We study a model for induction hardening of steel. The related differential system consists of a time domain vector potential formulation of the Maxwell's equations coupled with an internal energy balance and an ODE for the volume fraction of austenite, the high temperature phase in steel. We first solve the initial boundary value problem associated by means of a Schauder fixed point argument coupled with suitable a-priori estimates and regularity results. Moreover, we prove a stability estimate entailing, in particular, uniqueness of solutions for our Cauchy problem. We conclude with some finite element simulations for the coupled system
In most structural components in mechanical engineering, there are surface parts, which are particul...
A multi-scale multiphysical finite element (FE) analysis is presented in this paper to predict the m...
A modeling system for analyzing the integrated induction hardening processes was developed based on ...
We study a model for induction hardening of steel. The related differential system consists of a tim...
We study a model for induction hardening of steel. The related differential system consists of a tim...
We study a model for induction hardening of steel. The related differential system consists of a tim...
Induction hardening is a well known method for the heat treatment of steel components. With the conc...
Since many years, induction hardening has been successfully applied for the heat treatment of compon...
International audienceSince many years, induction hardening has been successfully applied for the he...
International audienceSince many years, induction hardening has been successfully applied for the he...
Heat treatments are widely used in industry to improve the surface behavior of components exposed to...
Heat treatments are widely used in industry to improve the surface behavior of components exposed to...
Heat treatments are widely used in industry to improve the surface behavior of components exposed to...
Heat treatments are widely used in industry to improve the surface behavior of components exposed to...
Heat treatments are widely used in industry to improve the surface behavior of components exposed to...
In most structural components in mechanical engineering, there are surface parts, which are particul...
A multi-scale multiphysical finite element (FE) analysis is presented in this paper to predict the m...
A modeling system for analyzing the integrated induction hardening processes was developed based on ...
We study a model for induction hardening of steel. The related differential system consists of a tim...
We study a model for induction hardening of steel. The related differential system consists of a tim...
We study a model for induction hardening of steel. The related differential system consists of a tim...
Induction hardening is a well known method for the heat treatment of steel components. With the conc...
Since many years, induction hardening has been successfully applied for the heat treatment of compon...
International audienceSince many years, induction hardening has been successfully applied for the he...
International audienceSince many years, induction hardening has been successfully applied for the he...
Heat treatments are widely used in industry to improve the surface behavior of components exposed to...
Heat treatments are widely used in industry to improve the surface behavior of components exposed to...
Heat treatments are widely used in industry to improve the surface behavior of components exposed to...
Heat treatments are widely used in industry to improve the surface behavior of components exposed to...
Heat treatments are widely used in industry to improve the surface behavior of components exposed to...
In most structural components in mechanical engineering, there are surface parts, which are particul...
A multi-scale multiphysical finite element (FE) analysis is presented in this paper to predict the m...
A modeling system for analyzing the integrated induction hardening processes was developed based on ...