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首页> 外文期刊>Journal of intelligent material systems and structures >Development of a variable stiffness magnetorheological damper with self-powered generation capability
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Development of a variable stiffness magnetorheological damper with self-powered generation capability

机译:具有自发电能力的变刚度磁流变阻尼器的开发

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This article reports a compact stiffness controllable magnetorheological damper with a self-powered capacity. First, the structure, working mechanism, and analysis of the damper are presented. After the prototype of the magnetorheological damper, experimental tests were conducted to evaluate its variable stiffness feature and self-powered generation capability using a hydraulic Instron test system. The testing results demonstrate that its stiffness variation range can reach 70.4% when the applied current increases from 0 to 2 A. The energy generating capability of the magnetorheological damper was also evaluated using the Instron testing system under a harmonic excitation with 0.15 Hz frequency and 30 mm displacement. The testing results illustrate that the self-powered generation component can generate 2.595 W effective power, which is enough to control the magnetorheological component of the damper. The successful development, theoretical analysis, and experimental testing of this new variable stiffness self-powered magnetorheological damper make the concept of energy-free variable stiffness magnetorheological damper feasible.
机译:本文报道了一种具有自供电能力的紧凑型刚度可控的磁流变阻尼器。首先,介绍了阻尼器的结构,工作机理和分析。在磁流变阻尼器的原型之后,进行了实验测试,以使用Instron液压测试系统评估其可变刚度特征和自供电发电能力。测试结果表明,当施加的电流从0增加到2 A时,其刚度变化范围可以达到70.4%。还使用Instron测试系统在0.15 Hz频率和30 Hz的谐波激励下评估了磁流变阻尼器的能量产生能力。毫米位移。测试结果表明,自供电的发电组件可以产生2.595 W的有效功率,足以控制阻尼器的磁流变组件。这种新型变刚度自供电磁流变阻尼器的成功开发,理论分析和实验测试,使无能量变刚度磁流变阻尼器的概念成为可能。

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