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Hygroscopic Swelling Determination of Cellulose Nanocrystal (CNC) Films by Polarized Light Microscopy Digital Image Correlation

机译:偏振光显微镜数字图像相关法测定纤维素纳米晶(CNC)薄膜的吸湿溶胀

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摘要

The coefficient of hygroscopic swelling (CHS) of self-organized and shear-oriented cellulose nanocrystal (CNC) films was determined by capturing hygroscopic strains produced as result of isothermal water vapor intake in equilibrium. Contrast enhanced microscopy digital image correlation enabled the characterization of dimensional changes induced by the hygroscopic swelling of the films. The distinct microstructure and birefringence of CNC films served in exploring the in-plane hygroscopic swelling at relative humidity values ranging from 0 to 97. Water vapor intake in CNC films was measured using dynamic vapor sorption (DVS) at constant temperature. The obtained experimental moisture sorption and kinetic profiles were analyzed by fitting with Guggenheim, Anderson, and deBoer (GAB) and Parallel Exponential Kinetics (PEK) models, respectively. Self-organized CNC films showed isotropic swelling, CHS similar to 0.040 strain/C. By contrast, shear-oriented CNC films exhibited an anisotropic swelling, resulting in CHS,similar to 0.02 and similar to 0.30 strain/C, parallel and perpendicular to CNC alignment, respectively. Finite element analysis (FEA) further predicted moisture diffusion as the predominant mechanism for swelling of CNC films.
机译:通过捕获平衡状态下等温水蒸气摄入产生的吸湿性应变,测定了自组织剪切取向纤维素纳米晶(CNC)薄膜的吸湿性溶胀系数(CHS)。对比度增强显微镜数字图像相关性能够表征由薄膜吸湿膨胀引起的尺寸变化。CNC薄膜独特的微观结构和双折射性有助于探索相对湿度值为0%至97%的面内吸湿性膨胀。在恒温下使用动态蒸汽吸附 (DVS) 测量 CNC 薄膜中的水蒸气摄入量。分别通过拟合Guggenheim, Anderson, and deBoer(GAB)模型和平行指数动力学(PEK)模型,分析了实验吸湿率和动力学分布。自组织CNC薄膜表现出各向同性膨胀,CHS类似于0.040 %应变/%C。相比之下,剪切取向数控薄膜表现出各向异性膨胀,导致CHS(分别接近0.02和0.30 %应变/%C)平行和垂直于CNC对位。有限元分析(FEA)进一步预测水分扩散是CNC薄膜膨胀的主要机制。

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