...
首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Experimental research on machinability of different electrode materials for SEAM of the nickel-based superalloy GH4169
【24h】

Experimental research on machinability of different electrode materials for SEAM of the nickel-based superalloy GH4169

机译:基于镍的超合金GH4169接缝的不同电极材料的防御性实验研究

获取原文
获取原文并翻译 | 示例

摘要

The short electric arc machining technology is a technical category of electrical machining in the special machining industry. It further improves machining efficiency (1.92 x 10(5) mm(3)/min) in comparison to other electrical machining. In short electric arc machining, the electrode materials directly affect the surface quality of the workpiece, electrode loss, and dimensional accuracy. Therefore, the selection of the electrode material is particularly important. Using the nickel-based superalloy GH4169 machining as the research object, the study aimed to improve the material removal rate, while reducing the electrode loss. The experimental research on the short electric arc machining properties (machining surface quality, inter-polar voltage and current waveform, electrode loss analysis, surface morphology, microstructure, chemical components analysis, etc.) of four types of tool electrode materials (graphite, copper, Q235, and aluminum) separated by two groups was conducted, in the first group: under the certain technological parameter, machining the GH4169 by four kinds of tool electrode materials respectively. In the second group, the influence of different tool electrode materials on the material removal rate was studied by using graphite and copper as the tool electrode materials under the different process parameters of discharge current, pulse time, pulse interval, and air pressure. The results show that the mechanical properties of the electrode materials differed due to the different thermal properties of the electrode materials under the same process parameters. Furthermore, the different physical properties of the electrode material caused different effects on the residual heat, resulting in differences in the material removal rate. Under most of the discharge conditions, MRR occupied a large proportion in the graphite electrode, and the relative mass loss of the electrode was about 16.7% of that of copper, providing a solid theoretical basis for the electrode selection of the short electric arc machining hard surface materials.
机译:短电弧加工技术是特种加工行业电气加工的技术类别。与其他电加工相比,它进一步提高了加工效率(1.92×10(5)mm(3)/ min)。在短电弧加工中,电极材料直接影响工件的表面质量,电极损耗和尺寸精度。因此,选择电极材料尤为重要。使用基于镍的超合金GH4169加工作为研究对象,研究旨在提高材料去除率,同时降低电极损失。四种工具电极材料的短电弧加工特性(加工表面质量,极地质量,极性电压和电流波形,电极损耗分析,表面形态,微观化学成分分析等)的实验研究(石墨,铜在第一组中,在一组中分离的Q235和铝):在某些技术参数下,分别通过四种工具电极材料加工GH4169。在第二组中,通过使用石墨和铜作为刀具电极材料在放电电流,脉冲时间,脉冲间隔和空气压力下的不同工艺参数下研究了不同刀具电极材料对材料去除速率的影响。结果表明,电极材料的机械性能由于在相同的工艺参数下电极材料的不同热性能而不同。此外,电极材料的不同物理性质对残余热引起不同的影响,导致材料去除率的差异。在大多数放电条件下,MRR在石墨电极中占据了很大的比例,电极的相对质量损失为铜的相对质量损失约为16.7%,为硬电弧加工的电极选择提供了坚实的理论依据表面材料。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号