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Mechanisms of reversible stretchability of thin metal films on elastomeric substrates

机译:弹性体基底上金属薄膜可逆拉伸性的机理

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Gold films on an elastomeric substrate can be stretched and relaxed reversibly by tens of percent. The films initially form in two different structures, one continuous and the other containing tribranched microcracks. We have identified the mechanism of elastic stretchability in the films with microcracks. The metal, which is much stiffer than the elastomer, forms a percolating network. To accommodate the large elongation of the elastomeric substrate, the metal network twists and deflects out of the plane but remains bonded to the soft substrate. Consequently, the metal film experiences only small strains and deforms elastically without suffering fatigue.
机译:弹性体基材上的金膜可以可逆地拉伸和松弛百分之几十。薄膜最初形成两种不同的结构,一种是连续的,另一种则包含三支微裂纹。我们已经确定了具有微裂纹的膜的弹性拉伸性的机理。比弹性体硬得多的金属形成渗滤网络。为了适应弹性体基材的较大伸长率,金属网络会扭曲并偏转离开平面,但仍会粘结到软质基材上。因此,金属膜仅经受很小的应变并且弹性变形而不会疲劳。

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