Annapooranan Raja, Yeerella Ram Hemanth, Chambers Robert J, Li Chenghai, Cai Shengqiang
Program in Materials Science and Engineering, University of California San Diego, La Jolla, CA 92093.
Department of Mechanical and Aerospace Engineering, University of California San Diego, La Jolla, CA 92093.
Proc Natl Acad Sci U S A. 2024 Oct 22;121(43):e2412635121. doi: 10.1073/pnas.2412635121. Epub 2024 Oct 15.
The fabrication of pressure-sensitive adhesives (PSA) using liquid crystal elastomers (LCE) that are tolerant to substrate roughness is explored in this work. Traditional soft adhesives are designed by maintaining a balance between their cohesive strength and compliance. However, rough surfaces can significantly affect the adhesion strength of PSAs. Lowering the stiffness of the adhesive by reducing the cross-linking density or using additives can improve contact on rough surfaces. But this also decreases the cohesive strength and affects the overall performance of the adhesive. Additive-free LCE-based adhesives are shown to overcome these challenges due to their unique properties. Soft elasticity of LCE and low cross-link density contribute to their high compliance, while moderate cross-linking provides finite strength. The effect of contact time and substrate roughness on the adhesive performance is evaluated using probe-tack, indentation, lap shear, and static loading experiments. The unique combination of properties offered by LCE can lead to the development of roughness-tolerant adhesives, thereby broadening the application scope of PSAs.
本文探索了使用对基材粗糙度具有耐受性的液晶弹性体(LCE)制备压敏胶粘剂(PSA)的方法。传统的软质胶粘剂是通过在其内聚强度和柔韧性之间保持平衡来设计的。然而,粗糙表面会显著影响PSA的粘附强度。通过降低交联密度或使用添加剂来降低胶粘剂的刚度,可以改善在粗糙表面上的接触。但这也会降低内聚强度并影响胶粘剂的整体性能。基于LCE的无添加剂胶粘剂因其独特性能而被证明能够克服这些挑战。LCE的柔软弹性和低交联密度使其具有高柔韧性,而适度交联则提供了一定强度。使用探针粘性、压痕、搭接剪切和静态加载实验评估了接触时间和基材粗糙度对胶粘剂性能的影响。LCE所具备的独特性能组合可促使开发出耐粗糙度的胶粘剂,从而拓宽PSA的应用范围。