Prof. Henning Frank Henning

Prof. Dr.-Ing. Frank Henning

  • Professor für Leichtbautechnologie, Mitglied des Direktoriums Fahrzeugsystemtechnik
  • Sprechstunden: 

    freitags, nach Vereinbarung

  • Raum: Rintheimer Querallee 2, Geb. 70.04 Raum 119
  • Tel.: +49 721 608-41877
  • Fax: +49 721 608 44146
  • Fraunhofer Institut Chemische Technologie ICT
    Joseph-von-Fraunhofer-Straße 7
    76327 Pfinztal
    Tel.: +49 721 4640 420

Biographie / Curriculum Vitae

Berufliche Entwicklung

 

heute

Institutsleiter Fraunhofer Institut für Chemische
Technologie (ICT), Pfinztal

und

Stv. Leiter des Institutsteil Leichtbau am Institut für
Fahrzeugsystemtechnik (FAST) am Karlsruher Institut für Technologie (KIT)

Seit 2010

Berufung als außerordentlicher Professor für Forschung in die Fakultät für Maschinenbau und Werkstoffkunde an der Universität Western Ontario,
Kanada

2008 - 2021 Leiter des Lehrstuhls für Leichtbautechnologie am Institut für
Fahrzeugsystemtechnik (FAST) am Karlsruher Institut für Technologie (KIT)
Seit 2008 Geschäftsführer des „Karlsruher Innovationsclusters Technologien für den
hybriden Leichtbau“
2005 - 2012 Leiter des Kompetenzzentrums Fahrzeugleichtbau
Seit 2002 Leiter Polymer Engineering am Fraunhofer Institut für Chemische Technologie (ICT)
1997 - 2008 Dozent an der Berufsakademie Mannheim

1997 - 2001

Teamleiter Faserverbundwerkstoffe am Fraunhofer Institut für Chemische Technologie (ICT)

 

 Ausbildung

 

2001 Dissertation im Bereich der Faserverbundtechnologien an der Universität Stuttgart
1996          

Diplom Allgemeines Maschinenwesen an der Universität Stuttgart

 

 

 

