Shimokawa Michiko, Yoshida Hikaru, Komatsu Takumi, Omachi Rena, Kudo Kazue
Fukuoka Institute of Technology, Fukuoka 811-0295, Japan.
Department of Computer Science, Ochanomizu University, Tokyo 112-8610, Japan.
Gels. 2018 May 3;4(2):41. doi: 10.3390/gels4020041.
Wrinkles often emerge on a paint layer when a second coat of paint is applied on an already-coated substrate. Wrinkle formation occurs when the first layer absorbs organic solvent from the second layer. We set up experiments to mimic the double-coating process, focusing on the interaction between a paint layer and an organic solvent. In the experiments, we investigated the characteristic wavelengths of the wrinkles and the time of wrinkle emergence. We employed a simple model to explain the wrinkle emergence and performed numerical simulations. The linear stability analysis of the model provides a relation between the wavelengths and the characteristic timescale that agrees reasonably well with our experimental data as well as numerical results. Our results indicate that compression of the layer due to swelling and delamination are both important factors in the formation of wrinkles.
当在已经涂覆的基材上涂覆第二层油漆时,油漆层上常常会出现皱纹。当第一层从第二层吸收有机溶剂时,就会形成皱纹。我们进行了实验来模拟双层涂覆过程,重点研究油漆层与有机溶剂之间的相互作用。在实验中,我们研究了皱纹的特征波长和皱纹出现的时间。我们采用了一个简单的模型来解释皱纹的出现并进行了数值模拟。该模型的线性稳定性分析提供了波长与特征时间尺度之间的关系,这与我们的实验数据以及数值结果相当吻合。我们的结果表明,由于膨胀和分层导致的层压缩都是皱纹形成的重要因素。