difficult-to-cut materials. Compared to conventional electrical arc machining (EAM), this process can remove the allowance of open structures and plates in bulk mode, rather than entirely in the form of debris. Compared with existing contour cutting methods, EACC possesses the advantages of high cutting efficiency and a deep cutting depth. Particularly, a compound arc breaking mechanism (CABM), which integrates hydrodynamic force and mechanical motion, has been applied to control the discharge arc column in EACC, while also strengthening the debris expelling effect in the narrow discharge gap. The CABM implementation conditions were studied, based on arc column distortion images captured by a high-speed camera and simulation results of the flow field and debris distribution. A set of machining experiments was designed and conducted to optimize the performance of the proposed process. Finally, a SiCp/Al metal matrix composite (MMC) space station workpiece was machined to verify the feasibility and efficiency of this process.
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