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Tearing as a test for mechanical characterization of thin adhesive films

机译:撕裂作为薄胶膜机械特性的测试

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摘要

Thin adhesive films have become increasingly important in applications involving packaging, coating or for advertising. Once a film is adhered to a substrate, flaps can be detached by tearing and peeling, but they narrow and collapse in pointy shapes. Similar geometries are observed when peeling ultrathin films grown or deposited on a solid substrate, or skinning the natural protective cover of a ripe fruit. Here, we show that the detached flaps have perfect triangular shapes with a well-defined vertex angle; this is a signature of the conversion of bending energy into surface energy of fracture and adhesion. In particular, this triangular shape of the tear encodes the mechanical parameters related to these three forms of energy and could form the basis of a quantitative assay for the mechanical characterization of thin adhesive films, nanofilms deposited on substrates or fruit skin.
机译:薄的粘合膜在涉及包装,涂层或广告的应用中变得越来越重要。一旦将薄膜粘附到基材上,就可以通过撕裂和剥离将折翼分离,但是折翼会变窄并塌缩成尖锐的形状。当剥离生长或沉积在固体基质上的超薄薄膜,或剥去成熟果实的天然保护皮时,会观察到类似的几何形状。在这里,我们显示分离的襟翼具有完美的三角形形状,并具有明确的顶角。这是弯曲能转化为断裂和粘附的表面能的标志。特别是,眼泪的这种三角形形状编码了与这三种能量形式有关的机械参数,并且可以构成定量分析的基础,用于薄薄的粘合膜,沉积在基材或水果皮上的纳米膜的机械表征。

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