凸轮

tū lún
  • cam
凸轮凸轮
凸轮 [tū lún]
  • [cam] 机械的回转或滑动件(如轮或轮的突出部分),它把运动传递给紧靠其边缘移动的滚轮或在槽面上自由运动的针杆,或者它从这样的滚轮和针杆中承受力

凸轮[tū lún]
  1. N次谐波凸轮的设计方法

    The Design Method of a Cam with Nth - degree Harmonics

  2. 非对称式N次谐波顶置凸轮型线设计

    The design of unsymmetrical OHC cam with nth - degree harmonics

  3. 因为发动机没有阀门,它不需要任何凸轮轴、起阀器等。

    Since the engine has no valves , it doesn 't need any camshaft , valve lifters and so on .

  4. 然后,这些部件可以用多种方法顶出,如升降机、凸轮、架台、提升阀、螺栓结构和汽缸结构。

    Then these parts are ejected with a variety of lifters , cams , racks , poppit valves , screws , and cylinders .

  5. 采用两种方法对凸轮轮廓曲线进行了修正。

    Two ways were used about the error-amending of contour curve .

  6. 凸轮机构逆向CAD模型的构建

    A design for reverse engineering of CAD model of cam mechanism

  7. N次谐波法拟合供油凸轮型线的探讨

    Study for Nth harmonic method fitting fuel cam profile

  8. 内啮合弧面凸轮机构及其CAD

    The Inner Engagement Globoidal Cams Mechanism and its CAD

  9. 基于PC的开放式圆柱凸轮数控加工系统

    Developing of NC Machining System for Cylindrical Cam Based PC

  10. 基于matlab的凸轮轮廓曲线的分析与研究

    Analysis and Study of the Outline Curve of the Cam Based on Matlab

  11. 用MATLAB实现平动从动件凸轮机构的设计和运动仿真

    Using MATLAB to Design and Simulate the Cam Mechanism with Follower in Planar Motion

  12. 基于MATLAB的平面凸轮轮廓的可视化设计系统

    The Visual Design System Based on Matlab for the Outline of a Plane Cam

  13. 凸轮机构CAD与运动模拟

    Cam Mechanism CAD and Motion Imitating

  14. 基于ANSYS的凸轮机构振动模态分析

    Anlysis of Sympathetic Vibration and Model State for Cam set Based on ANSYS

  15. 本文研究利用计算机辅助制造(CAM)技术加工间歇分度凸轮。

    Machining of the indexing cam with the technology of computer aided manufacturing is studied .

  16. 应用CAD软件Pro/E,能够快速而准确地设计弧面分度凸轮。

    Based on the CAD software Pro / E , the cam can be designed precisely and quickly .

  17. 凸轮反求工程与NC加工

    Ram Reverse Engineering and NC Processing

  18. 用VISUALLISP实现弧面分度凸轮的三维实体造型

    The 3D Model of Indexing Cam with Visual LISP

  19. 基于ADS开发平台的凸轮机构计算机辅助设计系统

    A cam mechanism design system based on ads Development Tool

  20. 用AUTOCADVBA设计盘形凸轮的轮廓曲线

    Designing and drawing contour curve of periphery cam with AutoCAD VBA

  21. 等距曲面综合数学模型具有普遍意义,满足了建立凸轮CAD的需要。

    The proposed analytical model of the synthesis of offset surface can be widely used , and can satisfy the needs of CAD of cams .

  22. 基于SolidWorks弧面分度凸轮的参数化三维实体造型方法

    Method of parameterized 3D solid model of globoidal indexing cam based on SolidWorks

  23. 首先研究二次开发的关键技术,然后以Visualc++6.0为开发环境,采用模块化思想开发出凸轮型线计算机辅助设计系统。

    The key technology was first discussed , then under Visual C + + 6.0 environment , a computer aided system for cam profile was developed with blocking method .

  24. CNC无靠模凸轮磨削具有效率高、柔性好、精度高、质量稳定等众多靠模仿形法无法比拟的优点。

    The CNC method for camshaft grinding has the advantage of high efficiency , good flexibility , precision and steady quality by compared with copying method .

  25. 在SIEMENS数控系统功能的基础上,开发出了摆线凸轮加工子程序,该子程序使用等误差直线逼近来保证凸轮的精度。

    On the basis of the functions of SIEMENS CNC system , the sub-program for cycloidal cam machining has been developed .

  26. 利用Visualc++和OpenGL编程相结合,开发出一个能够对空间凸轮机构进行虚拟设计的系统。

    The technology of spatial cam and virtual design are investigated , and a virtual design system of spatial cam based on Visual C + + and OpenGL is developed .

  27. 空间凸轮驱动的单自由度PRS型并联机构及其设计

    On Design of 1-DOF PRS Type Parallel Mechanism Actuated by Three Cylindrical Cams

  28. 用AutoCAD软件在计算机上进行凸轮轮廓曲线设计,原理简单,作图精确,效率高,尤其是CAD生成的数据与CAM共享,可实现CAD/CAM一体化,取得明显的经济效益。

    Progress the design of cam profile curve in the computer by AutoCAD software . Principle simple and construction accuracy and efficient . Especially the date of CAD generative can share and CAM .

  29. 电子凸轮是根据机械凸轮的原理设计的,由控制器、位置传感器、联接电缆组成,与PLC及各种传感器配合使用可使生产设备的自动化程度显著提高。

    Electronic Rotary Cam Switch is based on mechanical cam switch , consist of controller , position sensor and cable . it is used with PLC , various of sensors to improve the automatic level of production equipment .

  30. 通过solidworks软件能够建立精确的圆柱凸轮的三维模型,为有限元分析和动态仿真奠定了基础:(4)能够将设计结果转换为数控加工代码,为数控加工做好准备。

    The system can set accurately up the three-dimension model by Solid Works , on which the finite analyses and the dynamic emulation are based ; ( 4 ) the system turns the result of design into NC code , which is prepared for the NC manufacturing .