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      Theory of the leak-rate of seals

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          Abstract

          Seals are extremely useful devices to prevent fluid leakage. However, the exact mechanism of roughness induced leakage is not well understood. We present a theory of the leak-rate of seals, which is based on percolation theory and a recently developed contact mechanics theory. We study both static and dynamics seals. We present molecular dynamics results which show that when two elastic solids with randomly rough surfaces are squeezed together, as a function of increasing magnification or decreasing squeezing pressure, a non-contact channel will percolate when the (relative) projected contact area, A/A_0, is of order 0.4, in accor dance with percolation theory. We suggest a simple experiment which can be used to test the theory.

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          Author and article information

          Journal
          06 May 2008
          Article
          10.1088/0953-8984/20/31/315011
          0805.0699
          41659ea8-49f3-42b8-87da-6cb947d6ded6

          http://arxiv.org/licenses/nonexclusive-distrib/1.0/

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          12 pages, 19 figures
          cond-mat.soft

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