Abstract
The results of modeling for establishing the relationships between the mechanical properties of
blanks and the technological parameters of the continuous casting process are presented. The simulation
was carried out using the principle of least squares. It has been established that the most important effect
on the mechanical properties of blanks is due to the combination of the frequency of movement of
workpieces with the reversible movement of the workpiece during the overcoming of the friction force
of rest. This makes it possible to select the technological parameters of the continuous casting process
for rationally increasing the mechanical properties of blanks from copper alloys.