Mitsumata Tetsu, Sakai Kazuki, Takimoto Jun-ichi
Department of Polymer Science and Engineering, Faculty of Engineering, Yamagata University, 4-3-16 Jonan, Yonezawa 992-8510, Japan.
J Phys Chem B. 2006 Oct 19;110(41):20217-23. doi: 10.1021/jp063494g.
Effects of magnetization on the complex modulus of kappa-carrageenan magnetic gels have been investigated. The magnetic gel was made of a natural polymer, kappa-carrageenan, and a ferrimagnetic particle, barium ferrite. The complex modulus was measured before and after magnetization of the gel by dynamic viscoelastic measurements with a compressional strain. The gels showed a giant reduction in the storage modulus of approximately 10(7) Pa and also in the loss modulus of approximately 10(6) Pa due to magnetization. The reduction increased with increasing volume fraction of ferrite, and it was nearly independent of the frequency. It was also found that the change in the modulus was nearly independent of the magnetization direction and irradiation time of the magnetic fields to the gel. The magnetic gels demonstrating the giant reduction in the dynamic modulus showed a large nonlinear viscoelastic response. It was observed that the magnetic gel was deformed slightly due to magnetization. The observed giant complex modulus reduction could be attributed to the nonlinear viscoelasticity and deformation caused by magnetization. Magnetism, nonlinear viscoelasticity, and effects of magnetization on the morphological and shape changes were discussed.
研究了磁化对κ-卡拉胶磁性凝胶复数模量的影响。磁性凝胶由天然聚合物κ-卡拉胶和亚铁磁性颗粒钡铁氧体制成。通过压缩应变动态粘弹性测量,在凝胶磁化前后测量复数模量。由于磁化,凝胶的储能模量大幅降低约10⁷ Pa,损耗模量也大幅降低约10⁶ Pa。这种降低随着铁氧体体积分数的增加而增大,并且几乎与频率无关。还发现模量的变化几乎与磁化方向以及磁场对凝胶的照射时间无关。表现出动态模量大幅降低的磁性凝胶呈现出较大的非线性粘弹性响应。观察到磁性凝胶因磁化而略有变形。观察到的复数模量大幅降低可归因于磁化引起的非线性粘弹性和变形。讨论了磁性、非线性粘弹性以及磁化对形态和形状变化的影响。