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Sebastian Felder
Sebastian Felder
Dr.-Ing.
在 rwth-aachen.de 的电子邮件经过验证
标题
引用次数
引用次数
年份
Incorporating crystallinity distributions into a thermo-mechanically coupled constitutive model for semi-crystalline polymers
S Felder, H Holthusen, S Hesseler, F Pohlkemper, T Gries, JW Simon, ...
International Journal of Plasticity 135, 102751, 2020
502020
Thermo-mechanically coupled gradient-extended damage-plasticity modeling of metallic materials at finite strains
S Felder, N Kopic-Osmanovic, H Holthusen, T Brepols, S Reese
International Journal of Plasticity 148, 103142, 2022
382022
Modeling the effect of temperature and degree of crystallinity on the mechanical response of Polyamide 6
S Felder, NA Vu, S Reese, JW Simon
Mechanics of materials 148, 103476, 2020
282020
A coupled thermo-chemo-mechanical reduced-order multiscale model for predicting residual stresses in fibre reinforced semi-crystalline polymer composites
Z Yuan, S Felder, S Reese, JW Simon, J Fish
International Journal for Multiscale Computational Engineering 18 (5), 2020
82020
A gradient-extended thermomechanical model for rate-dependent damage and failure within rubberlike polymeric materials at finite strains
L Lamm, A Awad, JM Pfeifer, H Holthusen, S Felder, S Reese, T Brepols
International Journal of Plasticity 173, 103883, 2024
52024
A thermo-mechanically coupled constitutive model for semi-crystalline polymers at finite strains: Mechanical and thermal characterization of polyamide 6 blends
MC Reuvers, S Kulkarni, B Boes, S Felder, A Wutzler, M Johlitz, A Lion, ...
Continuum Mechanics and Thermodynamics 36 (3), 657-698, 2024
42024
Experimental and Numerical Investigation of the Material Behavior of semi-crystalline Polyamide 6
S Felder, AN Vu, S Reese, JW Simon
Technische Mechanik 40 (1), 22-30, 2020
42020
A finite strain thermo-mechanically coupled material model for semi-crystalline polymers
S Felder, H Holthusen, S Hesseler, F Pohlkemper, JW Simon, T Gries, ...
COMPLAS XV: proceedings of the XV International Conference on Computational …, 2019
42019
Mode I and II delamination modelling and comparison to experiments
D Höwer, B Stier, S Felder, JW Simon, S Reese
3rd ECCOMAS Young Investigators Conference July, 20-23, 2015
32015
A thermo-coupled constitutive model for semi-crystalline polymers at finite strains: application to varying degrees of crystallinity and temperatures
MC Reuvers, B Boes, S Felder, T Brepols, S Reese
Universitätsbibliothek der RWTH Aachen, 2022
22022
A novel thermo‐mechanically coupled material model for glass above the glass transition temperature
S Bögershausen, H Holthusen, S Felder, T Brepols, AT Vu, T Grunwald, ...
PAMM 23 (4), e202300150, 2023
12023
Modelling of damage and failure within polymeric adhesives
L Lamm, J Sistig, JM Pfeifer, H Holthusen, S Felder, T Brepols, S Reese
PAMM 23 (4), e202300010, 2023
2023
Semi‐crystalline polymers at finite strains: A thermo‐coupled constitutive model for varying degrees of crystallinity and temperatures
MC Reuvers, B Boes, S Felder, T Brepols, S Kulkarni, K Loos, M Johlitz, ...
PAMM 23 (1), e202200162, 2023
2023
Modeling the anisotropic elasto‐plastic material behavior of paper and paperboard at finite deformations
N Kopic-Osmanovic, E Prume, S Felder, G Kloppenburg, JW Simon
PAMM 22 (1), e202200293, 2023
2023
Multiphysics modeling of polymers and metals: experimental and numerical investigations
S Felder
Dissertation, Rheinisch-Westfälische Technische Hochschule Aachen, 2022, 2022
2022
A finite strain elasto‐plastic material model incorporating kinematic and isotropic hardening for thermoplastic polymers
S Felder, JW Simon, S Reese
PAMM 18 (1), e201800233, 2018
2018
Multiscale FE-FFT-based thermo-mechanically coupled modeling of viscoplastic polycrystalline materials
S Felder, J Kochmann, S Wulfinghoff, S Reese
A finite strain, thermo-mechanically coupled material model for semi-crystalline polymers, incorporating crystallisation kinetics
S Felder, H Holthusen, S Hesseler, F Pohlkemper, JW Simon, T Gries, ...
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