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Linear Viscoelasticity and Non-Linear Elasticity of Block Copolymer Blends Used as Soft Adhesives

机译:用作软胶的嵌段共聚物共混物的线性粘弹性和非线性弹性

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摘要

The debonding of pressure-sensitive-adhesives from a rigid surface often occurs with the formation of a fibrillar structure bridging the surface and the adhesive. This fibrillar structure is responsible for the large (of the order of 1 kJ/m~2) adhesion energy, which is measured, for this type of adhesive despite the very low level of applied stress. One way to account for this dissipated energy is viscous flow in the elongation process of the fibrils. However, for certain types of adhesives, the extension of the fibrils is essentially a quasi reversible elastic process and the energy is only dissipated rather rapidly when the fibrils are detached from the surface. It is therefore essential to characterize the elastic properties of theses adhesives not only in the linear viscoelastic regime but also in the large strain non-linear elastic domain. We have therefore performed tensile tests of model adhesive films based on block copolymers. The respective roles played by the linear viscoelasticity and non-linear elasticity in controlling the properties will be discussed.
机译:压敏胶粘剂从刚性表面上的剥离通常发生在将表面和胶粘剂桥接在一起的纤维状结构的形成上。尽管施加的应力水平非常低,但这种纤维状结构仍可为这种类型的胶粘剂提供较大的(约1 kJ / m〜2)粘合力。解决这种耗散能量的一种方法是在原纤维的伸长过程中产生粘性流动。然而,对于某些类型的粘合剂,原纤维的延伸本质上是准可逆的弹性过程,并且当原纤维从表面分离时,能量仅相当快地耗散。因此,不仅在线性粘弹性范围内而且在大应变非线性弹性范围内表征这些粘合剂的弹性性能也是至关重要的。因此,我们对基于嵌段共聚物的模型粘合剂膜进行了拉伸测试。将讨论线性粘弹性和非线性弹性在控制特性中分别发挥的作用。

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