Ponce Suomi, Bico José, Roman Benoît
Laboratoire de Physique et Mécanique des Milieux Hétérogènes (PMMH), UMR CNRS 7636; Sorbonne Université - UPMC, Univ. Paris 06; Sorbonne Paris Cité - UPD, Univ. Paris 07; PSL - ESPCI, 10 rue Vauquelin, 75005 Paris, France.
Soft Matter. 2015 Dec 28;11(48):9281-90. doi: 10.1039/c5sm01203a.
We describe the peeling of an elastomeric strip adhering to a glass plate through van der Waals interactions in the limit of a zero peeling angle. In contrast to classical studies that predict a saturation of the pulling force, in this lap test configuration the force continuously increases, while a sliding front propagates along the tape. The strip eventually detaches from the substrate when the front reaches its end. Although the evolution of the force is reminiscent of recent studies involving a compliant adhesive coupled with a rigid backing, the progression of a front is in contradiction with such a mechanism. To interpret this behavior, we estimate the local shear stress at the interface by monitoring the deformation of the strip. Our results are consistent with a nearly constant friction stress in the sliding zone in agreement with other experimental observations where adhesion and friction are observed.
我们描述了在零剥离角极限情况下,通过范德华相互作用将附着在玻璃板上的弹性体条带剥离的过程。与预测拉力会饱和的经典研究不同,在这种搭接试验配置中,力持续增加,同时一个滑动前沿沿着胶带传播。当前沿到达胶带末端时,条带最终从基底上分离。尽管力的演变让人联想到最近涉及柔性粘合剂与刚性背衬耦合的研究,但前沿的进展与这种机制相矛盾。为了解释这种行为,我们通过监测条带的变形来估计界面处的局部剪应力。我们的结果与滑动区域内几乎恒定的摩擦应力一致,这与其他观察到粘附和摩擦的实验结果相符。