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在线电解修整磨削
相关语句
  electrolytic in-process dressing
     Study of the Electrolytic In-process Dressing System
     在线电解修整磨削系统的研制
短句来源
  “在线电解修整磨削”译为未确定词的双语例句
     The Study of ELID Grinding with the Method of Molecular Dynamics Simulation
     在线电解修整磨削分子动力学仿真研究
短句来源
     The development of electrolyte grinding fluid on grinding with electrolyte in-process dressing
     在线电解修整磨削的电解磨削液研制
短句来源
  相似匹配句对
     Study of the Electrolytic In-process Dressing System
     线电解修整磨削系统的研制
短句来源
     Electrolytic in-Process Dressing(ELID) for Ultraprecision Grinding of Silicon Wafer
     硅片的线电解修整超精密磨削
短句来源
     Study on Grinding Fluid for Electrolytic Dressing of Diamond Wheel
     金刚石砂轮电解修整磨削液的研究
短句来源
     The Study of ELID Grinding with the Method of Molecular Dynamics Simulation
     线电解修整磨削分子动力学仿真研究
短句来源
     The development of electrolyte grinding fluid on grinding with electrolyte in-process dressing
     线电解修整磨削电解磨削液研制
短句来源
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  electrolytic in-process dressing
Nano finish grinding of brittle materials using electrolytic in-process dressing (ELID) technique
      
Electrolytic in-process dressing was applied to one of the wheels to provide stable cutting conditions.
      
A study on the grinding of glass using electrolytic in-process dressing
      
Electrolytic in-process dressing (ELID) is an efficient method to dress the grinding wheel while performing grinding.
      


When fine and super hard abrasive material grinding wheel of cast iron cement is used in electrolytic modifying grinding process,the oxide film on the grinding wheel plays an important role in mirror surface grinding.The paper describes the research activities of adhere strength,hardness,compact,conductivity of electrolytic oxide film of grinding wheel and relation between forming speed of oxide film and composition of grinding wheel,composition of grinding coolant as well as electrolytic parameter.

采用铸铁结合剂微细超硬磨料砂轮进行在线电解修整磨削时,ELID砂轮表面产生的氧化膜起着极其重要的作用。研究了ELID砂轮电解氧化膜的粘附强度、硬度、致密性、导电性、生成速度与砂轮结合剂成分、磨削液成分和电解参数的关系。

Different bond(resin, bronze, cast iron) diamond wheels are used to experimentally grind Al 2O 3 ceramics. Grinding performances of each kind of wheel are compared in the items of grinding ratio, grinding force and surface roughness of workpiece. The results showed that cast iron bond diamond wheel together with ELID(Electrolytic In process Dressing) technology is suitable for grinding hard and brittle materials like Al 2O 3 ceramics, especially for precision grinding.

本文利用树脂、青铜、铸铁三种结合剂金刚石砂轮 ,以氧化铝陶瓷为加工对象 ,通过研究各自的磨削比、磨削力、磨削表面粗糙度等指标 ,进行了三种结合剂砂轮的磨削性能比较 ,发现铸铁结合剂金刚石砂轮和ELID(在线电解修整 )磨削方法比较适合氧化铝陶瓷等硬脆材料的磨削 (尤其是精密磨削 )

Alumina ceramic parts are used broadly due to their excellent physical, chemical and mechanical properties. Ceramics are extremely difficult to machine because of their high hardness and brittleness. Electrolytic in-process dressing (ELID) grinding has been adopted to the ultra precision machining of hard and brittle materials. It had been widely used in fine abrasive grinding for its in-process dressing. Cast iron bond diamond wheel and ELID grinding technology are used on a surface grinder to research the...

Alumina ceramic parts are used broadly due to their excellent physical, chemical and mechanical properties. Ceramics are extremely difficult to machine because of their high hardness and brittleness. Electrolytic in-process dressing (ELID) grinding has been adopted to the ultra precision machining of hard and brittle materials. It had been widely used in fine abrasive grinding for its in-process dressing. Cast iron bond diamond wheel and ELID grinding technology are used on a surface grinder to research the high efficiency grinding technique. On the same machining conditions, the grinding force is about 2/5 - 3/5 as the force when using resin bond wheel. The result indicates that the grinding efficiency can be improved by applying ELID grinding technology. In-process dressing keeps the grinding wheel sharp, which is benefit to the continuous grinding.

陶瓷材料具有优异的机械性能,其应用越来越广泛。然而由于陶瓷的高硬度及其易碎性使其难于加工。在线电解修整磨削技术已经被应用于硬脆材料的超精密加工,由于可以实现砂轮的在线修整,尤其被广泛应用于细粒度砂轮的磨削中。本文在平面磨床上应用铸铁结合剂金刚石砂轮与ELID磨削技术进行高教磨削研究。实验结果表明,在同样的磨削条件下,采用ELID磨削时的磨削力约为使用树脂结合剂砂轮磨削力的2/5~3/5。实验结果说明采用ELID磨削技术加工效率可以得到极大提高。而且,在线电解修整作用可以保持砂轮的锋锐性,有利于保持硬脆材料高效磨削的连续性。

 
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