Publikationen


Zeitschriftenaufsätze
Rheological characterization and macroscopic modeling and simulation of the molding process of a PA6 Glass Mat Thermoplastic (GMT)
Dörr, D.; Singh-Heer, N.; Gergely, R. C. R.; Schreyer, L.; Henning, F.; Straatman, A. G.; Hrymak, A.
2024. Composites Part A: Applied Science and Manufacturing, 176, Art.-Nr. 107780. doi:10.1016/j.compositesa.2023.107780
A model for permeability in fibre-reinforced plastics
Sherratt, A.; Ghazimoradi, M.; Montesano, J.; Straatman, A. G.; DeGroot, C. T.; Henning, F.
2023. Transactions of the Canadian Society for Mechanical Engineering, 47 (4), 521 – 531. doi:10.1139/tcsme-2022-0084
Experimental and predictive analysis of the molding behavior of a PA6 glass mat thermoplastic (GMT)
Dörr, D.; Singh-Heer, N.; Xu, C.; Chang, T.; Clement-Thorne, B.; Gergely, R. C. R.; Okonski, D.; Henning, F.; Straatman, A. G.; Hrymak, A.
2023. The International Journal of Advanced Manufacturing Technology, 129 (3-4), 1159–1173. doi:10.1007/s00170-023-12017-5
A hyperelastic material model considering biaxial coupling of tension–compression and shear for the forming simulation of woven fabrics
Schäfer, F.; Werner, H. O.; Henning, F.; Kärger, L.
2023. Composites Part A: Applied Science and Manufacturing, 165, Art.-Nr.: 107323. doi:10.1016/j.compositesa.2022.107323
A probabilistic virtual process chain to quantify process-induced uncertainties in Sheet Molding Compounds
Meyer, N.; Gajek, S.; Görthofer, J.; Hrymak, A.; Kärger, L.; Henning, F.; Schneider, M.; Böhlke, T.
2023. Composites Part B: Engineering, 249, Art.-Nr.: 110380. doi:10.1016/j.compositesb.2022.110380
Approaching Polycarbonate as an LFT-D Material: Processing and Mechanical Properties
Schelleis, C.; Scheuring, B. M.; Liebig, W. V.; Hrymak, A. N.; Henning, F.
2023. Polymers, 15 (9), 2041. doi:10.3390/polym15092041
Permeability and fabric compaction in forming of fiber metal laminates
Kruse, M.; Poppe, C. T.; Henning, F.; Ben Khalifa, N.
2023. Journal of Composite Materials, 002199832311757. doi:10.1177/00219983231175725
Influence of fiber breakage on flow behavior in fiber length- and orientation-dependent injection molding simulations
Wittemann, F.; Kärger, L.; Henning, F.
2022. Journal of Non-Newtonian Fluid Mechanics, 310, 104950. doi:10.1016/j.jnnfm.2022.104950
Flow-induced fiber displacement in non-bindered UD-NCF during Wet Compression Molding – Analysis and implications for process control
Albrecht, F.; Poppe, C.; Tiemann, T.; Sauerwein, V.; Rosenberg, P.; Henning, F.
2022. Composites Science and Technology, 228, Art.-Nr.: 109574. doi:10.1016/j.compscitech.2022.109574
Experimental and Numerical Analysis of SMC Compression Molding in Confined Regions : A Comparison of Simulation Approaches
Rothenhäusler, F.; Meyer, N.; Wehler, S.; Hohberg, M.; Gude, M.; Henning, F.; Kärger, L.
2022. Journal of composites science, 6 (3), Art.-Nr.: 68. doi:10.3390/jcs6030068
Towards 3D Process Simulation for In-Situ Hybridization of Fiber-Metal-Laminates (FML)
Poppe, C. T.; Werner, H. O.; Kruse, M.; Chen, H.; Ben Khalifa, N.; Henning, F.; Kärger, L.
2022. Key Engineering Materials, 926, 1399–1412. doi:10.4028/p-cr2tco
Prediction of Gaps in Automated Tape Laying and Their Influence on Porosity in Consolidated Laminates
Link, T.; Rosenberg, P.; Henning, F.
2022. Journal of Composites Science, 6 (7), Art.Nr. 207. doi:10.3390/jcs6070207
Systematic Approach for Finite Element Analysis of Thermoplastic Impregnated 3D Filament Winding Structures—Advancements and Validation
Haas, J.; Aberle, D.; Krüger, A.; Beck, B.; Eyerer, P.; Kärger, L.; Henning, F.
2022. Journal of Composites Science, 6 (3), Art.-Nr.: 98. doi:10.3390/jcs6030098
The Direct Sandwich Composite Molding (D-SCM) Process: Sandwich Manufacturing and Characterization
Behnisch, F.; Brütsch, J.; Werner, H. O.; Henning, F.
