递纸

  • 网络sheet transfer
递纸递纸
  1. 胶印机的印刷速度、套准精度以及印品的质量与机器上采用的递纸机构密切相关。

    The press speed , registration accuracy and product quality relate to the mechanism of sheet transfer closely .

  2. 它的轮廓线形状及廓形制造误差会直接影响递纸机构的工作性能。

    The profile shape and profile errors of the cam will directly affect the sheet transfer mechanism performance that it is necessary to study .

  3. 基于ADAMS的下摆式递纸机构动力学仿真

    Dynamics simulation on the sway downward paper feeding mechanism based on ADAMS

  4. 在Visualc++6.0环境下,运用MFC对整个分析过程建立计算机模型,开发递纸机构设计和分析软件。

    In the environment of Visual C + + , the computer model of livelong analysis process is established by MFC , and the design & analysis software of framework is empoldered .

  5. 采用四阶Rung-Kutta方法求解连续接触模型的动力学方程,得到了一个运动周期内递纸牙的位移误差和转角误差。

    Forth order Rung-Kutta method was adopted to solve the dynamical equations of continuous contact model . With different clearance value , displacement error curves of transfer gripper in a motion period were obtained .

  6. 高速胶印机的递纸牙机构是机器的核心机构之一。

    High-speed offset press gripper is one of the core unit .

  7. 本文对递纸机构的运动特性做了比较系统深入的理论分析,所采用的模型与实际的结果相符合。

    This paper mskes a deep system analysis of gripper mechanism .

  8. 定心上摆式递纸机构的运动设计与分析

    Motion Design and Analysis of Paper-Transferring Mechanism Up-Swinging Around the Fixed Position

  9. 共轭凸轮型递纸吸嘴机构运动特性分析

    Kinematic Analysis of Forwarder and Sucker Mechanism of Conjugate Cam

  10. 给纸机递纸吸嘴机构的再生设计

    Regenerated Motion Design on Paper-feeding Suction Nozzle of Pneumatic Feed-on

  11. 运动副间隙对递纸牙运动规律的影响分析

    Analysis of influence of joint clearances on motion precision of paper-transferring grippers

  12. 印刷机高性能旋转式递纸机构的设计

    Design of a Good-property Paper-feeding Mechanism for Printing Press

  13. 柔性递纸机构的动态设计方法研究

    Research on Dynamic Design Method of Flexible Transfer Mechanism

  14. 间歇旋转式递纸机构运动特性分析

    Kinematic Regulation Analysis of Intermittent Rotary Sheet Transfer Mechanism

  15. 运动副间隙对偏心摆动式递纸机构动力过程的影响

    Effects of Bearing Clearances on Dynamic Process of Eccentric Swinging Sheet Transfer Mechanism

  16. 摆动式递纸机构凸轮的仿真设计

    Simulation and Design of Cam of Swinging Gripper Mechanism

  17. 模切机递纸机构创新设计与研究

    The Innovative Design of Die-cutter Transfer Gripper Machine

  18. 递纸机构运动规律的选择原则

    Selecting Principle of Swing Transfer Mechanism Follower Law

  19. 模糊决策在递纸机构运动规律选择中的应用

    Application of fuzzy decision to the selection of follower law for swing transfer mechanism

  20. 运动副间隙越大,递纸牙运动轨迹误差就越大;

    Larger joint clearances result in larger displacement errors in the paper transferring grippers .

  21. 偏心回转摆动式递纸机构实测模型与理论模型的比较分析

    Comparative Analysis between Actual and Theoretical Models of Eccentric Turning Round and Swinging Gripper Mechanism

  22. 间歇旋转递纸机构设计

    Design of Stop rotary Sheet Transfer Mechanism

  23. 递纸机构是单张纸胶印机的重要部件,对印品的质量有着极其重要的影响。

    The transferring-sheet framework is an important component , which weightily affects the quality of presswork .

  24. 印刷机递纸机构是保证承印物套印准确的关键部件。

    Paper-feeding mechanism of printing press is the key part to ensure the accuracy in registration .

  25. 递纸机构由凸轮和杆件结构组成,它的动态性能直接影响纸张的定位精度。

    It is composed of cams and staffs , whose dynamic capabilities directly influence orientation precision of sheet .

  26. 递纸机构的结构设计、制造精度、运动和动力学特性将直接关系到印刷机的印刷速度和套印精度。

    The mechanism design , manufacture precision and dynamical characteristic of paper delivery system directly affect the printing speed and precision .

  27. 采用五次多项式来模拟递纸牙的运动规律,进而建立求解共轭凸轮廓线数学模型。

    In this paper , the problem of limit cycles bifurcated from the equator for a quintic polynomial system is investigated .

  28. 选取确定了递纸牙的运动规律,并采用矢量三角形方法对新机构进行了运动学分析。

    Chosen and decided the movement method of transfer gripper . According to vector method , given kinematics analysis to the whole mechanism .

  29. 偏心上摆式递纸机构是由凸轮和平面五连杆机构组成的串联机构,它是一种典型的混合驱动的多自由度平面连杆机构。

    As a typical hybrid driven multi-DOF planar linkage , eccentric swinging sheet transfer is a serial mechanism made up of the cam and five-bar linkage .

  30. 排除了输纸带上的问题后,再查看拉纸规与递纸牙的交接时间,这一切都很正常。

    This excludes transportation paper tape , and then view the drawing control and gripper of the hand-over time , all these things are quite normal .