Functional Surfaces Group, INM - Leibniz Institute for New Materials, Campus D2 2, 66123 Saarbrücken, Germany.
Langmuir. 2011 Jun 21;27(12):7752-9. doi: 10.1021/la2009336. Epub 2011 May 23.
The effect of viscoelasticity on adhesion was investigated for micropatterned epoxy surfaces and compared to nonpatterned surfaces. A two-component epoxy system was used to produce epoxy compositions with different viscoelastic properties. Pillar arrays with flat punch tip geometries were fabricated with a two-step soft lithography process. Adhesion properties were measured with a home-built adhesion tester using a spherical sapphire probe as a counter-surface. Compared to flat controls, micropatterned epoxy samples with low viscoelasticity (i.e., low damping factors) showed at least a 20-fold reduction in pull-off force per actual contact area for both low (E' = 2.3 MPa) and high (E' = 2.3 GPa) storage moduli. This antiadhesive behavior may result from poor contact formation and indicates that the adhesion performance of commonly used elastomers for dry adhesives (e.g., polydimethylsiloxane) is governed by the interfacial viscoelasticity. Adhesion significantly increased with increasing viscoelasticity. Micropatterned samples with high viscoelasticity showed a 4-fold reduction in adhesion for aspect ratio (AR) 1.1 patterns but a 2-fold enhancement in adhesion for AR 2.2 patterns. These results indicate that viscoelasticity can enhance the effect of surface patterning on adhesion and should be considered as a significant parameter in the design of artificial patterned adhesives.
研究了粘弹性对附着力的影响,比较了微图案环氧表面和非图案表面。使用双组分环氧树脂体系制备具有不同粘弹性的环氧树脂组合物。使用两步软光刻工艺制造具有平坦冲头尖端几何形状的立柱阵列。使用自制的附着力测试仪,使用球形蓝宝石探头作为对表面,测量附着力性能。与平面对照相比,具有低粘弹性(即低阻尼因子)的微图案环氧样品在低(E'=2.3 MPa)和高(E'=2.3 GPa)储能模量下,实际接触面积的剥离力至少降低了 20 倍。这种抗粘性行为可能是由于接触形成不良引起的,表明常用于干粘合剂的弹性体(例如聚二甲基硅氧烷)的粘合性能由界面粘弹性决定。随着粘弹性的增加,附着力显著增加。具有高粘弹性的微图案样品的粘附力在纵横比(AR)为 1.1 的图案下降低了 4 倍,但在 AR 为 2.2 的图案下增加了 2 倍。这些结果表明,粘弹性可以增强表面图案对附着力的影响,并且在设计人造图案化粘合剂时应将其视为一个重要参数。