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Analysis of a pilot valve and taper groove-based compound damping device

机译:基于先导阀和锥形槽的复合阻尼装置的分析

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摘要

This paper describes the lumped mass parameter model of a pilot valve and taper rod-type compounded damping device used for high-speed and high-loading applications such as heavy artillery guns. The modelling of pilot valve and fluid interaction has been described by Euler equations and Laplace equations of potential flow in cylindrical polar coordinates for the axisymmetric situation. The viscosity effects in the model have been accounted through the inclusion of the damping term in the equation of motion of the pilot valve. The model presented has been experimentally validated using a test rig which is capable of simulating the firing impulse in the case of an artillery gun. The pilot valve results in a logarithmic variation in the orifice area of the damper leading to mechanical implementation of fault tolerance in the damper.
机译:本文描述了用于高速和高负荷应用(例如重型火炮)的先导阀和锥杆型复合阻尼装置的集总质量参数模型。对于轴对称情况,已经通过圆柱极坐标中的势流的欧拉方程和拉普拉斯方程描述了先导阀和流体相互作用的模型。通过在先导阀的运动方程中包含阻尼项,可以解释模型中的粘度效应。所提供的模型已通过测试装置进行了实验验证,该装置能够模拟大炮的发射脉冲。先导阀导致阻尼器的孔口面积对数变化,从而导致阻尼器在机械上实现容错功能。

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