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DIRECTIONAL ENHANCEMENT OF COMPOSITE STRUCTURES ENERGY ABSORPTION USING MAGNETORHEOLOGICAL FLUIDS

机译:使用磁流变流体的复合结构能量吸收的方向增强

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The compatibility of magnetorheological (MR) fluids to directional enhancement of composite structures energy absorption has been investigated in this paper. This work is a part of CR C-A CS research program that aims to develop retrofit technologies for aged helicopters. Firstly, numerical parametric studies were conducted on identified design parameters of MR damper. This is followed by exploring the experimental data obtained from existing MR damper. The numerical studies showed that the piston head radius is the key dominant effect in providing high damping force. This, however, also resulted in large change of the MR damper weight due to significant increase of MR fluids volume, as compared to other design parameters. The analysis of experimental result shows that the damping force is equivalent to roughly two-fifths of the mean crushing force of an off-the-shelf composite tube with similar dimensions of the existing MR damper. MR fluids and damper show promising quality to improve composite structures as systems for crashworthiness.
机译:本文研究了磁流变(MR)流体对复合结构能量吸收能量吸收方向增强的兼容性。这项工作是CR C-A CS研究计划的一部分,旨在为年龄直升机开发改装技术。首先,对MR Damper的鉴定设计参数进行了数值参数研究。然后探索从现有MR阻尼器获得的实验数据。数值研究表明,活塞头半径是提供高阻尼力的主要显性效果。然而,与其他设计参数相比,这也导致MR流体量的显着增加,导致MR阻尼器重量的大变化。实验结果的分析表明,阻尼力等于具有现有MR阻尼器类似尺寸的搁板复合管的大约二五的平均碎力。 MR液体和阻尼器表明了有希望的质量,以改善复合结构作为耐火材料的系统。

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