Abstract <p>Based on the solution to the partial differential equation of thermal conductivity by the Laplace transformation, an analytical model for calculating temperature under conditions of velocity and shear oscillations under dry sliding friction was obtained. In the form of graphs, the calculated dependences of temperature on the amplitude of oscillations, time, and depth for 12Kh18N10T steel are given.</p>

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Simulation of Frictional Temperature under Shear and Velocity Fluctuations

  • A. Yu. Albagachiev,
  • V. A. Goloveshkin,
  • A. V. Nekrashevich

摘要

Abstract

Based on the solution to the partial differential equation of thermal conductivity by the Laplace transformation, an analytical model for calculating temperature under conditions of velocity and shear oscillations under dry sliding friction was obtained. In the form of graphs, the calculated dependences of temperature on the amplitude of oscillations, time, and depth for 12Kh18N10T steel are given.