oscillating cam

英 [ˈɒsɪleɪtɪŋ kæm] 美 [ˈɑːsɪleɪtɪŋ kæm]

网络  摆动凸轮

机械



双语例句

  1. The dynamic analysis of an oscillating cam mechanism with clearances
    考虑运动副间隙的摆动从动件盘形凸轮机构动态分析
  2. A designing method of the minimum size oscillating follower cylinder cam mechanism
    最小尺寸摆动从动杆圆柱凸轮机构的设计法
  3. A Study on the Laws of Pressure Angle in Oscillating Follower Cam Mechanisms
    摆动从动件凸轮机构压力角规律的研究
  4. In this paper, the author analyzed the oscillating roller's follower in cam mechanism and dis-cussed the common calculation formula for the angular velocity and acceleration of the roller.
    研究了凸轮机构中的摆动滚子从动杯,并推导出滚子的角速度和角加速度的通用计算公式;
  5. The change law of the most pressure angle α max and basic dimensions for disk cam mechanism with oscillating follower is given out by analytic method in this paper. And the most suitable basic dimensions of cam mechanism can be chosen in the light of this one.
    用解析法给出了摆动推杆盘形凸轮机构最大压力角αmax与基本尺寸之间的关系,可以作为选配最适宜基本尺寸的理论依据。
  6. Designing the Geometrical Amounts Oscillating Follower Cam Mechanisms in Accordance with Allowable Pressure Angle
    按许用压力角确定摆动从动件凸轮机构的几何尺寸
  7. This paper points out that the traditional design method about the disc cam mechanism with oscillating follower has some shortcomings, thus it proposes one new method& using the differential method and the optimum technology to get the best parameters of the disc cam mechanism with oscillating follower.
    指出了传统设计方法在确定摆动从动件盘形凸轮机构设计参数时的诸多不足,提出了一种新方法&采用微分法和最优化技术联合求解摆动从动件盘形凸轮机构的最佳设计参数。
  8. Determination on allowable axle center region of oscillating link conjugate cam
    摆动从动件共轭凸轮轴心许用区的确定
  9. Influence of Change in Oscillating Follower Length on Cam Mechanism Working Ability
    论摆动从动件长度变化对凸轮机构工作性能之影响
  10. This study has attempted to develop equations to calculate the radi-al translating and oscillating follower cam pressure angle.
    本文阐述摆动从动件及直动从动件凸轮设计中压力角的计算方法。
  11. The application of support function method in the design of flat bottomed oscillating follower equal-width cam mechanisms
    支撑函数法在平底摆动从动件等宽凸轮机构设计中的应用
  12. Design of minimum size oscillating follower translating cam mechanism
    最小尺寸摆动从动杆移动凸轮机构的一种设计方法
  13. In this paper, the working properties and designing method of a combined cam-linkage mechanism with oscillating slider mechanism are discussed. The calculation formulas derived are those of the pressure angle, the radius of base circle and the cam profile.
    本文论述了具有摇块机构的凸轮连杆组合机构的工作特性和设计方法,导出了压力角、基圆半径和凸轮廓线的计算公式。
  14. According to allowable pressure angles, the determinations of an oscillating follower conjugate cam's allowable axle center region and its border curves are analyzed. A method to compute its equivalent minimum base circle radius is given out.
    对摆动从动件共轭凸轮按许用压力角确定凸轮轴心许用区进行了分析,给出了摆动从动件共轭凸轮等值最小基圆半径的计算方法。
  15. Mathematical Analysis of the Pressure Angle in Radial Translating and Oscillating Follower Cam Design
    摆动及直动从动件凸轮设计中压力角的数学分析
  16. Research on Oscillating System with Yoke Rolling Cam far Superfinishing
    轭式简谐轮振荡系统应用于超精研装置的研究
  17. The Calculation of Roller's Rotation and the Selection of Roller's Rotating Moment of Inertia for Rollers on the Oscillating Followers of Cam Mechanism
    凸轮机构摆动从动杆滚子转动的计算及转动惯量的选择
  18. The results reported can provide a guidance in the research of the pressure angle of oscillating follower cam mechanisms and in the design of cam mechanisms.
    对研究摆动从动件凸轮机构压力角和设计凸轮机构具有指导意义。
  19. The Cam Oscillating Shedding mechnisms The Synthesis of Linkage Cam Combined mechanisms
    凸轮摇摆开口机构(一)&凸轮一连杆组合机构的综合
  20. Design of Oscillating Flat face Cam Mechanism with Constant width Cam
    平底摆动从动件等宽凸轮机构的设计
  21. Finally, the paper gives out a formula to determine the base circle radius, the oscillating rod length and the centre distance upon the given coordinate of the cam shaft centre.
    并给出了由凸轮轴心位置坐标进而求解基圆半径、摆杆长度及中心距的计算公式。
  22. To analyze the cause of design error on Oscillating follower Cylinder Cam Mechanism, building the mathematics model, and affording the equation to conform to actual motion rule.
    分析了摆动从动件圆柱凸轮机构误差产生原因,建立了数学模型,并给出其实际运动规律的方程。
  23. Oscillating follower spatial cam mechanisms are widely used in machinery field. However, the currently used methods to design the pitch curve of a spatial cam produce errors, as described in detail. In view of which, an accurate design methodology is proposed.
    作为在机械领域有着广泛应用的摆动从动件空间凸轮机构,其通用的理论轮廓线的设计方法存在一定的误差,本文通过详细的误差分析,提出一套精确的设计方法。