2022. Journal of Composites Science, 6 (3), Art.-Nr.: 81. doi:10.3390/jcs6030081
Simplified modeling of electromagnets for dynamic simulation of transient effects for a synchronous electric motor
Bechler, F.; Kesten, J.; Wittemann, F.; Henning, F.; Doppelbauer, M.; Eberhard, P.
2021. International Journal of Mechanical System Dynamics, 1 (1), 89–95. doi:10.1002/msd2.12005
Experimental and numerical analysis of mold filling in rotational molding
Nieschlag, J.; Seuffert, J.; Strack, D.; Friedmann, M.; Kärger, L.; Henning, F.; Fleischer, J.
2021. Journal of Composites Science, 5 (11), 289. doi:10.3390/jcs5110289
Development of a reactive polyurethane foam system for the direct sandwich composite molding (D-SCM) process
Behnisch, F.; Lichtner, V.; Henning, F.; Rosenberg, P.
2021. Journal of Composites Science, 5 (4), 104. doi:10.3390/jcs5040104
Experimental and numerical investigations of pressure-controlled resin transfer molding (PC-RTM)
Seuffert, J.; Rosenberg, P.; Kärger, L.; Henning, F.; Kothmann, M. H.; Deinzer, G.
2020. Advanced manufacturing: polymer & composites science, 6 (3), 154–163. doi:10.1080/20550340.2020.1805689
On the applicability of thermoforming characterization and simulation approaches to glass mat thermoplastic composites
Dörr, D.; Gergely, R.; Ivanov, S.; Kärger, L.; Henning, F.; Hrymak, A.
2020. Procedia manufacturing, 47, 118–125. doi:10.1016/j.promfg.2020.04.148
Material modeling in forming simulation of three-dimensional fiber-metal-laminates - A parametric study
Werner, H. O.; Poppe, C.; Henning, F.; Kärger, L.
2020. Procedia manufacturing, 47, 154–161. doi:10.1016/j.promfg.2020.04.160
Parameter Identification of Fiber Orientation Models Based on Direct Fiber Simulation with Smoothed Particle Hydrodynamics
Meyer, N.; Saburow, O.; Hohberg, M.; Hrymak, A. N.; Henning, F.; Kärger, L.
2020. Journal of composites science, 4 (2), 77. doi:10.3390/jcs4020077
Motivating the development of a virtual process chain for sheet molding compound composites
Görthofer, J.; Meyer, N.; Pallicity, T. D.; Schöttl, L.; Trauth, A.; Schemmann, M.; Hohberg, M.; Pinter, P.; Elsner, P.; Henning, F.; Hrymak, A.; Seelig, T.; Weidenmann, K.; Kärger, L.; Böhlke, T.
2019. Proceedings in applied mathematics and mechanics, 19 (1), Art. Nr.: e201900124. doi:10.1002/pamm.201900124
Development of a modular draping test bench for analysis of infiltrated woven fabrics in wet compression molding
Albrecht, F.; Zimmerling, C.; Poppe, C.; Kärger, L.; Henning, F.
2019. Key engineering materials, 809, 35–40. doi:10.4028/www.scientific.net/KEM.809.35
Experimental and numerical study of the spring-in of angled brackets manufactured using different resins and fiber textiles
Bernath, A.; Groh, F.; Exner, W.; Hühne, C.; Henning, F.
2019. Journal of composite materials, 53 (28-30), 4173–4188. doi:10.1177/0021998319855423
Virtual process chain of sheet molding compound: Development, validation and perspectives
Görthofer, J.; Meyer, N.; Pallicity, T. D.; Schöttl, L.; Trauth, A.; Schemmann, M.; Hohberg, M.; Pinter, P.; Elsner, P.; Henning, F.; Hrymak, A.; Seelig, T.; Weidenmann, K.; Kärger, L.; Böhlke, T.
2019. Composites / B, 169, 133–147. doi:10.1016/j.compositesb.2019.04.001
Fast processing and continuous simulation of automotive structural composite components
Henning, F.; Kärger, L.; Dörr, D.; Schirmaier, F. J.; Seuffert, J.; Bernath, A.
2019. Composites science and technology, 171, 261–279. doi:10.1016/j.compscitech.2018.12.007
Enhanced Transient Hot Bridge Method Using a Finite Element Analysis
Gaiser, J.; Stripf, M.; Henning, F.
2019. International journal of thermophysics, 40 (1), Art. Nr.: 12. doi:10.1007/s10765-018-2476-y
Comparison of filler-dependent mechanical properties of jute fiber reinforced sheet and bulk molding compound
Lautenschläger, M. I.; Mayer, L.; Gebauer, J.; Weidenmann, K. A.; Henning, F.; Elsner, P.
