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首页> 外文期刊>Journal of intelligent material systems and structures >An investigation of tensile behavior of magnetorheological fluids under different magnetic fields
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An investigation of tensile behavior of magnetorheological fluids under different magnetic fields

机译:不同磁场下磁流变液的拉伸行为研究

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Stress-strain relationships of magnetorheological fluids under tension tests have been studied over a wide applied magnetic field being generated by a coil carrying different magnitudes of direct current electrical current range. Five tensile behaviors of magnetorheological fluids have been described and explained by structure strengthening effect and decreasing magnetic field strength. The results showed that magnetorheological fluid corresponded to the changes in tensile stress due to the changes in magnetic field. Normalized tensile stress and normalized magnetic field have been proposed to clearly demonstrate the nature of structure strengthening effect during elongation. Under a constant normalized magnetic field, the change of the normalized tensile stress indicated the change of the structure parameter, which showed the existence of structure strengthening effects during elongation. Corresponding to the tensile behavior change, the exponent of tensile yield stress versus magnetic field was also found to vary in different magnetic field ranges.
机译:磁流变流体在拉伸试验下的应力-应变关系已经研究过,该磁场是由带有不同大小的直流电流范围的线圈产生的广泛施加的磁场产生的。磁流变液的五种拉伸行为已通过结构增强效应和降低的磁场强度进行了描述。结果表明,磁流变液对应于磁场变化引起的张应力变化。提出了归一化的拉伸应力和归一化的磁场,以清楚地证明伸长过程中结构加强效果的性质。在恒定的归一化磁场下,归一化拉伸应力的变化表明结构参数的变化,这表明在拉伸过程中存在结构强化作用。对应于拉伸行为的变化,还发现拉伸屈服应力与磁场的指数在不同的磁场范围内变化。

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