The Latest Theory of Body Collisions in Rolling and the Dynamics of Vibro-Impact Systems Through Scientific Projects Over Three Decades
Zbornik radova, Tome 19 (2022) no. 27, p. 75
Voir la notice de l'article provenant de la source eLibrary of Mathematical Institute of the Serbian Academy of Sciences and Arts
The paper presents the basic elements and results of the
latest theory of collision between bodies in rolling. The theory is based
on the newly introduced hypothesis of conservation of the sum of the
angular momentum of the motions (the sum of kinetic moments) of
the bodies in rolling after the collision in relation to the collision and
it defines the collision coefficient using the angular rolling velocities
immediately after and immediately before the collision. Analytical
expressions are derived for the outgoing angular velocities of each body
immediately after the collision as a function of the axial moments of
inertia of the mass of each body for corresponding instantaneous axis of
rolling, the collision coefficient and the angular velocities of each body
immediately before the collision. It is shown how the rolling directions
of the body are determined immediately after the collision for different
types of collisions. It is shown that the basis of research on projects in
basic sciences, led by the author of this paper, obtained a large number
of scientific results that were published in journals, one master’s thesis
(2010), two doctoral dissertations (1996 and 2011), two monographs,
one preprint, while one monograph is in preparation for printing. Each
of these titles contains the keyword “vibro-impact system”. The paper
provides an overview of individual works. The Master of Science thesis
and both doctorates are based on the classical theory of bodies colliding
in translational motion, rectilinear and curvilinear, smooth or rough,
while the latest results relate to the dynamics of vibro-impact body
systems in rolling along curvilinear paths in a stationary or rotating
vertical plane around a vertical axis at a constant angular velocity. A new
methodology for investigating the dynamics of vibro-impact systems
with successive collisions between bodies in rolling using the method
of phase trajectory portraits in the phase plane has been defined. The
list of literature provides the most significant works of the author of this
paper who is also a supervisor and a research mentor of undergraduates
and doctoral students.
Classification :
70-99, 74-99, 70F35, 92C10, 74L10, 70Exx, 70KXX, 74M05, 37H20, 34D20
Keywords: angular rolling velocity, latest new theory of body collision in rolling, hypothesis on conservation of sum of angular momentum of body, analytical expressions for outgoing angular rolling velocities, methodology for research of vibro-impact dynamics of systems with bodies in rolling, phase portrait method
Keywords: angular rolling velocity, latest new theory of body collision in rolling, hypothesis on conservation of sum of angular momentum of body, analytical expressions for outgoing angular rolling velocities, methodology for research of vibro-impact dynamics of systems with bodies in rolling, phase portrait method
@article{ZR_2022_19_27_a3,
author = {Katica R. and Stevanovi\'c and Hedrih},
title = {The {Latest} {Theory} of {Body} {Collisions} in {Rolling} and the {Dynamics} of {Vibro-Impact} {Systems} {Through} {Scientific} {Projects} {Over} {Three} {Decades}},
journal = {Zbornik radova},
pages = {75 },
publisher = {mathdoc},
volume = {19},
number = {27},
year = {2022},
language = {en},
url = {http://geodesic.mathdoc.fr/item/ZR_2022_19_27_a3/}
}
TY - JOUR AU - Katica R. AU - Stevanović AU - Hedrih TI - The Latest Theory of Body Collisions in Rolling and the Dynamics of Vibro-Impact Systems Through Scientific Projects Over Three Decades JO - Zbornik radova PY - 2022 SP - 75 VL - 19 IS - 27 PB - mathdoc UR - http://geodesic.mathdoc.fr/item/ZR_2022_19_27_a3/ LA - en ID - ZR_2022_19_27_a3 ER -
%0 Journal Article %A Katica R. %A Stevanović %A Hedrih %T The Latest Theory of Body Collisions in Rolling and the Dynamics of Vibro-Impact Systems Through Scientific Projects Over Three Decades %J Zbornik radova %D 2022 %P 75 %V 19 %N 27 %I mathdoc %U http://geodesic.mathdoc.fr/item/ZR_2022_19_27_a3/ %G en %F ZR_2022_19_27_a3
Katica R. ; Stevanović; Hedrih. The Latest Theory of Body Collisions in Rolling and the Dynamics of Vibro-Impact Systems Through Scientific Projects Over Three Decades. Zbornik radova, Tome 19 (2022) no. 27, p. 75 . http://geodesic.mathdoc.fr/item/ZR_2022_19_27_a3/