电火花加工机床工作液循环系统研发与应用OA
Development and Application of Dielectric Fluid Circulation System for EDM Machine Tools
针对电火花精密加工的需求,研发了一款过滤精度高、工作性能稳定、自动化水平高的工作液循环系统.系统主要由动力源模块、多级过滤模块、温度调节模块、控制模块和监测模块这 5 个部分组成.计算了关键设备的工作参数并完成了设备选型计算,建立了系统的三维模型并研制了实物样机.将该系统应用于电火花加工机床中,并进行了性能验证与加工试验.性能测试表明:系统各项主要参数均满足设计要求;实际加工试验结果表明,相比原系统,使用该系统后斜孔的加工表面粗糙度平均降低约34%,直孔的加工表面粗糙度平均降低约14.7%,电极损耗率降低约25.00%~26.36%.研发的工作液循环系统在过滤精度、系统稳定性及自动控制方面优势显著,具有在电火花高效精密加工领域推广应用的价值.
To address the demands of precision electrical discharge machining(EDM),a working fluid circulation system featuring high-precision filtration,stable performance and high-degree automation was developed in this paper.The system primarily comprises five modules:A power source,a multi-stage filtration unit,a temperature regulation module,a control unit,and a monitoring module.The operational parameters of key components were calculated,and the corresponding equipment was selected.A three-dimensional model of the system was established,leading to the development of a physical prototype.This prototype was integrated into an EDM machine tool for performance validation and machining trials.The performance tests confirmed that all major system parameters met the design specifications.The practical machining trials demonstrated that,compared to the original EDM system,the new system reduced the average surface roughness of inclined holes by approximately 34%,lowered that of straight holes by about 14.7%,and decreased the electrode wear rate by approximately 25.00%-26.36%.The developed working fluid circulation system exhibits significant advantages in filtration precision,system stability,and automatic control,demonstrating considerable potential for application in the field of high-efficiency precision EDM.
韩增辉;李殿新;刘建勇;刘吉祥;董文凯;侯焜
北京石油化工学院 机械工程学院,北京 102617北京石油化工学院 机械工程学院,北京 102617北京石油化工学院 机械工程学院,北京 102617北京石油化工学院 机械工程学院,北京 102617北京石油化工学院 机械工程学院,北京 102617北京石油化工学院 机械工程学院,北京 102617
矿业与冶金
电火花加工工作液选型计算电极损耗率表面粗糙度
electrical discharge machining(EDM)dielectric fluidequipment selectionelectrode wear ratesurface roughness
《机械科学与技术》 2026 (7)
1126-1135,10
国家重点研发计划(2023YFB4605900)、京津冀科技创新协同专项(Z251100005225003)及北京石油化工学院致远基金项目(2025105)
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