Oshri Oz, Diamant Haim
Raymond & Beverly Sackler School of Physics & Astronomy, Tel Aviv University, Tel Aviv 6997801, Israel.
Phys Chem Chem Phys. 2017 Sep 13;19(35):23817-23824. doi: 10.1039/c7cp03239k.
Thin rigid sheets floating on a liquid substrate appear, for example, in coatings and surfactant monolayers. Upon uniaxial compression the sheet undergoes transitions from a compressed flat state to a periodic wrinkled pattern to a localized folded pattern. The stability of these states is determined by the in-plane elasticity of the sheet, its bending rigidity, and the hydrostatics of the underlying liquid. Wrinkles and folds, and the wrinkle-to-fold transition, were previously studied for incompressible sheets. In the present work we extend the theory to include finite compressibility. We analyze the details of the flat-to-wrinkle transition, the effects of compressibility on wrinkling and folding, and the compression field associated with pattern formation. The state diagram of the floating sheet including all three states is presented.
例如,漂浮在液体基底上的薄刚性片材出现在涂层和表面活性剂单分子层中。在单轴压缩下,该片材会经历从压缩扁平状态到周期性皱纹图案再到局部折叠图案的转变。这些状态的稳定性由片材的面内弹性、其弯曲刚度以及下层液体的流体静力学决定。皱纹和折叠以及皱纹到折叠的转变,此前已针对不可压缩片材进行过研究。在本工作中,我们将理论扩展到包括有限可压缩性。我们分析了扁平到皱纹转变的细节、可压缩性对起皱和折叠的影响以及与图案形成相关的压缩场。给出了包括所有三种状态的漂浮片材的状态图。