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超高电场下聚合物中的起皱到坑洞失稳。

Creasing to cratering instability in polymers under ultrahigh electric fields.

机构信息

Soft Active Materials Laboratory, Department of Mechanical Engineering and Materials Science, Duke University, Durham, North Carolina 27708, USA.

出版信息

Phys Rev Lett. 2011 Mar 18;106(11):118301. doi: 10.1103/PhysRevLett.106.118301. Epub 2011 Mar 14.

Abstract

We report a new type of instability in a substrate-bonded elastic polymer subject to an ultrahigh electric field. Once the electric field reaches a critical value, the initially flat surface of the polymer locally folds against itself to form a pattern of creases. As the electric field further rises, the creases increase in size and decrease in density, and strikingly evolve into craters in the polymer. The critical field for the electrocreasing instability scales with the square root of the polymer's modulus. Linear stability analysis overestimates the critical field for the electrocreasing instability. A theoretical model has been developed to predict the critical field by comparing the potential energies in the creased and flat states. The theoretical prediction matches consistently with the experimental results.

摘要

我们报告了一种在超高电场作用下基底结合的弹性聚合物的新型不稳定性。一旦电场达到一个临界值,聚合物的初始平坦表面就会局部对折形成褶皱图案。随着电场的进一步升高,褶皱的尺寸增大,密度减小,聚合物表面惊人地演变成火山口状。电致膨胀不稳定性的临界场与聚合物模量的平方根成正比。线性稳定性分析高估了电致膨胀不稳定性的临界场。通过比较褶皱和平坦状态的势能,已经建立了一个理论模型来预测临界场。理论预测与实验结果一致。

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