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Adhesive behavior study between cellulose and borosilicate glass using colloidal probe technique

机译:胶体探针技术研究纤维素与硼硅酸盐玻璃之间的粘合行为

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Cellulose-glass fiber hybrid composites have been introduced to introduce weight and price benefits compared to glass composites. However, the interactions between glass and cellulose have not been extensively studied. Understanding the interactions between these two materials will help to improve the mechanical properties of the cellulose hybrid composites. In this paper, by employing the colloidal probe technique, we investigated the interaction forces between glass and cellulose material. A silicon probe with a borosilicate glass microsphere attached as the probe tip was implemented into an atomic force microscope (AFM) to complete the task. Cellulose membranes were used as experiment samples. By pressing and releasing the colloidal probe against the cellulose membrane, the adhesion force and the adhesion energy were directly obtained through the measurements. The interfacial energy was revealed by applying the Johnson-Kendall-Roberts (JKR) model, and a theoretical calculation of the material stiffness was conducted.
机译:引入了纤维素-玻璃纤维混合复合材料,与玻璃复合材料相比,具有重量和价格优势。然而,尚未广泛研究玻璃与纤维素之间的相互作用。了解这两种材料之间的相互作用将有助于改善纤维素杂化复合材料的机械性能。在本文中,通过使用胶体探针技术,我们研究了玻璃和纤维素材料之间的相互作用力。将带有硼硅酸盐玻璃微球作为探针尖端的硅探针安装到原子力显微镜(AFM)中,以完成任务。纤维素膜用作实验样品。通过将胶体探针压向纤维素膜并释放,可通过测量直接获得粘合力和粘合能。通过应用Johnson-Kendall-Roberts(JKR)模型揭示了界面能,并进行了材料刚度的理论计算。

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