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首页> 外文期刊>Meccanica: Journal of the Italian Association of Theoretical and Applied Mechanics >Elasto-dynamic analysis of a novel 2-DoF rotational parallel mechanism with an articulated travelling platform
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Elasto-dynamic analysis of a novel 2-DoF rotational parallel mechanism with an articulated travelling platform

机译:铰接式行走平台新型2自由度旋转并联机构的弹性动力学分析

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This paper carries out the elasto-dynamic analysis of a novel 2 degrees-of-freedom (DoF) rotational parallel mechanism (RPM) with an articulated travelling platform by means of kineto-elasto dynamic method. The architecture of the proposed 2-DoF RPM is firstly described, and then its kinematic analysis is carried out by closed-loop vector method. On the basis of finite element analysis, the elasto-dynamic models of movable components are established before assembling to formulate the elasto-dynamic equations of the whole mechanism in the light of deformation compatibility conditions. The free vibration equation is then achieved to evaluate the natural frequency of the novel 2-DoF RPM. Finally, an example is illustrated and the results are verified by finite element software. It shows that the relatively high natural frequencies and good dynamic performance make the novel 2-DoF RPM a promising solution for pose-adjusting module of 5-DoF machine centre.
机译:本文采用动弹力动力学方法,对具有铰接行进平台的新型2自由度(DoF)旋转并联机构(RPM)进行了弹性动力学分析。首先描述了所提出的2-DoF RPM的体系结构,然后通过闭环矢量法对其进行了运动学分析。在有限元分析的基础上,建立了可动部件的弹性动力学模型,并在装配前根据变形的相容性条件建立了整个机构的弹性动力学方程。然后获得自由振动方程,以评估新型2-DoF RPM的固有频率。最后,给出一个例子,并通过有限元软件对结果进行验证。结果表明,相对较高的固有频率和良好的动态性能使新型2自由度RPM成为5自由度机床中心姿态调整模块的有前途的解决方案。

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