Error Analysis and Optimization of Shear Yield Stress Model for Magnetorheological Fluid

Error Analysis and Optimization of Shear Yield Stress Model for Magnetorheological Fluid
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磁流变液剪切屈服应力模型误差分析与优化

DOI:
10.1007/s13369-019-03903-w
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发表时间:
2019-05
影响因子:
2.9
通讯作者:
Tian Zuzhi
Tian Zuzhi
中科院分区:
综合性期刊4区
文献类型:
--
作者:
Li Haopeng;Chen Fei;Liu Chenghao;Tian Zuzhi

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为了更准确地使用磁流变流体的剪切屈服应力模型,在有限元模型的基础上,对比分析了颗粒尺寸、颗粒间距和磁场强度对单链偶极子模型误差的影响。结果表明,粒子尺寸和粒子间距对单链偶极子模型的影响较小,而磁场强度是影响单链偶极子模型误差的最重要因素。随着磁场的增强,单链偶极子模型的误差逐渐减小。在此基础上,采用有限元法对单链偶极子模型进行了优化。实验结果表明,优化后的单链偶极子模型比优化前的模型误差减小了80%,精度更高。
In order to use shear yield stress model of magnetorheological fluid more accurately, the influence of particle size, particle spacing and magnetic field intensity on the model error of single-chain dipole is compared and analyzed based on the finite element model. The results show that particle size and particle spacing have few effects on the single-chain dipole model, but the magnetic field intensity is the most important factor affecting the error of single-chain dipole model. As the magnetic field strengthens, the error of the single-chain dipole model decreases gradually. Based on the research, the single-chain dipole model is optimized by finite element method. Experimental results show that the error of optimized single-chain dipole model is reduced by 80% compared with that of the model before optimization, which is more accurate.
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