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A Novel Double-Piston Magnetorheological Damper for Space Truss Structures Vibration Suppression

机译:用于空间桁架结构振动抑制的新型双活塞磁流变阻尼器

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The design, fabrication, and testing of a new double-piston MR damper for space applications are discussed. The design concept for the damper is described in detail. The electromagnetic analysis of the design and the fabrication of the MR damper are also presented. The design analysis shows that the damper meets the weight and size requirements for being included in a space truss structure. The prototype design is tested in a damper dynamometer. The test results show that the damper can provide nearly 80 N of damping force at its maximum velocity and current. The test results also show that the seal drag could contribute significantly to the damping forces. Additionally, the test results indicate that both the work by the damper and damping force increase rapidly with increasing current at lower currents and taper off at higher currents as the damper starts to saturate. The damper force versus velocity plots show hysteresis in both pre- and postyield regions and asymmetric forces in jounce and rebound. A model is proposed for representing the force-displacement, force-velocity, and asymmetric forces observed in test results. A comparison of the modeling results and test data indicates that the model accurately represents the force characteristics of the damper.
机译:讨论了用于太空应用的新型双活塞MR阻尼器的设计,制造和测试。详细介绍了风门的设计概念。还介绍了电磁阻尼器设计和制造的电磁分析。设计分析表明,该减震器符合重量和尺寸要求,可包含在空间桁架结构中。原型设计在阻尼测力计中测试。测试结果表明,该阻尼器在其最大速度和最大电流下可以提供近80 N的阻尼力。测试结果还表明,密封阻力可以显着地影响阻尼力。此外,测试结果表明,阻尼器的功和阻尼力都随着电流在较低电流下的增加而迅速增加,并随着阻尼器开始饱和而在较高电流下逐渐减小。阻尼力与速度的关系图显示了屈服前和屈服后区域的磁滞,以及在跳动和回弹中的不对称力。提出了一个用于表示测试结果中观察到的力-位移,力-速度和不对称力的模型。建模结果和测试数据的比较表明,该模型准确地表示了阻尼器的力特性。

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