Numerical Method of Analyzing Contact Mechanics between a Sphere and a Flat Considering Lennard-Jones Surface Forces of Contacting Asperities and Noncontacting Rough Surfaces

Author:

Ono Kyosuke1

Affiliation:

1. Emeritus ProfessorTokyo Institute of Technology, Nanyodai-cho 2-27-4, Hachioji-shi, Tokyo, 192-0371, Japan

Abstract

A new numerical method of analyzing adhesive contact mechanics between a sphere and a flat with sub-nanometer roughness is presented. In contrast to conventional theories, the elastic deformations of mean height surfaces and contacting asperities, and Lennard-Jones (LJ) surface forces of both the contacting asperities and noncontacting rough surfaces including valley areas are taken into account. Calculated contact characteristics of a 2-mm-radius glass slider contacting a magnetic disk with a relatively rough surface and a 30-mm-radius head slider contacting a currently available magnetic disk with lower roughness are shown in comparison with conventional adhesive contact theories. The present theory was found to give a larger adhesive force than the conventional theories and to converge to a smooth sphere-flat contact theory as the roughness height approaches zero.

Publisher

ASME International

Subject

Surfaces, Coatings and Films,Surfaces and Interfaces,Mechanical Engineering,Mechanics of Materials

Reference29 articles.

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2. Effect of Contact Deformations on the Adhesion of Particles;Derjaguin;J. Colloid Interface Sci.

3. Adhesion of Spheres: The JKR-DMT Transition Using a Dugdale Model;Maugis;J. Colloid Interface Sci.

4. Deformation and Adhesion of Elastic Bodies in Contact;Attard;Phys. Rev. A

5. Adhesion of Elastic Spheres;Greenwood;Proc. R. Sci. London, Ser. A

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