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变截面异型螺旋型腔电解加工流场分析 被引量:6

Simulation of Flow Field in Electrochemical Machining of Helix Cavity with Variable Cross-section
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摘要 针对闭式整体构件电解加工间隙流场分布不均匀的,基于电解加工间隙流场,设计了阴极过水孔工作端面,比较了不同背压条件下电解加工间隙流场,分析了间隙流场空穴、涡流现象.研究结果表明,通过改变过水孔分的疏密,孔径的大小和形状,增加背压,消除了间隙流场中低流速区域,电解液较低流速区域的速度由0.239 7m/s提升至0.508 5m/s,减少了空穴和涡流现象的发生,优化了阴极结构. In order to solve the problem of irregular distributing of flow field in electrochemical machining gap of the closed integral structure ,based on the regular distributing of electrochemical machining gap flow field ,a hole working face of cathode is designed ,then the electrochemical machining gap flow field under different back pressure conditions is compared ,and any vortexes or cavities in the gap flow field are examined .The results indicate that by changing the distributions ,sizes ,shapes of these holes and increasing the back pressure ,the low flow velocity area is basically eliminated and the minimum electrolyte flow velocity is increased from 0 .2397m/s to 05085m/s , the occurrence of any vortex and cavity is reduced and the cathode structure is optimized .
出处 《西安工业大学学报》 CAS 2014年第2期103-108,112,共7页 Journal of Xi’an Technological University
基金 总装备部"十二五"项目(512XXX405) 陕西省教育厅自然科学基金专项基金(2013JK1014)
关键词 闭式整体构件 电解加工 加工流场 异型螺旋型腔 阴极 ELECTROCHEMICAL MACHINING (ECM ) closed integral structure processing flow field helix cavity cathode
作者简介 范植坚(1943-),女,西安工业大学教授,主要研究方向为特种加工.E-mail:335913733@qq.com
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参考文献8

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