The chapter deals with studying control parameters, finite elementFinite element simulation, and experimental research of the tribomechanical system of steel surface nanostructuring burnishing by a sliding spherical indenter. It presents an electrothermal method for calculating the internal liquid heat removal system of the burnishing tool, which provides an increase in sliding velocity of indenters made of natural (ND) and synthetic diamond (PCD), dense boron nitride (DBN), hard alloy (WC) and cubic boron nitride (CBN) during surface nanocrystallization. It describes mechanical, structural, and tribological properties of the surfaces of X20Cr, X20Cr13, and AISI 304 steels after nanostructuring burnishing.

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Nanostructuring Burnishing: Tribomechanics, Modelling, Tool, Surface

  • Viktor P. Kuznetsov

摘要

The chapter deals with studying control parameters, finite elementFinite element simulation, and experimental research of the tribomechanical system of steel surface nanostructuring burnishing by a sliding spherical indenter. It presents an electrothermal method for calculating the internal liquid heat removal system of the burnishing tool, which provides an increase in sliding velocity of indenters made of natural (ND) and synthetic diamond (PCD), dense boron nitride (DBN), hard alloy (WC) and cubic boron nitride (CBN) during surface nanocrystallization. It describes mechanical, structural, and tribological properties of the surfaces of X20Cr, X20Cr13, and AISI 304 steels after nanostructuring burnishing.