首页> 外文会议>ASME international mechanical engineering congress;IMECE'03 >EFFECTIVE TEST PROCEDURES FOR EVALUATING FORCE CHARACTERISTICS OF MAGNETO-RHEOLOGICAL DAMPERS
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EFFECTIVE TEST PROCEDURES FOR EVALUATING FORCE CHARACTERISTICS OF MAGNETO-RHEOLOGICAL DAMPERS

机译:评估磁流变阻尼器力特性的有效测试程序

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This paper will provide a new test procedure for determining the force characteristics of magneto-rheological (MR) dampers that are commonly used for vehicle suspensions. Force characteristics of a damper, in this case, refers to establishing the amount of force that the damper can provide at different relative velocities across the two ends of the damper. Force characteristics of a damper, which are commonly presented as a plot of force versus relative velocity-commonly known as force-velocity curve-are established in a shock (or damper) dynamometer in which one end of the damper is kept fixed and the other end is moved in a cyclical manner at a prescribed displacement and frequency. The peak damper force at each velocity is measured and plotted as discrete data points versus relative velocity across the damper. This is a well-understood and commonly used procedure for passive shock absorbers or dampers. For magneto-rheological dampers, however, our study shows that such procedures do not necessarily provide an accurate assessment of the force characteristics of MR dampers in all damping conditions. The damping condition of MR dampers can be changed by a small amount of electrical current that can be provided to the damper. The inaccuracies are mainly due to the changing dynamics of the MR fluid inside the damper at different damping conditions. This paper will provide the test results for a MR damper, using the new and the conventional test procedures. The test results indicate that the use of the new test procedure will allow for an accurate representation of the MR damper force at all velocities, within the range of the currents that the damper is designed for.
机译:本文将提供一种新的测试程序,用于确定通常用于车辆悬架的磁流变(MR)阻尼器的力特性。在这种情况下,阻尼器的力特性是指确定阻尼器在阻尼器两端的不同相对速度下可以提供的力的大小。减震器的力特性通常以力与相对速度的关系图(通常称为力-速度曲线)表示,它是在减震器(或减震器)测力计中建立的,减震器的一端保持固定,另一端保持固定末端以规定的位移和频率周期性地移动。测量每个速度下的峰值阻尼力,并将其绘制为离散数据点与阻尼器上相对速度的关系。对于被动式减震器或减震器,这是一个易于理解且常用的过程。但是,对于磁流变阻尼器,我们的研究表明,这样的程序并不一定能在所有阻尼条件下准确评估MR阻尼器的力特性。 MR阻尼器的阻尼条件可以通过可提供给阻尼器的少量电流来改变。错误的主要原因是在不同的阻尼条件下,阻尼器内部的MR流体的动力学变化。本文将使用新的和常规的测试程序来提供MR阻尼器的测试结果。测试结果表明,在阻尼器设计的电流范围内,使用新的测试程序将可以在所有速度下准确表示MR阻尼器力。

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