首页> 外文会议>The American Society for Precision Engineering Seventeenth Annual Meeting Oct 20-25, 2002 St.Louis, Missouri >Finite Element and Experimental Validation of Stiffness Analysis of Precision Feedback Spring and Flexure Tube of Jet Pipe Electrohydraulic Servovalve
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Finite Element and Experimental Validation of Stiffness Analysis of Precision Feedback Spring and Flexure Tube of Jet Pipe Electrohydraulic Servovalve

机译:喷射管电液伺服阀精密反馈弹簧及挠性管刚度分析的有限元及实验验证

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摘要

Electrohydraulic servovalve has a major part to play in feedback control system. The feedback spring and flexure tube elements are identified as more critical spring elements in servovalve operation. If these elements are properly designed with respect to stiffness, automatically dynamic performance of the servovalve is improved. Hence an attempt has been made to predict the stiffness of these elements by finite element method. The solid model of these components are carried out in IDEAS-Master module and simulated with appropriate boundary conditions. Also an experimental prototype model is designed and fabricated to test these precise components. The obtained results are validated with FEM results. The FEM gives complete behavior of these components. Results related to stress concentration areas due to loading are also included in the paper.
机译:电液伺服阀在反馈控制系统中起主要作用。在伺服阀操作中,反馈弹簧和挠性管元件被认为是更关键的弹簧元件。如果这些元件相对于刚度进行了适当的设计,则可以自动改善伺服阀的动态性能。因此,已经尝试通过有限元方法来预测这些元件的刚度。这些组件的实体模型在IDEAS-Master模块中进行,并在适当的边界条件下进行仿真。还设计并制造了一个实验原型模型来测试这些精确的组件。所得结果用有限元方法验证。 FEM给出了这些组件的完整行为。该论文还包括了与应力引起的应力集中区域有关的结果。

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