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JOURNALS // Izvestiya of Saratov University. Mathematics. Mechanics. Informatics // Archive

Izv. Saratov Univ. Math. Mech. Inform., 2018 Volume 18, Issue 4, Pages 381–389 (Mi isu773)

Scientific Part
Mechanics

The construction of the deformation diagrams of metals and alloys at impact compression of tablet specimens with friction forces consideration

V. G. Bazhenova, D. L. Osetrova, A. A. Ryabovb

a Research Institute for Mechanics of Lobachevsky State University, 23 Gagarin Ave., Nizhni Novgorod 603950, Russia
b Federal State Unitary Enterprise "Russian Federal Nuclear Center – All-Russian Research Institute of Experimental Physics", 37 Mira Ave., Nizhny Novgorod region, Sarov 607188, Russia

Abstract: The influence of friction forces on the dynamic deformation of elastoviscoplastic tablet specimens was numerically and experimentally investigated. The main dependencies of their shape changing for metals and alloys have been established. A criterion of the shape changing of tablet specimens is proposed. A new method for identifying of the coefficients of dry friction at contact surfaces, depending on shape changing of the tablet specimens, based on numerical modeling of an axisymmetric dynamic problem and a rapidly convergent method of successive approximations was developed. The division of the two-parameter identification problem into two problems of one-parameter parameterization is theoretically justified with a high degree of reliability: the problem of determining of the friction coefficient and the problem of construction of the true diagram of dynamic deformation in this experiment with the friction coefficient found earlier. As a result, the dynamic deformation diagrams with frictional forces and radial inertia consideration are constructed using the iterative method. In known approximation methods of construction of the deformation diagrams with frictional forces and radial inertia consideration, friction coefficients are assumed to be known, whereas methods for their determination in experiments with impact compression are practically unavailable.

Key words: true deformation diagram, friction coefficient, friction force, edge effect, impact compression of tablet specimens, shape changing of tablet specimens, numerical simulation.

UDC: 539.3

DOI: 10.18500/1816-9791-2018-18-4-381-389



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