Department of Material Chemistry, Graduate School of Engineering, Kyoto University, Nishikyo, Kyoto 615-8510, Japan.
Department of Material Chemistry, Graduate School of Engineering, Kyoto University, Nishikyo, Kyoto 615-8510, Japan.
Int J Biol Macromol. 2018 Oct 15;118(Pt A):584-587. doi: 10.1016/j.ijbiomac.2018.06.127. Epub 2018 Jun 26.
Optical properties of pullulan films were examined before and after uniaxial stretching to obtain the specific molecular characteristics of pullulan. It was shown that the specific optical rotation for pullulan film was not affected by uniaxial stretching, being the same as that for pullulan in aqueous solution. Combined with the mechanical measurement, the stress-optical coefficient for pullulan was estimated as a material constant on the basis of the modified stress-optical rule. The birefringence was positive and increased with time during the stress relaxation of uniaxially-stretched pullulan film. A set of the stress-optical coefficients C=1.9×10Pa and C=-4.6×10Pa were obtained, where the subscripts R and G stand for the rubber and the glass components respectively.
研究了未经拉伸和单轴拉伸后的普鲁兰薄膜的光学性质,以获得普鲁兰的特定分子特征。结果表明,普鲁兰薄膜的比旋光度不受单轴拉伸的影响,与普鲁兰在水溶液中的比旋光度相同。结合力学测量,根据改进的应力光学法则,用材料常数估计普鲁兰的应力光学系数。在单轴拉伸普鲁兰薄膜的应力松弛过程中,双折射为正值且随时间增加。得到了一组应力光学系数 C=1.9×10^-11 Pa 和 C=-4.6×10^-11 Pa,其中下标 R 和 G 分别代表橡胶和玻璃成分。