A unified model for isothermal and non-isothermal phase transformation in hot stamping of 22MnB5 steel
Author:
Publisher
Elsevier BV
Subject
Industrial and Manufacturing Engineering,Metals and Alloys,Computer Science Applications,Modeling and Simulation,Ceramics and Composites
Reference46 articles.
1. Austenite decomposition during press hardening of a boron steel—computer simulation and test;Åkerström;J. Mater. Process. Technol.,2006
2. Numerical implementation of a constitutive model for simulation of hot stamping;Åkerström;Model. Simul. Mater. Sci. Eng.,2007
3. Arthur B Shapiro, 2009. Using LS-Dyna for Hot Stamping. European LS-DYNA Conference.
4. Towards virtual deformation dilatometry for the design of hot stamping process;Bambach;Procedia Eng.,2017
5. Effect of plastic hot deformation on the hardness and continuous cooling transformations of 22MnB5 microalloyed boron steel;Barcellona;Met. Mat. Trans. A,2009
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1. Short-wave infrared heating of 22MnB5 steel with adjusted surface emissivity for press hardening of tailored-strength components;Journal of Manufacturing Processes;2024-06
2. Investigation into the Hot-Forming Limit for 22MnB5 Hot-Forming Steel under a Stamping Process;Metals;2024-05-10
3. Research on dynamic deformation behavior and constitutive relationship of hot forming high strength steel;Journal of Materials Research and Technology;2024-01
4. Examining the Impact of Intermediate Cooling on Mechanical Properties of 22MnB5 in a Tailored Tempering Process;Journal of Manufacturing and Materials Processing;2023-12-26
5. The Study of Hardness Evolution during the Tempering Process of 38MnB5Nb Ultra-High-Strength Hot Stamping Steel: Experimental Analysis and Constitutive Models;Metals;2023-09-25
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