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首页> 外文期刊>Journal of Applied Polymer Science >Polymer Cluster Orientation and Optical Phase Retardation of Rubbed Polyimide Surfaces
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Polymer Cluster Orientation and Optical Phase Retardation of Rubbed Polyimide Surfaces

机译:摩擦聚酰亚胺表面的聚合物团簇取向和光学相延迟

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In an atomic force microscopic image of the main-chain-and the side-chain-type polyimide surfaces, we have observed a variation of the surface morphology to use the rubbing depths and the rubbing times. On the rubbed polyimide surface, the polymer clusters are aligned in long chains along the rubbed polyimide surface, the polymer clusters are aligned in long chains along the rubbing direction. The topology of the polyimide surface is weakly changed at a lower rubbing depth, but it is greatly changed at a deeper rubbing depth. Once the polished string structure is obtained, no considerable changes in the surface topography of the polyimide are visible, although rubbing times are increased from 1 to 8 at constant rubbing depths (0.3 mm). The rubbed polyimide films show optical phase retardation, which was steeply increased with increasing rubbing depth; but it was increased very little with increasing rubbing times.
机译:在主链和侧链型聚酰亚胺表面的原子力显微镜图像中,我们观察到了使用摩擦深度和摩擦时间的表面形态变化。在摩擦的聚酰亚胺表面上,聚合物簇沿摩擦的聚酰亚胺表面排列成长链,聚合物簇在摩擦方向上沿长链排列。聚酰亚胺表面的拓扑在较低的摩擦深度下变化很小,但是在较深的摩擦深度下变化很大。一旦获得了抛光的线结构,尽管在恒定的摩擦深度(0.3毫米)下摩擦时间从1增加到了8,但是聚酰亚胺的表面形貌没有明显变化。摩擦后的聚酰亚胺薄膜显示出光学相位差,该相位差随着摩擦深度的增加而急剧增加。但随着摩擦时间的增加,它几乎没有增加。

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