Shinomiya Koki, Okawara Hina, Kikuchi Kei, Mayama Hiroyuki, Nonomura Yoshimune
Department of Biochemical Engineering, Graduate School of Science and Engineering, Yamagata University, 4-3-16 Jonan, Yonezawa 992-8510, Japan.
Department of Chemistry, Asahikawa Medical University, 2-1-1-1 Midorigaoka-Higashi, Asahikawa 078-8510, Japan.
ACS Omega. 2020 Jun 30;5(27):16406-16412. doi: 10.1021/acsomega.9b04184. eCollection 2020 Jul 14.
Interfacial phenomena on soft and wet materials, such as hydrogels, are important for modeling physical phenomena, such as friction, wetting, and adhesion on hydrophilic biosurfaces. Interfacial phenomena on soft material surfaces are not only affected by the properties of the surface but also by the geometry of the substrate. However, there are few reports on the influence of geometry and deformability on friction behavior at gel interfaces. In this study, we evaluate the effects of the thickness () of the upper agar gel layer on the friction force between gels under a sinusoidal movement. Although does not significantly affect the friction force or pattern, the normalized delay time (δ), which is the normalized time lag in the friction force response to the contact probe's movement, increases with . A regression analysis between δ and shows that δ increased linearly with . We present a simple model incorporating a shear modulus to qualitatively explain the experimental results. The analysis and our model indicate that one must not only consider surface properties, such as adhesion, but also thickness and rigidity when studying friction behavior at the gel-surface interface. These findings will be useful for understanding friction phenomena on soft biological systems, such as the tongue, throat, esophagus, and gut surfaces.
诸如水凝胶之类的柔软湿润材料上的界面现象,对于模拟诸如亲水性生物表面上的摩擦、润湿和粘附等物理现象而言非常重要。柔软材料表面上的界面现象不仅受表面性质的影响,还受基底几何形状的影响。然而,关于几何形状和可变形性对凝胶界面处摩擦行为的影响的报道很少。在本研究中,我们评估了上层琼脂凝胶层的厚度()对正弦运动下凝胶之间摩擦力的影响。尽管 对摩擦力或模式没有显著影响,但归一化延迟时间(δ),即摩擦力对接触探针运动响应中的归一化时间滞后,会随着 增加。δ 与 之间的回归分析表明,δ 随 呈线性增加。我们提出了一个包含剪切模量的简单模型来定性解释实验结果。分析和我们的模型表明,在研究凝胶 - 表面界面处的摩擦行为时,不仅必须考虑诸如粘附力等表面性质,还必须考虑厚度和刚度。这些发现将有助于理解诸如舌头、喉咙、食道和肠道表面等柔软生物系统上的摩擦现象。