Hirota Noriyuki, Ando Tsutomu, Shimada Tamotsu, Wada Hitoshi, Sakka Yoshio
International Center for Materials Nanoarchitectonics; Nano Ceramics Center, National Institute for Materials Science.
Department of Advanced Materials Science, The University of Tokyo, Tokyo, Japan.
Sci Technol Adv Mater. 2008 May 20;9(2):024211. doi: 10.1088/1468-6996/9/2/024211. eCollection 2008 Apr.
An microscopic observation of the magnetic orientation process of feeble magnetic fibers was carried out under high magnetic fields of up to 10 T using a scanning laser microscope. In the experiment, carbon fibers and needle-like titania fibers with a length of 1 to 20 μm were used. The fibers were observed to gradually orient their axes parallel to the direction of the magnetic field. The orientation behavior of the sample fibers was evaluated on the basis of the measured duration required for a certain angular variation. As predicted from the theoretical consideration, it was confirmed that the duration required for a certain angular variation normalized by the viscosity of the fluid is described as a function of the fiber length. The results obtained here appear useful for the consideration of the magnetic orientation of materials suspended in a static fluid.
使用扫描激光显微镜在高达10 T的强磁场下对弱磁性纤维的磁取向过程进行了微观观察。在实验中,使用了长度为1至20μm的碳纤维和针状二氧化钛纤维。观察到纤维的轴逐渐与磁场方向平行排列。根据测量的特定角度变化所需的持续时间对样品纤维的取向行为进行了评估。正如从理论考虑所预测的那样,证实了通过流体粘度归一化的特定角度变化所需的持续时间可描述为纤维长度的函数。此处获得的结果似乎有助于考虑悬浮在静态流体中的材料的磁取向。