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Magnetic-responsive tension rheology behavior for grease-based magnetorheological suspensions

机译:基于油脂磁流变悬浮液的磁性响应张力流变动行为

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The tensile rheology behavior of grease-based magnetorheological (MR) suspensions at the presence of magnetic field was investigated by a magnetic-responsive tensile rheology model and the experiment in this research. The prediction for magnetic-responsive tension model corrected by the magnetic field-dependent attenuation coefficients is in accord with the experimental data under different magnetic field activation. Comparing with the thicker initial thickness of suspensions, the thinner initial thickness of suspensions at the application of same magnetic field induced larger tensile strength due to the stronger magnetic interaction between dipoles and the higher anti-deformation ability for the magnetic structures. Furthermore, the higher pull velocity promoted the formation of robust magnetic structures and activated the larger tensile Theological capacity for the grease-based MR suspensions along the direction of the magnetic field. Besides, the magnetic-structure tensile strength of MR suspensions inducing by the tensile traction of aluminum-created substrate material with the weak magnetic conductivity was much less than the tensile traction of steel-created substrate material with the strong magnetic conductivity. This study proposed a hypothesis where the difference between the magnetic-field attenuation rate and the magnetic-structure destruction rate leaded to the disagreement between the mechanical rheology model and experimental data at traction of the high tensile speed.
机译:通过磁响应拉伸流变学模型和本研究实验研究了磁场存在下的油基磁流变学(MR)悬浮液的拉伸流变学行为。磁场依赖性衰减系数校正的磁响应张力模型的预测符合不同磁场激活下的实验数据。与悬浮液的较厚厚度相比,由于偶极子之间的磁性相互作用较强的磁性相互作用和磁性结构的较高抗变形能力,较薄的悬浮液的较薄初始厚度诱导较大的抗拉强度。此外,较高的拉速促进了鲁棒磁性结构的形成,并激活沿磁场的方向的基于润滑脂的MR悬浮液的较大拉伸神学能力。此外,通过耐磁导电率的铝产生的基底材料的拉伸牵引的MR悬浮液的磁性结构抗拉强度远小于具有强磁导率的钢制造的基材材料的拉伸牵引力。该研究提出了一个假设,其中磁场衰减率与磁性结构破坏率之间的差异引起了机械流变模型与高拉速牵引的实验数据之间的分歧。

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