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首页> 外文期刊>Meccanica: Journal of the Italian Association of Theoretical and Applied Mechanics >Non-linear dynamic characteristic of a relief valve controlled by a thin annular plate
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Non-linear dynamic characteristic of a relief valve controlled by a thin annular plate

机译:由薄环形板控制的溢流阀的非线性动态特性

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In current research, the transverse motion of a thin annular plate is studied, thus determining the static and dynamic opening of a relief valve. Using the geometrically non-linear theory of thin plates, the governing equations in cylindrical coordinates are systematically deduced for obtaining the transient behavior. An equivalent method for replacing the concentrated force is innovatively proposed so that all of the loads of the plates can be given by a unified expression, which reduces the number of the governing equations and intermediate boundary conditions. Combining harmonic differential quadrature (HDQ) and method of solving ordinary differential equations, the governing equations are rapidly solved out. The results of the numerical method are verified with those of finite element analysis (FEA). Applying step loads, all of the theoretical values and FEA results give us insight into the attenuate vibration response of the relief valve, showing great ability of keeping steady positions and rapid dynamics.
机译:在当前的研究中,研究了环形薄板的横向运动,从而确定了安全阀的静态​​和动态打开。利用薄板的几何非线性理论,系统地推导了圆柱坐标系中的控制方程,从而获得了瞬态行为。创新地提出了一种替代集中力的等效方法,以使板的所有载荷都可以由一个统一的表达式给出,从而减少了控制方程和中间边界条件的数量。结合谐波微分正交(HDQ)和求解常微分方程的方法,快速求解了控制方程。数值方法的结果已通过有限元分析(FEA)进行了验证。施加阶跃载荷,所有理论值和有限元分析结果,可以使我们深入了解安全阀的衰减振动响应,从而显示出保持稳定位置和快速动态的强大能力。

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