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Electrorheological damper analysis using an Eyring-plastic model

机译:用撕开塑料模型的电流阻尼分析

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This paper presents experimental and theoretical analysis of an electrorheological (ER) damper. To describe the practical damper characteristics on force vs. velocity and force vs. displacement responses, a new alternative to existing models is proposed. On the basis of an Eyring model, Eyring-plastic model is constructed by the combination of simple nonlinear functions. Therefore, the Eyring-plastic model has the advantage of simple design and formulation, even though it is in the form of a nonlinear function. In addition, the Eyring-plastic model can capture quite well the practical damper responses, particularly, in both the preyield and the postyield states. An ER damper is configured and its damping force under various electric fields and excitation frequencies is experimentally tested. On the basis of the damper response tested, the Eyring-plastic model is constructed and its validation is proved by comparing the experimental and predicted damper data on force vs. velocity and force vs. displacement responses.
机译:本文介绍了电流(ER)阻尼器的实验和理论分析。为了描述力与速度和力与位移响应的实用阻尼特性,提出了对现有模型的新替代品。在喉模型的基础上,撕开塑料模型由简单的非线性功能的组合构成。因此,撕孔塑料模型具有简单的设计和配方的优点,即使它是非线性功能的形式。此外,撕孔塑料模型可以相当捕捉实用的阻尼响应,特别是在Preyield和Postyield状态中。经过实验测试,将ER阻尼器配置出并且其在各种电场和激励频率下的阻尼力。在测试的阻尼响应的基础上,构造了撕孔塑料模型,并通过将实验和预测阻尼数据与力与力与力与位移反应进行比较来证明其验证。

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