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Magnetorheological Fluid with Nano Fe_3O_4 for Performance Enhancement of MR Damper for Seismic Resistance of Steel Structures

机译:磁体流体用纳米Fe_3O_4进行钢结构MR阻尼器的性能增强

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Magnetorheological damper (MR damper) is one of the promising vibration control systems, applicable for damping seismic induced vibrations in structures, because of their ability to be controlled and to adapt their mechanical properties by varying the magnetic field, their high damping force, their low energy input required and their simple use. This paper presents the experimental results carried out to study the use of Nano Fe_3O_4 as component of MR fluid. The Nano Fe_3O_4 particles are obtained by an indigenous process to convert a waste product of chemical industry. The performance of Nano Fe_3O_4 MR fluid is compared with five commercially available samples in the market namely, Mill scale, cast iron (1), cast iron (2), carbonyl iron and white iron oxide. Surface morphology was identified using SEM & the average particle size was analysed using XRD. Viscosity & settling measurements were also performed for all the six samples. Shake table tests were conducted to study the performance of steel frame with MR damper. The model for the study was a single bay three storey steel frame where the response of the structure, in terms of acceleration, velocity and displacement was observed. It was observed that the percentage of reduction in displacement, velocity, acceleration, approximately 40 - 67% for structure with MR damper.
机译:磁流变阻尼器(MR DAMPER)是有前途的振动控制系统之一,适用于阻尼结构中的震动引起的振动,因为它们可以通过改变磁场,它们的高阻尼力来调节它们的机械性能,它们的高阻尼力能量输入需要,使用简单。本文介绍了研究使用纳米Fe_3O_4作为MR液组分的实验结果。纳米Fe_3O_4颗粒通过土着方法获得,以转化化学工业的废品。将纳米Fe_3O_4 MR流体的性能与市场上的五种商业上可获得的样品进行比较,即磨削量,铸铁(1),铸铁(2),羰基熨斗和氧化铁。使用SEM鉴定表面形态,使用XRD分析平均粒度。还对所有六个样品进行粘度和沉降测量。进行摇动台测试以研究钢框架与阻尼器的性能。该研究的模型是单架三层钢框架,在观察到加速,速度和位移方面的结构响应。观察到置换率,速度,加速度,约40-67%的百分比,用于阻尼器的结构。

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