论文标题

湿度对纸质材料的力学和失败的影响:纤维和光纤网络量表的关节数值和实验研究

Humidity Influence on Mechanics and Failure of Paper Materials: Joint Numerical and Experimental Study on Fiber and Fiber Network Scale

论文作者

Lin, Binbin, Auernhammer, Julia, Schäfer, Jan-Lukas, Stark, Robert, Meckel, Tobias, Biesalski, Markus, Xu, Bai-Xiang

论文摘要

纸质材料是天然复合材料,除非进行化学和机械加工处理,否则众所周知是亲水性的。相对湿度会影响纤维弹性,纤维纤维键和故障机制。在这项工作中,我们介绍了一项有关在湿度影响下纤维和纤维网络的机械和故障行为的全面实验和计算研究。手动提取的纤维素纤维暴露于不同水平的湿度,然后使用原子力显微镜进行机械表征,该原子力显微镜提供了依赖于湿度的纵向Young的模量。获得的关系允许在任何湿度水平上计算纤维弹性模量。此外,通过使用同伴激光扫描显微镜,确定了纤维的吸湿膨胀系数。另一方面,我们提出了一个有限元模型,以模拟光纤网络的变形和故障。该模型包括使用实验确定的常数的纤维各向异性和吸湿性扩张。此外,它使用依赖湿度的凝聚区接口模型对纤维纤维键合和损伤。对示例性光纤网络样品进行了有限元模拟,以证明不同方面的影响,包括相对湿度和纤维纤维键合参数对机械特征的影响,例如力延长曲线,湿强度,扩展性和局部光纤纤维纤维纤维剥离。同时,通过使用原位成像技术跟踪单独染色的纤维,可以揭示本地湿区域中的纤维网络故障。实验数据和凝聚有限元模拟都证明了纤维的拉出,这意味着纤维纤维脱夹在湿纸过程中的重要作用。

Paper materials are natural composite materials and well-known to be hydrophilic unless chemical and mechanical processing treatments are undertaken. The relative humidity impacts the fiber elasticity, the fiber-fiber bonds and the failure mechanism. In this work, we present a comprehensive experimental and computational study on the mechanical and failure behaviour of the fiber and the fiber network under humidity influence. The manually extracted cellulose fiber is exposed to different levels of humidity, and then mechanically characterized using Atomic Force Microscopy, which delivers the humidity dependent longitudinal Young's modulus. The obtained relationship allows calculation of fiber elastic modulus at any humidity level. Moreover, by using Confoncal Laser Scanning Microscopy, the coefficient of hygroscopic expansion of the fibers is determined. On the other hand, we present a finite element model to simulate the deformation and the failure of the fiber network. The model includes the fiber anisotropy and the hygroscopic expansion using the experimentally determined constants. In addition, it regards the fiber-fiber bonding and damage by using a humidity dependent cohesive zone interface model. Finite element simulations on exemplary fiber network samples are performed to demonstrate the influence of different aspects including relative humidity and fiber-fiber bonding parameters on the mechanical features such as force-elongation curves, wet strength, extensiability and the local fiber-fiber debonding. In meantime, fiber network failure in a locally wetted region is revealed by tracking of individually stained fibers using in-situ imaging techniques. Both the experimental data and the cohesive finite element simulations demonstrate the pull-out of fibers and imply the significant role of the fiber-fiber debonding in the failure process of the wet paper.

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