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Phase Diagrams of Instabilities in Compressed Film-Substrate Systems

机译:压缩膜-基材系统中的不稳定性相图

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摘要

Subject to a compressive membrane stress, an elastic film bonded on a substrate can become unstable, forming wrinkles, creases or delaminated buckles. Further increasing the compressive stress can induce advanced modes of instabilities including period-doubles, folds, localized ridges, delamination, and coexistent instabilities. While various instabilities in film-substrate systems under compression have been analyzed separately, a systematic and quantitative understanding of these instabilities is still elusive. Here we present a joint experimental and theoretical study to systematically explore the instabilities in elastic film-substrate systems under uniaxial compression. We use the Maxwell stability criterion to analyze the occurrence and evolution of instabilities analogous to phase transitions in thermodynamic systems. We show that the moduli of the film and the substrate, the film-substrate adhesion strength, the film thickness, and the prestretch in the substrate determine various modes of instabilities. Defects in the film-substrate system can facilitate it to overcome energy barriers during occurrence and evolution of instabilities. We provide a set of phase diagrams to predict both initial and advanced modes of instabilities in compressed film-substrate systems. The phase diagrams can be used to guide the design of film-substrate systems to achieve desired modes of instabilities.
机译:经受压缩膜应力,粘合在基材上的弹性膜可能变得不稳定,形成皱纹,折痕或分层的折曲。进一步增加压应力会导致不稳定性的高级模式,包括周期双倍,褶皱,局部山脊,分层以及共存的不稳定性。尽管已经分别分析了压缩状态下的薄膜-基材系统中的各种不稳定性,但仍无法系统,定量地理解这些不稳定性。在这里,我们提出了一项联合的实验和理论研究,以系统地探索单轴压缩下弹性膜-基底系统的不稳定性。我们使用麦克斯韦稳定性准则来分析类似于热力学系统中相变的不稳定性的发生和演化。我们表明,膜和基底的模量,膜与基底的粘合强度,膜厚度和基底中的预拉伸决定了各种不稳定性模式。膜-基底系统中的缺陷可以帮助其克服不稳定性的发生和发展过程中的能垒。我们提供了一组相图来预测压缩膜-基底系统中不稳定性的初始和高级模式。相图可用于指导薄膜-基材系统的设计,以实现所需的不稳定性模式。

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