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Digitally controlled electrorheological valves and their application in vehicle dampers

机译:数控电流变阀及其在汽车减震器中的应用

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摘要

The idea to replace continuously adjustable proportional valves by a certain number of simple on/off valves is known as digital hydraulics. In recent years, various theoretical and practical works have shown the usefulness of this concept in classical hydraulics. This contribution is concerned with the application of the concept of digital hydraulics to electrorheological (ER) valves used in an ER damper. For this, a detailed mathematical model of ER valves, including the dynamics of the valve due to the inertia of the fluid, is developed. First, an ER damper based on conventional continuously adjustable ER valves is considered and its feasibility is proven by means of measurement results. In a second step, two constructions of digital ER valves are proposed which both are characterized by a very compact and simple design. The features of digital ER valves are analyzed by means of measurement results. Finally, the application of digital ER valves to an ER damper is shown and its properties are compared to the continuously adjustable ER damper in simulation studies on a validated model. It is shown that a similar high performance can be obtained with digital ER dampers at significantly lower overall system costs.
机译:用一定数量的简单开/关阀代替连续可调比例阀的想法被称为数字液压系统。近年来,各种理论和实践工作都表明了这一概念在经典液压系统中的实用性。这一贡献与数字液压技术在ER阻尼器中使用的电流变(ER)阀的应用有关。为此,建立了ER阀的详细数学模型,包括由于流体惯性引起的阀动力学。首先,考虑了基于常规连续可调式ER阀的ER阻尼器,并通过测量结果证明了其可行性。第二步,提出了两种数字化ER阀的结构,这两种结构都具有非常紧凑和简单的设计特征。通过测量结果来分析数字ER阀的特征。最后,展示了数字ER阀在ER阻尼器上的应用,并在经过验证的模型的仿真研究中将其性能与连续可调ER阻尼器进行了比较。结果表明,使用数字ER阻尼器可以获得类似的高性能,而总体系统成本却大大降低。

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