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THE ORIENTATION OF MESOPHASE PITCH DURING FULLY DEVELOPED CHANNEL FLOW

机译:充分发展的通道流期间的中间相间距的方向

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Mesophase pitch-based carbon fibers are ideally suited for applications where the rapid dissipation of heat is important (structural composites, printed circuit substrates, etc.). However, control of texture is essential in order to optimize fiber properties, especially thermal conductivity. Because ribbon-shaped mesophase pitch-based carbon fibers possess a highly linear texture, these fibers are very promising for high thermal conductivity applications. The observed texture of these ribbon-shaped fibers and the radial texture commonly observed in circular fibers can be predicted from liquid-crystal flow theory, where the precursor molecules are modeled as rigid disks. In order to determine the orientation of flowing mesophase pitch, a capillary rheometer was modified to quench capillaries during extrusion. Aluminum capillaries were constructed with rectangular channels down the center (with a 9:1 aspect ratio). The capillaries containing the mesophase samples were mounted in low-viscosity epoxy resin and cured. The desired mesophase surface (transverse or longitudinal) was isolated by grinding and polishing the samples to 3 μm. Then the pitch surface was observed optically under cross-polarized light. The transverse surfaces of mesophase pitch indicated an orientation pattern where the aromatic rings lie perpendicular to the channel walls. This result is consistent with that predicted by the liquid-crystal flow theory, as well as with the textures of carbonized fibers.
机译:中间相沥青基碳纤维非常适合需要快速散热的应用(结构复合材料,印刷电路板等)。但是,为了优化纤维性能,特别是导热性,控制质地是必不可少的。由于带状中间相沥青基碳纤维具有高度线性的质构,因此这些纤维对于高导热率应用非常有前途。这些带状纤维的观察到的织构和通常在圆形纤维中观察到的径向织构可以根据液晶流动理论进行预测,其中前体分子被建模为刚性圆盘。为了确定中间相流动的方向,对毛细管流变仪进行了改进,以在挤出过程中淬灭毛细管。铝毛细管的中心向下(长宽比为9:1)构造为矩形通道。将包含中间相样品的毛细管安装在低粘度环氧树脂中并固化。通过研磨和抛光样品至3μm,分离出所需的中间相表面(横向或纵向)。然后,在交叉偏振光下光学观察俯仰表面。中间相沥青的横向表面指示取向图案,其中芳环垂直于通道壁。该结果与液晶流动理论所预测的结果以及碳化纤维的织构一致。

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