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HELICOPTER SWASHPLATE DESIGN AND ANALYSIS USING SEMI COMPLIANT MECHANISM

机译:直升机斜盘设计和分析使用半兼容机制

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The swashplate of a model helicopter consists of stationary and rotating plates separated by ball bearings. This mechanism enables the swashplate to tilt in all directions and move vertically as one unit. The lower stationary plate is mounted on the main rotor mast and connected to the cyclic and collective controls by a series of pushrods. There are similar pushrods known as pitch links connected to the upper rotating plate. These pitch links are connected to the pitch horns and control the pitch of individual blades. In this study, the pitch links of the model helicopter are replaced by a semi compliant mechanism. This mechanism is directly connected to the pitch homs to control the pitch of the individual blades. The actuation of the bars can be achieved by using high torque stepper or servo motors. These precise low and high amplitude outputs are specifically required for the cyclic and collective controls of the helicopter swashplate. The compliant swashplate mechanism can be fabricated as a single piece using an injection molding technique or by 3D printing. The mechanism is modeled by two similar vector loops in two different planes. The mathematical model of the plate motion and the forces on the mechanism links are developed and simulated using MATLAB and Simulink, and initial results are discussed in this paper. This mechanism would be applied to the helicopter directional control where the plate in the pitch-roll mechanism would serve as the swash plate of the helicopter.
机译:模型直升机的斜盘由滚珠轴承分离的静止和旋转板组成。该机制使斜盘能够倾斜在所有方向上并作为一个单元垂直移动。下静止板安装在主转子桅杆上,并通过一系列推杆连接到循环和集体控制。有类似的推杆,称为连接到上旋转板的间距链路。这些间距链接连接到俯仰角并控制各个叶片的间距。在这项研究中,模型直升机的间距链接被半柔性机制所取代。该机构直接连接到俯仰的矿物以控制各个叶片的间距。通过使用高扭矩步进或伺服电动机可以实现杆的致动。直升机斜盘的循环和集体控制特别需要这些精确的低和高幅度输出。柔顺的斜盘机构可以使用注塑技术或3D打印作为单件制造。该机制由两个不同的平面中的两个类似的向量环建模。使用MATLAB和SIMULINK开发和模拟了板运动的数学模型和机构链路上的力,并在本文中讨论了初始结果。该机构将应用于直升机方向控制,其中间距辊机构中的板作为直升机的旋转斜盘。

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