Javascript must be enabled to continue!
Modeling Recrystallization for 3D Multi-Pass Forming Processes
View through CrossRef
The present work concerns the simulation of metallurgical evolutions in 3D multi-pass
forming processes. In this context, the analyzed problem is twofold. One point refers to the
management of the microstructure evolution during each pass or each inter-pass period and the
other point concerns the management of the multi-pass aspects (different grain categories, data
structure). In this framework, a model is developed and deals with both aspects. The model
considers the microstructure as a composite made of a given (discretized) number of phases which
have their own specific properties. The grain size distribution and the recrystallized volume fraction
distribution of the different phases evolve continuously during a pass or inter-pass period. With this
approach it is possible to deal with the heterogeneity of the microstructure and its evolution in
multi-pass conditions. Both dynamic and static recrystallization phenomena are taken into account,
with typical Avrami-type equations. The present model is implemented in the Finite Element code
FORGE2005®. 3D numerical simulation results for a multi-pass process are presented.
Trans Tech Publications, Ltd.
Title: Modeling Recrystallization for 3D Multi-Pass Forming Processes
Description:
The present work concerns the simulation of metallurgical evolutions in 3D multi-pass
forming processes.
In this context, the analyzed problem is twofold.
One point refers to the
management of the microstructure evolution during each pass or each inter-pass period and the
other point concerns the management of the multi-pass aspects (different grain categories, data
structure).
In this framework, a model is developed and deals with both aspects.
The model
considers the microstructure as a composite made of a given (discretized) number of phases which
have their own specific properties.
The grain size distribution and the recrystallized volume fraction
distribution of the different phases evolve continuously during a pass or inter-pass period.
With this
approach it is possible to deal with the heterogeneity of the microstructure and its evolution in
multi-pass conditions.
Both dynamic and static recrystallization phenomena are taken into account,
with typical Avrami-type equations.
The present model is implemented in the Finite Element code
FORGE2005®.
3D numerical simulation results for a multi-pass process are presented.
Related Results
Study of Si–Ge Interdiffusion in Laser Recrystallization of Ge Epitaxial Film on Si Substrate
Study of Si–Ge Interdiffusion in Laser Recrystallization of Ge Epitaxial Film on Si Substrate
Direct epitaxial growth of germanium (Ge) film on silicon (Si) substrate (GOSS) holds great potential in micro-electronics and optoelectronics. However, due to the 4.2% lattice mis...
Micro-mechanism of static softening of high nitrogen austenitic stainless steel
Micro-mechanism of static softening of high nitrogen austenitic stainless steel
The stress softening behavior and microstructure evolution of Mn18Cr18N steel remelted by electroslag remelting during the holding process were studied through two-pass hot compres...
Texture evolution of tungsten materials during recrystallization
Texture evolution of tungsten materials during recrystallization
Abstract
Some functional and structural performance of tungsten (W) are related to its texture characteristics. Usually, W serves in high temperature and may undergo...
Effects of multi-pass turning on surface properties of AISI 52100 bearing steel
Effects of multi-pass turning on surface properties of AISI 52100 bearing steel
Abstract
Hard turning is extensively used in the machining of bearings. The turning process has a significant influence on the properties of machined surface. In this paper...
Mobile application for gate pass management system enhancement
Mobile application for gate pass management system enhancement
Gate pass management is an essential measure to keep records of people's entrance and exit of company premises. Technological improvement steered gate pass management from paper-ba...
Static Recrystallization Modeling With a Cellular Automata Algorithm
Static Recrystallization Modeling With a Cellular Automata Algorithm
This paper reports on one part of a research project supported by NSF, which aims at developing a multi-scale methodology for systematic microstructure prediction in thermo-mechani...
Pengaruh Jenis Forming Terhadap Struktur Kristal dan Struktur Mikro pada Baja Karbon Rendah Tipe MR
Pengaruh Jenis Forming Terhadap Struktur Kristal dan Struktur Mikro pada Baja Karbon Rendah Tipe MR
ABSTRAK Penelitian ini menjelaskan tentang pengaruh dari jenis forming material baja karbon rendah tipe MR terhadap kekerasan, kekuatan tarik, dan struktur kristal dari material te...
Dynamic Recrystallization and Microstructural Evolution During Hot Deformation of Al-Cu-Mg Alloy
Dynamic Recrystallization and Microstructural Evolution During Hot Deformation of Al-Cu-Mg Alloy
Isothermal hot compression tests were performed on an Al-4.8Cu-0.25Mg-0.32Mn-0.17Si alloy using a Gleeble-3500 thermomechanical simulator within the temperature range of 350–510 °C...

