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Surface energy of strained amorphous solids

机译:应变无定形固体的表面能

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摘要

Surface stress and surface energy are fundamental quantities which characterize the interface between two materials. Although these quantities are identical for interfaces involving only fluids, the Shuttleworth effect demonstrates that this is not the case for most interfaces involving solids, since their surface energies change with strain. Crystalline materials are known to have strain-dependent surface energies, but in amorphous materials, such as polymeric glasses and elastomers, the strain dependence is debated due to a dearth of direct measurements. Here, we utilize contact angle measurements on strained glassy and elastomeric solids to address this matter. We show conclusively that interfaces involving polymeric glasses exhibit strain-dependent surface energies, and give strong evidence for the absence of such a dependence for incompressible elastomers. The results provide fundamental insight into our understanding of the interfaces of amorphous solids and their interaction with contacting liquids.
机译:表面应力和表面能是表征两种材料之间界面的基本量。尽管对于仅涉及流体的界面,这些量是相同的,但Shuttleworth效应表明,对于大多数涉及固体的界面而言,情况并非如此,因为它们的表面能会随着应变而变化。已知结晶材料具有应变相关的表面能,但是在非晶材料(例如聚合物玻璃和弹性体)中,由于缺乏直接测量,因此对应变相关性存在争议。在这里,我们利用对应变玻璃状和弹性固体的接触角测量来解决此问题。我们得出结论,涉及聚合物玻璃的界面表现出应变相关的表面能,并为没有这种不可压缩的弹性体的依赖性提供了有力的证据。结果为我们对无定形固体的界面及其与接触液体的相互作用的理解提供了基本的见识。

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