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首页> 外文期刊>Journal of intelligent material systems and structures >Modeling of Magnetorheological Dampers Utilizing a General Non-linear Model
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Modeling of Magnetorheological Dampers Utilizing a General Non-linear Model

机译:利用一般非线性模型对磁流变阻尼器进行建模

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摘要

Utilizing the integration by parts rule, a simple and general computational method is proposed for solving quasi-steady parallel plate flow problems and most types of fluids can be handled by this method, such as the Newtonian fluid, the Power-law fluid, the Bingham fluid, and the Herschel-Bulkley fluid. The flow rate-pressure gradient relation for quasi-steady parallel plate flows is derived based on an abstract piecewise constitutive equation. Moreover, the flow rate is directly expressed in terms of the constitutive equation in this method, so high efficiency is achieved. As an application example of the proposed method, a new quasi-steady magnetorheological damper model more general than the existing ones is developed with the material non-linearities considered in both the pre-yield and post-yield regimes. Finally, conversions of this model to the Bingham model, the Herschel-Bulkley model, the Biviscous model, etc., are demonstrated.
机译:利用分部积分法,提出了一种简单而通用的计算方法来解决准稳态平行板流动问题,该方法可以处理大多数类型的流体,例如牛顿流体,幂律流体,宾厄姆流体。流体和Herschel-Bulkley流体。基于抽象的分段本构方程,推导了准稳态平行板流的流速-压力梯度关系。而且,该方法中的流量直接由本构方程表示,因此实现了高效率。作为所提出方法的一个应用实例,开发了一种新的准稳态磁流变阻尼器模型,该模型比现有模型更通用,并考虑了屈服前和屈服后两种情况下的材料非线性。最后,演示了该模型到Bingham模型,Herschel-Bulkley模型,Biviscous模型等的转换。

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