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Effect of Temperature and Electric Field on the Damping and Stiffness Characteristics of ER Fluid Short Squeeze Film Dampers

机译:温度和电场对ER流体短挤压膜阻尼器阻尼刚度特性的影响

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摘要

Squeeze film dampers are novel rotor dynamic devices used to alleviate small amplitude, large force vibrations and are used in conjunction with antifriction bearings in aircraft jet engine bearings to provide external damping as these possess very little inherent damping. Electrorheological (ER) fluids are controllable fluids in which the rheological properties of the fluid, particularly viscosity, can be controlled in accordance with the requirements of the rotor dynamic system by controlling the intensity of the applied electric field and this property can be utilized in squeeze film dampers, to provide variable stiffness and damping at a particular excitation frequency. The paper investigates the effect of temperature and electric field on the apparent viscosity and dynamic (stiffness and damping characteristics) of ER fluid (suspension of diatomite in transformer oil) using the available literature. These characteristics increase with the field as the viscosity increases with the field. However, these characteristics decrease with increase in temperature and shear strain rate as the viscosity of the fluid decreases with temperature and shear strain rate. The temperature is an important parameter as the aircraft jet engine rotors are located in a zone of high temperature gradients and the damper fluid is susceptible to large variations in temperature.
机译:挤压膜阻尼器是一种新型转子动态装置,用于缓解小的振幅,大量的力振动,并且与飞机喷射发动机轴承的抗摩擦轴承结合使用,以提供外部阻尼,因为这些具有非常少的固有阻尼。电气流变(ER)流体是可控流体,其中通过控制所施加的电场的强度,可以根据转子动态系统的要求来控制流体,特别是粘度的流变性质,并且该特性可以用挤压薄膜阻尼器,提供可变刚度和在特定激发频率下阻尼。本文研究了使用可用文献的温度和电场对ER流体(硅藻土悬浮液)的表观粘度和动力(刚度和阻尼特性)的影响。随着粘度随该领域的增加而增加,这些特性随着域的增加而增加。然而,随着温度和剪切应变速率的温度降低,这些特性随着温度和剪切应变率的增加而降低。温度是作为飞机喷射发动机转子位于高温梯度区域中的重要参数,并且阻尼流体容易受到温度的大变化。

著录项

  • 作者

    H. P. Jagadish; L. Ravikumar;

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  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 eng
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