International audienceA finite‐element model for calculating the die temperature profile for a hot‐forging operation is presented. The workpiece is modelled as a thermo‐viscoplastic material, while the dies are considered undeformable. Heat transfer between the dies and the workpiece is modelled using an iteratively coupled, fixed‐point calculation of the temperature in each domain. Transfer of temperature boundary conditions across contact interfaces is performed for non‐coincident meshes, using a boundary integration point contact analysis. Two industrial‐type examples are presented. In the first example, the effectiveness of the transfer of the temperature boundary conditions for a non steady‐state forging process is evaluated and determ...
A numerical simulation technique has been employed to study the thermal behavior of hot-forging type...
The paper presents some recent applications at the DIMEG lab of physical simulation techniques aimed...
A number of tests were conducted to measure the heat transfer coefficient between billet and tool in...
International audienceA finite‐element model for calculating the die temperature profile for a hot‐f...
Abstract: This paper describes an investigation of the determination of the heat transfer coecient a...
International audienceThis paper describes a finite element method for the calculation of the forgin...
This work presents some progress in a research project aimed at assessing the thermal field inside a...
Previous analyses of material flow and temperature history during cold forging mostly referred to a ...
In hot and warm forging operations, surface layers of tools at the tool-workpiece interface are not ...
In technological process of steel industry heat transfer is a very important factor. Heat transfer p...
Knowing the temperature effect on machine construction is the first step at material selection and p...
The paper describes the experimental and numerical investigation aimed at estimating the temperature...
Determining the boundary conditions of heat transfer in steel manufacturing is a very important issu...
In hot stamping, the determination of the thermal contact conductance values between the blank and t...
In the field of Hot Closed die forging by thermomechanical treatment of high sensibility métallurgic...
A numerical simulation technique has been employed to study the thermal behavior of hot-forging type...
The paper presents some recent applications at the DIMEG lab of physical simulation techniques aimed...
A number of tests were conducted to measure the heat transfer coefficient between billet and tool in...
International audienceA finite‐element model for calculating the die temperature profile for a hot‐f...
Abstract: This paper describes an investigation of the determination of the heat transfer coecient a...
International audienceThis paper describes a finite element method for the calculation of the forgin...
This work presents some progress in a research project aimed at assessing the thermal field inside a...
Previous analyses of material flow and temperature history during cold forging mostly referred to a ...
In hot and warm forging operations, surface layers of tools at the tool-workpiece interface are not ...
In technological process of steel industry heat transfer is a very important factor. Heat transfer p...
Knowing the temperature effect on machine construction is the first step at material selection and p...
The paper describes the experimental and numerical investigation aimed at estimating the temperature...
Determining the boundary conditions of heat transfer in steel manufacturing is a very important issu...
In hot stamping, the determination of the thermal contact conductance values between the blank and t...
In the field of Hot Closed die forging by thermomechanical treatment of high sensibility métallurgic...
A numerical simulation technique has been employed to study the thermal behavior of hot-forging type...
The paper presents some recent applications at the DIMEG lab of physical simulation techniques aimed...
A number of tests were conducted to measure the heat transfer coefficient between billet and tool in...