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首页> 外文期刊>Modelling and simulation in engineering >High-Order Dimension Synthesis of Planar/Spatial Mechanisms with One-DoF by CAD Variational Geometry
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High-Order Dimension Synthesis of Planar/Spatial Mechanisms with One-DoF by CAD Variational Geometry

机译:一维自由度的平面/空间机构高阶维合成的CAD变分几何

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This paper proposes a (computer aided design) CAD variational geometry approach for the high-order dimension synthesis of one-DoF mechanisms based on the given velocity/acceleration of a moving platform along a prescribed trajectory. The objective of this approach is to determine the reasonable dimensions of the mechanisms when given the velocity or/and the acceleration of the moving platform along a prescribed trajectory. First, some concepts and mathematical foundations are explained for constructing the velocity/acceleration simulation mechanism of a general mechanism. Second, the inverse velocity/acceleration simulation mechanisms of the planar/spatial four-bar mechanisms with one-DoF are constructed by the CAD variational geometry. Third, when given the position and the velocity/acceleration of the coupler along a prescribed trajectory, all the reasonable dimensions of the planar/spatial four-bar mechanisms are solved from their simulation mechanisms.
机译:本文提出了一种(计算机辅助设计)CAD变分几何方法,用于基于给定运动平台沿指定轨迹的速度/加速度对一自由度机构进行高维综合。该方法的目的是在给定移​​动平台沿预定轨迹的速度或/和加速度时确定机构的合理尺寸。首先,解释一些概念和数学基础,用于构造通用机构的速度/加速度模拟机构。其次,通过CAD变分几何构造了具有一自由度的平面/空间四杆机构的逆速度/加速度模拟机构。第三,当给定耦合器沿着预定轨迹的位置和速度/加速度时,平面/空间四杆机构的所有合理尺寸都可以通过其模拟机构来求解。

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