Lara, Jose, M.Sc.
Jose Lara, M. Sc.
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Investigation of residual stress-related elementary processes for forged components in the manufacturing and operating phase
(Third Party Funds Group – Sub project)
Overall project: The utilization of residual stresses induced by metal forming
Project leader:
Term: 1. January 2021 - 31. December 2022
Funding source: DFG-Einzelförderung / Sachbeihilfe (EIN-SBH) -
Schädigungsmodellierung für die Simulation mechanischer Fügeprozesse (A05)
(Third Party Funds Group – Sub project)
Overall project: TRR 285: Methodenentwicklung zur mechanischen Fügbarkeit in wandlungsfähigen Prozessketten
Project leader: ,
Term: since 1. January 2019
Acronym: SFB/TRR 285 A05
Funding source: DFG / Sonderforschungsbereich / Transregio (SFB / TRR)
URL: https://trr285.uni-paderborn.de/teilprojekte-1/a05The aim of the subproject is to model the material behaviour during mechanical joining processes as accurately as possible. Challenges arise in the simulation of the strain rate and temperature dependency of the materials as well as in the coupling of plasticity, ductile damage, and temperature. Moreover, novel numerical approaches are investigated for joining process simulations and combined with the developed material models. Both will be implemented accurately and efficiently, and experimentally validated.
2023
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A numerical study on the visco-plastic regularization of a rate-independent strain gradient crystal plasticity formulation
In: Computational Mechanics (2023)
ISSN: 0178-7675
DOI: 10.1007/s00466-023-02420-w