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Formation, evolution and transition of multiple surface patterns in metal films on polymer substrates under uniaxial loading

机译:单轴载荷下聚合物基体上金属膜中多个表面图案的形成,演化和转变

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摘要

Strain-induced surface structures are very common in natural systems and they are very useful for a wide range of applications. In this work, we report on the formation, evolution and transition of multiple surface patterns in zinc/polydimethylsiloxane systems with varied film thicknesses under cyclic uniaxial loading. It is found that the mechanical compression leads to buckling patterns while the mechanical tension induces channel cracks. The buckling patterns include two classes of distinct morphologies: homogeneous wrinkling and localized buckle-delamination, depending on the film thickness. The morphological characteristics and in situ evolutional behaviors of the wrinkling, buckle-delamination and cracking are described and discussed in detail. The phenomenon of wrinkle-to-delamination transition is analyzed by a two-dimensional phase diagram and is used to measure the interfacial adhesion strength between the film and substrate. The report in this work can promote better understanding of the phenomenon of wrinkle-to-delamination transition and the complex interactions between the multiple surface patterns under mechanical loading.
机译:应变诱导的表面结构在自然系统中非常常见,并且对于广泛的应用非常有用。在这项工作中,我们报告了锌/聚二甲基硅氧烷系统在循环单轴载荷下具有不同膜厚的多个表面图案的形成,演化和过渡。发现机械压缩导致屈曲图案,而机械张力引起通道裂纹。屈曲图案包括两类不同的形态:均匀的起皱和局部的屈曲脱层,具体取决于薄膜的厚度。详细描述和讨论了起皱,屈曲-分层和开裂的形态特征和原位演化行为。通过二维相图分析了皱纹到分层的过渡现象,并用于测量薄膜与基材之间的界面粘合强度。这项工作中的报告可以促进人们更好地理解皱纹到分层的过渡现象以及在机械载荷下多个表面图案之间的复杂相互作用。

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