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A Green’s Function Molecular Dynamics Approach to the Mechanical Contact between Thin Elastic Sheets and Randomly Rough Surfaces

机译:格林函数分子动力学方法研究薄弹性片与随机粗糙表面之间的机械接触

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摘要

Adhesion of biological systems is often made possible through thin elastic layers, such as human skin. To address the question of when a layer is sufficiently thin to become adhesive, we extended Green’s function molecular dynamics (GFMD) to account for the finite thickness of an elastic body that is supported by a fluid foundation. We observed that thin layers can much better accommodate rough counterfaces than thick structures. As a result, the contact area is enlarged, in particular, when the width of the layer w approaches or even falls below the short-wavelength cutoff λs of the surface spectra. In the latter case, the proportionality coefficient between area and load scales is (w/λs)3, which is consistent with Persson’s contact mechanics theory.
机译:通常通过薄的弹性层(例如人体皮肤)使生物系统的粘附成为可能。为了解决何时一层足够薄才能粘着的问题,我们扩展了格林函数分子动力学(GFMD)来考虑由流体基础支撑的弹性体的有限厚度。我们观察到,与厚结构相比,薄层可以更好地容纳粗糙的对立面。结果,特别是当层w的宽度接近或什至低于短波长截止 λ s < / math>的表面光谱。在后一种情况下,面积和负载比例之间的比例系数为 w / λ s 3 ,这与Persson的接触力学理论是一致的。

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