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Fine structure of regenerated cellulose films as revealed by dye accessibility

机译:通过染料可及性揭示再生纤维素薄膜的精细结构

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AbstractWe have demonstrated the utility of dyeing techniques, using Solophenyl Fast Blue Green BL, to characterize a variety of regenerated cellulosic films. Measurement of the optical density ratio and the rate and magnitude of dye uptake show that differences in structure exist in regenerated cellulose films processed under different conditions. These differences are attributed to differences in lateral order and orientation of cellulose chains and are believed similar to the so‐called skin and core observed in rayon fibers. These differences have been found related reproducibly to differences in regenerating and processing conditions. Diffusion of dye into a film is very rapid initially, slowing later to an almost constant rate, depending on the dye concentration in solution and on the type of film. A modified diffusion equation of the form InC/C0– (1 –C/C0) =Dγ2‐tC0/Cfhas been found adequate to express the non‐steady state of the observed absorption process, whereC0is the initial dye concentration of the test solution,Cis the instantaneous dye concentration at timet, Cfis the dye concentration in the film, γ2is the area of film per unit volume of dye solution, andDis the diffusion coefficient. Thus, a mathematical basis is provided for structural differentiation in cellulosic films processed in various ways. Plate‐cast viscose films appear to have a dense surface (skin) exposed to the regenerating bath and a porous surface (core) on the side touching the plate, whereas machine‐cast viscose films have a dense surfac
机译:摘要我们已经证明了染色技术的效用,使用Solophenyl Fast Blue Green BL,表征各种再生纤维素薄膜。光密度比的测量以及染料吸收的速率和幅度表明,在不同条件下加工的再生纤维素薄膜中存在结构差异。这些差异归因于纤维素链的横向顺序和方向的差异,并且被认为类似于在人造丝纤维中观察到的所谓皮肤和核心。已发现这些差异可重复地与再生和加工条件的差异有关。染料在薄膜中的扩散最初非常迅速,后来减慢到几乎恒定的速率,具体取决于溶液中的染料浓度和薄膜的类型。改进的扩散方程 InC/C0– (1 –C/C0) =Dγ2‐tC0/Cf 足以表示观察到的吸收过程的非稳态,其中 C0 是测试溶液的初始染料浓度,Cis 时间的瞬时染料浓度,Cfis 薄膜中的染料浓度,γ2 是每单位体积染料溶液的薄膜面积, andDis 扩散系数。因此,为以各种方式加工的纤维素薄膜的结构分化提供了数学基础。板浇注粘胶薄膜似乎具有暴露于再生浴的致密表面(表皮)和接触板的一侧的多孔表面(芯),而机器浇注粘胶薄膜具有致密的表面

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