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反馈杆精密微细电火花加工工艺技术研究

Study on Feedback Rod with Precision Micro Electro-discharge Machining Process

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【作者】 刘建勇邹爱敏翟力军蔡延华孙东江丁连同

【Author】 Liu Jianyong;Zou Aimin;Zhai Lijun;Cai Yanhua;Sun Dongjiang;Ding Liantong;Beijing Institute of Electro-machining;Patent Examination Cooperation Center of the Patent Office,SIPO;

【机构】 北京市电加工研究所国家知识产权局专利局专利审查协作北京中心

【摘要】 为了解决电液伺服阀中关键功能部件反馈杆的加工难题,提出了对其进行精密电火花加工工艺的方案。通过分析反馈杆的实际工作状态,将其分为悬杆和球头两部分并分别进行电火花加工,制定出一次装夹同时实现反馈杆悬杆加工、反馈杆球头加工和在位检测的微细电火花加工解决方案。通过对加工工艺、加工精度和检测精度的分析,确定了R轴径向跳动、A轴端面跳动、Y轴定位精度和重复定位精度、Z轴定位精度和直线电机驱动的刚度检测平台是影响产品加工效率和加工质量的关键因素。

【Abstract】 In order to machining the feedback rod of electro-hydraulic servo valve,a precision electro-discharge machining(EDM) process scheme was given. After analyzing the work condition of the feedback rod,the EDM process was done in two steps. First,machine the rod and then machine the ball. With this method,the feedback need not to be dismounted. The machining and on-line detection of the feedback rod could be finished meanwhile. Based on the analysis of the process,machining precision and detection precision,the key factors were ensured. The factors included the radial runout of R-axis,the face runout of A-axis,the positional accuracy and repeatability accuracy of Y-axis,the positional accuracy of Z-axis and the positional accuracy of detecting platform.

【关键词】 反馈杆微细电火花加工在位检测
【Key words】 feedback rodmicro EDMon-line detection
【基金】 国家科技重大专项资助项目(2014ZX04001-111);北京市自然科学基金委员会-北京市科学技术研究院联合资助项目(L150006)
  • 【文献出处】 电加工与模具 ,Electromachining & Mould , 编辑部邮箱 ,2016年04期
  • 【分类号】TG661
  • 【下载频次】120
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