Air, Helium and Water Leakage in Rubber O-ring Seals with Application to Syringes
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B. Persson | A. Tiwari | P. Mangiagalli | C. Rotella | C. Huon | A. Tiwari | Carine Huon | B. Persson
[1] B. Persson. Comments on the Theory of Fluid Flow Between Solids with Anisotropic Roughness , 2020, Tribology Letters.
[2] Anle Wang,et al. Percolation and Reynolds Flow in Elastic Contacts of Isotropic and Anisotropic, Randomly Rough Surfaces , 2020, Tribology Letters.
[3] B. Persson. Interfacial fluid flow for systems with anisotropic roughness , 2020, The European physical journal. E, Soft matter.
[4] Atanas Koulov,et al. Comparing Physical Container Closure Integrity Test Methods and Artificial Leak Methodologies , 2019, PDA Journal of Pharmaceutical Science and Technology.
[5] Michele Ciavarella,et al. Modeling and simulation in tribology across scales: An overview , 2018, Tribology International.
[6] Luciano Afferrante,et al. Elastic Contact Mechanics of Randomly Rough Surfaces: An Assessment of Advanced Asperity Models and Persson’s Theory , 2018, Tribology Letters.
[7] Sarah S Peláez,et al. Container Closure Integrity Testing of Prefilled Syringes. , 2018, Journal of pharmaceutical sciences.
[8] Luciano Afferrante,et al. Meeting the Contact-Mechanics Challenge , 2017, Tribology Letters.
[9] Andrea Vanossi,et al. Elements of Friction Theory and Nanotribology , 2016 .
[10] P. Chalus,et al. Artificial Leaks in Container Closure Integrity Testing: Nonlinear Finite Element Simulation of Aperture Size Originated by a Copper Wire Sandwiched between the Stopper and the Glass Vial , 2016, PDA Journal of Pharmaceutical Science and Technology.
[11] Wolf B. Dapp,et al. Self-affine elastic contacts: percolation and leakage. , 2012, Physical review letters.
[12] P. Perrier,et al. Mass flow measurement through rectangular microchannel from hydrodynamic to near free molecular regimes , 2011 .
[13] B. Persson,et al. Interfacial separation between elastic solids with randomly rough surfaces: Comparison between theory and numerical techniques , 2011, 1102.5412.
[14] B. Persson,et al. Time-dependent fluid squeeze-out between solids with rough surfaces , 2010, The European physical journal. E, Soft matter.
[15] Giuseppe Carbone,et al. Leakage mechanism in flat seals , 2009 .
[16] B N J Persson,et al. Leak rate of seals: Effective-medium theory and comparison with experiment , 2009, The European physical journal. E, Soft matter.
[17] B. Lorenz,et al. Leak rate of seals: Comparison of theory with experiment , 2009, 0904.2988.
[18] B. Persson,et al. Theory of the leak-rate of seals , 2008, 0805.0699.
[19] B. Persson,et al. Contact mechanics: contact area and interfacial separation from small contact to full contact , 2008, 0803.4146.
[20] David T. Limmer,et al. Gas transport in ethylene–propylene–diene (EPDM) elastomer: Molecular simulation and experimental study , 2007 .
[21] B. Persson. Contact mechanics for randomly rough surfaces , 2006, cond-mat/0603807.
[22] A. Volokitin,et al. On the nature of surface roughness with application to contact mechanics, sealing, rubber friction and adhesion , 2005, Journal of physics. Condensed matter : an Institute of Physics journal.
[23] B. Persson. Theory of rubber friction and contact mechanics , 2001 .
[24] A. Beylich,et al. Solving the kinetic equation for all Knudsen numbers , 2000 .
[25] J. Shea,et al. Sliding Friction-Physical Principles and Applications , 1998, IEEE Electrical Insulation Magazine.
[26] I. Hutchings,et al. The erosive wear of elastomers , 1991 .
[27] G. J. V. Amerongen,et al. The Permeability of Different Rubbers to Gases and Its Relation to Diffusivity and Solubility , 1946 .
[28] S. Chapman,et al. An introduction to the kinetic theory of gases , 1941 .
[29] Peter Beike,et al. Intermolecular And Surface Forces , 2016 .