Optimization of a Snap Through Spring for a Hydraulic Valve With Hysteresis Response Behavior

M. Scherrer, R. Scheidl, B. Manhartsgruber
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Abstract

The hydraulic binary counter requires switching valves with a hysteretic response. In this paper an elastic snap through element is studied as means for that. The concept is based on a buckling beam which is elastically supported in axial direction in order to adjust its buckling properties with moderate manufacturing precision and to assure a well defined snap through behavior. The elastic support is provided by a cantilever beam. A rigorous optimization is performed heading for a most compact and fatigue durable design which exhibits the required lateral force displacement characteristics. A genetic algorithm is used to find the global design optimum. The stress/displacement properties of each design variant are computed by a compact model of the snap through system. It is derived by a Ritz method to obtain approximate solutions of the nonlinear buckling beam behavior. Its validity is checked by a Finite Element model. A compact design is possible if high strength spring steel is used for the elastic elements.
具有迟滞响应特性的液压阀插接弹簧的优化设计
液压二进制计数器要求开关阀具有滞后响应。本文研究了一种弹性贯通单元作为解决这一问题的手段。该概念基于轴向弹性支撑的屈曲梁,以便在适度的制造精度下调整其屈曲特性,并确保定义良好的断裂行为。弹性支撑由悬臂梁提供。为了实现最紧凑、最耐疲劳的设计,并展示所需的侧向力位移特性,进行了严格的优化。采用遗传算法求解全局最优设计。每个设计变量的应力/位移特性都是通过弹跳系统的紧凑模型来计算的。用里兹法推导了非线性屈曲梁的近似解。通过有限元模型验证了其有效性。如果弹性元件使用高强度弹簧钢,则可以实现紧凑的设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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