On indentation of a pair of rigid punches connected by an elastic beam into an elastic half-plane with regard to the friction and adhesion forces in the contact region


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The contact problem of indentation of a pair of rigid punches with plane bases connected by an elastic beam into the boundary of an elastic half-plane is considered under the conditions of plane strain state. The external load is generated by lumped forces applied to the punches and a uniformly distributed normal load acting on the beam.

It is assumed that the contact between the punch and the elastic half-plane can be described by L. A. Galin’s statement, i.e., it is assumed that the adhesion acts in the interior part of each of the contact regions and the tangential stresses obeying the Coulomb law act on their boundaries.

With the symmetry taken into account, the problem is stated only for a single punch, and solving this problem is reduced to a system of four singular integral equations for the tangential and normal stresses in the adhesion region and the contact pressure in the sliding zones. The solution of the constitutive system together with three conditions of equilibrium of the system of punches connected by a beam is constructed by direct numerical integration by the method of mechanical quadratures.

As a result of the numerical analysis, the contact stress distribution functions were constructed and the values of the sliding zones and the punch rotation angle were determined for various values of the geometric, elastic, and force characteristics.

Sobre autores

A. Amirjanyan

Institute of Mechanics of the National Academy of Sciences of the Republic of Armenia

Email: avsah@mechins.sci.am
Armênia, pr. Marshala Bagramyana 24B, Erevan, 375019

A. Sahakyan

Institute of Mechanics of the National Academy of Sciences of the Republic of Armenia

Autor responsável pela correspondência
Email: avsah@mechins.sci.am
Armênia, pr. Marshala Bagramyana 24B, Erevan, 375019

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