论文标题
基于AFM的低频粘弹性表征木浆纤维在不同的相对湿度下
AFM-based low frequency viscoelastic characterization of wood pulp fibers at different relative humidity
论文作者
论文摘要
木浆纤维的粘弹性在纸张和纸产品的性能中起着基本作用。木浆纤维是由不同的细胞壁层组成并具有各向异性特性的分层复合材料。由于访问各个纤维是具有挑战性的,因此尚无测量技术能够表征纵向和横向纤维方向上的粘弹性特性。在这里,采用基于原子力显微镜的方法来研究木浆纤维在两个纤维方向上相对湿度的粘弹性特性。已经进行了实验性蠕变测试,以研究材料的低频响应。已经应用了弹簧仪表模型来表征粘弹性行为。结果表明,两个纤维方向之间的性质差异令人惊讶。将结果转移到光谱表示中解释了与长期行为相关的粘度的相反趋势。
The viscoelastic behavior of wood pulp fibers plays a fundamental role in the performance of paper and paper products. Wood pulp fibers are hierarchical composites consisting of different cell wall layers and have anisotropic properties. Since accessing the individual fibers is challenging, no measurement technique has been able to characterize the viscoelastic properties in the longitudinal and transverse fiber direction yet. Here, an atomic force microscopy-based method is applied to investigate the viscoelastic properties of wood pulp fibers at varying relative humidity in both fiber direction. Experimental creep tests have been performed to investigate the material's low frequency regime response. A spring-dashpot model has been applied to characterize the viscoelastic behavior. The results indicate surprisingly small differences of the properties between both fiber directions. Transferring the results into a spectral representation explains an opposing trend of the viscosity that is connected to the long-term behavior.