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首页> 外文期刊>International Journal of Natural and Engineering SciencesbElectronic resource >Design of an Electromechanical Fin Actuation Mechanism and Experimental Study of Power Consumption of the Mechanism
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Design of an Electromechanical Fin Actuation Mechanism and Experimental Study of Power Consumption of the Mechanism

机译:机电鳍片致动机构的设计及耗能实验研究

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Fixed-wing flying objects use control surface (fin) motions to balance and adjust flight directions. Mechanisms used to move control surfaces can be designed as hydraulic, pneumatic or electromechanical. In this study, an electromechanical fin actuation mechanism is designed. The kinematic equations of this the mechanism are derived and position, velocity and acceleration analyses are performed. The results obtained from these analyses are used as an input in the dynamic equations which include friction to calculate the power consumption of the mechanism. A test bench is used to investigate the accuracy of the analytical model. The mechanism is tested on the test bench under certain fin loads and speeds. The power consumption of the mechanism is found and compared with the results which are obtained from the analytical model. Tests are repeated for different fin loads, speeds and the cases (ball bearing or bushing) to verify the results of the analytical model. The results obtained from the tests and analytical model show that, the difference between them does not exceed 8%. Due to uncertainties of the measurement technique and uncertainties of friction coefficients, it is can be said that the results obtained from the tests are acceptable for the verification of the analytical model.
机译:固定翼飞行物体使用控制面(鳍)运动来平衡和调整飞行方向。用于移动控制表面的机构可以设计为液压,气动或机电式。在这项研究中,设计了机电鳍片致动机构。推导了该机构的运动方程,并进行了位置,速度和加速度分析。从这些分析中获得的结果将用作动态方程式的输入,其中包括摩擦力以计算机构的功耗。测试台用于调查分析模型的准确性。在某些散热片负载和速度下,在测试台上测试了该机构。找到该机构的功率消耗,并将其与从分析模型获得的结果进行比较。对不同的翅片负载,速度和壳体(滚珠轴承或衬套)重复进行测试,以验证分析模型的结果。从测试和分析模型获得的结果表明,它们之间的差异不超过8%。由于测量技术的不确定性和摩擦系数的不确定性,可以说从测试中获得的结果对于分析模型的验证是可以接受的。

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