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Dynamic Simulation of a Smart Crank and Slider Mechanism

机译:智能曲柄和滑块机构的动态仿真

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摘要

In this paper, a smart crank and slider mechanism is analyzed mostly from a dynamic view. By means of dynamic explicit finite element method, 3D nonlinear structure is simulated. It is proved that the mechanism can effectively accomplish smart movement prescribed. And in order to ensure reciprocal movement with higher frequency, measures should be taken to avoid over heating of parts. Compared with internal energy, kinetic energy of total rigid body is dominating, and Ydirection equivalent rigid velocity is much higher than X direction velocity. Equivalent rigid velocity of all parts is consistent with respective movement condition. For both energy and velocity, slider effect is dominating. Three direction equivalent inertia force oscillates. Force amplitude in Y-direction is comparitively the greatest.
机译:本文主要从动态角度分析了智能曲柄和滑块机构。通过动态显式有限元方法,模拟了3D非线性结构。实践证明,该机构可以有效完成规定的智能运动。并且为了确保高频往复运动,应采取措施避免零件过热。与内部能量相比,整个刚体的动能占主导地位,Y方向等效刚度速度远高于X方向速度。所有零件的等效刚度与各自的运动条件一致。对于能量和速度,滑块效果占主导地位。三方向等效惯性力振荡。相比之下,Y方向的力幅值最大。

著录项

  • 来源
    《哈尔滨工程大学学报:英文版》 |2002年第002期|P.62-6571|共5页
  • 作者单位

    College;

    of;

    Mechanical;

    and;

    Electrical;

    Engineering,;

    Harbin;

    Engineering;

    University,;

    Harbin;

    150001,;

    China;

    College;

    of;

    Mechanical;

    and;

    Electrical;

    Engineering,;

    Harbin;

    Engineering;

    University,;

    Harbin;

    150001,;

    China;

    College;

    of;

    Mechanical;

    and;

    Electrical;

    Engineering,;

    Harbin;

    Engineering;

    University,;

    Harbin;

    150001,;

    China;

    College;

    of;

    Mechanical;

    and;

    Electrical;

    Engineering,;

    Harbin;

    Engineering;

    University,;

    Harbin;

    150001,;

    China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 CHI
  • 中图分类 机构学;
  • 关键词

    smart; crank; and; slider; mechanism; dynamic; simulation; explicit; finite; element;

    机译:灵巧的曲柄和滑块滑块机制动态仿真显性有限元素;
  • 入库时间 2022-08-19 03:35:18
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