face milling cutter

英 [feɪs ˈmɪlɪŋ ˈkʌtə(r)] 美 [feɪs ˈmɪlɪŋ ˈkʌtər]

网络  面铣刀

机械



双语例句

  1. 90 indexable face milling cutter
    可转位90°面铣刀
  2. Heavy-duty carbide shell face milling cutter
    重型硬质合金套式面铣刀
  3. When face milling is performed, the table can be moved longitudinally to feed the workpiece under or below the cutter.
    铣削端面时,为了将工件送到刀具底下或下方,工作台可以纵向移动。
  4. According to the characteristic of high speed face milling process, the model of stress field of high speed face milling cutter is established on the dependability analysis.
    针对高速面铣刀切削加工过程的特点,在刀具可靠性分析基础上建立了高速可转位面铣刀的应力场模型和刀具及其组件的安全性判据。
  5. Carbide welded side and face milling cutter helical rake angle
    硬质合金焊接式三面刃铣刀(铣刀的)轴向刀面角
  6. Research on Design Technology of High Speed Face Milling Cutter Based on Knowledge
    基于知识的高速面铣刀设计技术研究
  7. Carbide shell face milling cutter with spiral teeth
    螺旋齿套式硬质合金平面铣刀
  8. Research on the Safety of High-speed Face Milling Cutter
    高速面铣刀安全性的研究
  9. Analysis of Cutting Out Course of the Face Milling Cutter Blade
    端铣削刀齿切出过程解析
  10. On-Line Control of Cutting Vibrations Computer Simulation of Cutting Vibrations in Face Milling with Multiblade Cutter
    切削振动的时变刀具角度在线控制多齿端铣切削振动的计算机仿真
  11. Analysis of the Rear Face Curve of Tray Shaped Gear Shaping Milling Cutter
    盘状齿轮成形铣刀后刀面曲线分析
  12. Feature Design Technology in Indexable Face Milling Cutter CAD/ CAM
    可转位面铣刀CAD/CAM中的特征造型技术
  13. Research on High Speed Face Milling Cutter and Its Cutting Performance
    高速面铣刀开发及其切削性能的研究
  14. The basic structure design of the left and right step face milling cutter with carbide circular inserts is briefly introduced, amplify on the cutter parameter of geometry and structure.
    介绍了装有硬质合金圆刀片的左右阶梯端铣刀的基本结构,对其几何参数和结构参数作了进一步分析。
  15. The paper, based on investigation and experiment, discusses the conditions for transmitting the torgue of cutting by using the face friction moment of the dise milling cutter, and suggests to cancel the usual medium-sized keyways.
    本文在调查研究与实验基础上,讨论了应用盘铣刀端面摩擦力矩传递切削扭矩的条件,进而建议取消常用中等尺寸铣刀键槽。
  16. The Test Study of the Reasonable Geometrical Parameters for Mold Block Face Milling Cutter
    模块式面铣刀合理几何参数试验研究
  17. Design of the Left and Right Step Face Milling Cutter with Carbide Circular Inserts
    装硬质合金圆刀片的左右阶梯端铣刀设计
  18. An experimental study on the cutting forces of the rotary face milling cutter
    滚切端铣刀的切削力试验研究
  19. It is significant to research the problem of moving interface in the field of engineering, like cam design of engineering, machining columnar face using columnar milling cutter under numerical control, etc.
    等距问题的研究在工程实际应用中有着重要的意义,例如工程设计中的凸轮平面设计、数控加工中使用柱形铣刀加工柱面等等。
  20. Based on the geodesic curvature calculating method in differential geometry, a mathematical model for checking curvature interference between the major cutting edge and the cylindrical grinding wheel during grinding clearance face of a ball nose end milling cutter with S shaped major cutting edge is developed.
    用圆柱形砂轮刃磨球头立铣刀端刃后刀面时,运用微分几何学中的测地曲率算法建立了砂轮与S型刃的曲率干涉校核数学模型。
  21. The Cutting Performance of the Cubic Boron Nitride Face Milling Cutter
    立方氮化硼端面铣刀的切削性能
  22. The mathematical formulas and arithmetic to numerically evaluate differential simultaneous equations of motion for 3D coupled multi degree of freedom system by applying Runge Kutta method in order to simulate, with computer cutting vibration for example in face milling with multiblade cutter are derived.
    以平面端铣为例,介绍了应用RungeKutta方法求解机床结构多自由度系统运动微分方程组仿真切削振动的公式和算法。
  23. Estmation Formula Deduction of Face Milling Cutter Cut-in Manner
    面铣刀切入方式的判别式推导
  24. Theoretics calculate of the elasticity limited rotary speed of the high speed face milling cutter body and study its influence factors
    高速端铣刀刀体弹性极限转速的理论计算及其影响因素
  25. A Method for Clearance Face Grinding of Major Cutting Edge of a Ball nose End Milling Cutter With Equal Orthogonal Clearance Angle
    球头立铣刀端刃等主后角刃磨法
  26. Results of fuzzy object element analysis based on experiment indicated that cutting vibration of high speed face milling cutter using structural design method was depressed, the cutters with higher safety and cutting stability, and their cutting performance have met the requirement of high speed milling.
    基于实验的高速铣削性能模糊物元评判结果证实,采用结构化设计方法开发的高速面铣刀有效抑制了切削振动,具有较高的安全性和高效切削稳定性,切削性能满足高速铣削要求。
  27. The algorithm of face milling radius compensation depends on the milling cutter style.
    五轴端铣半径补偿与刀具类型有关,不同的刀具类型其补偿算法不同。
  28. At present, when milling hardened steel, gray cast iron and other difficult-to-cut materials, the being used cemented carbide face milling cutter is low in speed and the processing quality needs to be improved.
    而目前铣削淬硬钢、灰铸铁等难加工材料所用的硬质合金面铣刀普遍存在铣削速度低、加工质量有待提高的问题。