首页> 外文会议>Mechanisms and robotics conference;ASME international design engineering technical conferences and computers and information in engineering conference >GEOMETRIC DESIGN OF A BIO-INSPIRED FLAPPING WING MECHANISM BASED ON BENNETT-DERIVED 6R DEPLOYABLE MECHANISMS
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GEOMETRIC DESIGN OF A BIO-INSPIRED FLAPPING WING MECHANISM BASED ON BENNETT-DERIVED 6R DEPLOYABLE MECHANISMS

机译:基于Bennett的6R展开机制的生物激发扑翼机构的几何设计。

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摘要

In this paper, we present the concept of designing flapping wing air vehicle by using the deployable mechanisms. A novel deployable 6R mechanism, with the deploying/folding motion of which similar to the flapping motion of the vehicle, is first designed by adding two revolute joints in the adjacent two links of the deployable Bennett linkage. The mobility of this mechanism is analyzed based on a coplanar 2-twist screw system. An intuitive projective approach for the geometric design of the 6R deployable mechanism is proposed by projecting the joint axes on the deployed plane. Then the geometric parameters of the deployable mechanism can be determined. By using another 4R deployable Bennett connector, the two 6R deployable wing mechanisms can be connected together such that the whole flapping wing mechanism has a single degree of freedom (DOF).
机译:在本文中,我们提出了使用可展开机构设计扑翼飞机的概念​​。首先通过在可展开的贝内特连杆机构的相邻两个链节中增加两个旋转关节来设计一种新颖的可展开的6R机构,其展开/折叠运动类似于车辆的拍打运动。基于共面2捻丝杠系统分析了该机构的移动性。通过将关节轴投影在展开平面上,提出了一种用于6R可展开机构的几何设计的直观投影方法。然后可以确定可展开机构的几何参数。通过使用另一个4R可展开的Bennett连接器,可以将两个6R可展开的机翼机构连接在一起,以使整个襟翼机构具有单个自由度(DOF)。

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