2018. Hospital physician, 203, 960–967. doi:10.1016/j.compstruct.2017.09.100
Nozzle clogging factors during fused filament fabrication of spherical particle filled polymers
Beran, T.; Mulholland, T.; Henning, F.; Rudolph, N.; Osswald, T. A.
2018. Additive manufacturing, 23, 206–214. doi:10.1016/j.addma.2018.08.009
Process comparison on the microstructure and mechanical properties of fiber-reinforced polyphenylene sulfide using MuCell technology
Lohr, C.; Beck, B.; Henning, F.; Weidenmann, K. A.; Elsner, P.
2018. Journal of reinforced plastics and composites, 37 (15), 1020–1034. doi:10.1177/0731684418777120
Numerical and experimental investigation of manufacturing and performance of metal inserts embedded in CFRP
Muth, M.; Schwennen, J.; Bernath, A.; Seuffert, J.; Weidenmann, K. A.; Fleischer, J.; Henning, F.
2018. Production engineering, 12 (2), 141–152. doi:10.1007/s11740-018-0829-9
Simulation of Reinforced Reactive Injection Molding with the Finite Volume Method
Wittemann, F.; Maertens, R.; Bernath, A.; Hohberg, M.; Kärger, L.; Henning, F.
2018. Journal of composites science, 2 (1), Aritcle no: 5. doi:10.3390/jcs2010005
Simulating Mold Filling in Compression Resin Transfer Molding (CRTM) Using a Three-Dimensional Finite-Volume Formulation
Seuffert, J.; Kärger, L.; Henning, F.
2018. Journal of composites science, 2 (2), Article: 23. doi:10.3390/jcs2020023
Experimental and numerical investigation of the shear behaviour of infiltrated woven fabrics
Poppe, C.; Dörr, D.; Henning, F.; Kärger, L.
2018. Composites / A, 114, 327–337. doi:10.1016/j.compositesa.2018.08.018
An Iterative Approach for the Determination of Tailored Blanks for Waste-Free Composite Forming by Means of FE Forming Simulation
Dörr, D.; Lipowsky, L.; Schirmaier, F. J.; Kärger, L.; Henning, F.
2017. International journal of automotive composites, 3 (2-4, SI), 323–338. doi:10.1504/IJAUTOC.2017.091427
A Direct Process to Reuse Dry Fiber Production Waste for Recycled Carbon Fiber Bulk Molding Compounds
Saburow, O.; Huether, J.; Maertens, R.; Trauth, A.; Kechaou, Y.; Henning, F.; Weidenmann, K. A.
2017. Procedia CIRP, 66, 265–270. doi:10.1016/j.procir.2017.03.280
Virtual characterization and macroscopic material modeling of a carbon fiber-reinforced PA6 UD composite
Rösner, A. M.; Kärger, L.; Henning, F.
2017. Journal of composite materials, 51 (21), 3075–3086. doi:10.1177/0021998316681186
A Benchmark Study of Finite Element Codes for Forming Simulation of Thermoplastic UD-Tapes
Dörr, D.; Brymerski, W.; Ropers, S.; Leutz, D.; Joppich, T.; Kärger, L.; Henning, F.
2017. Procedia CIRP, 66, 101–106. doi:10.1016/j.procir.2017.03.223
Evaluation of the physical mechanisms of adhesively bonded metal-based hybrid material systems under tensile loading
Hummelberger, D.; Kärger, L.; Weidenmann, K. A.; Staeves, J.; Henning, F.
2017. Materials and design, 132, 215–224. doi:10.1016/j.matdes.2017.07.001
Design concept of a lightweight electric motor casing with support from thermomechanical simulations
Müller, T.; Blazek, G.; Henning, F.
2016. International journal of automotive composites, 2 (2), 167–186. doi:10.1504/IJAUTOC.2016.082047
Hexaphenoxycyclotriphosphazene as FR for CFR anionic PA6 via T-RTM : A study of mechanical and thermal properties
Höhne, C.-C.; Wendel, R.; Käbisch, B.; Anders, T.; Henning, F.; Kroke, E.
2016. Fire and materials, 41 (4), 291–306. doi:10.1002/fam.2375
Accurate Cure Modeling for Isothermal Processing of Fast Curing Epoxy Resins
Bernath, A.; Kärger, L.; Henning, F.
2016. Polymers, 8 (11), 390. doi:10.3390/polym8110390
Characterisation of the draping behaviour of unidirectional non-crimp fabrics (UD-NCF)
Schirmaier, F. J.; Weidenmann, K. A.; Kärger, L.; Henning, F.
2016. Composites Part A: Applied Science and Manufacturing, 80, 28–38. doi:10.1016/j.compositesa.2015.10.004
Coupling of Mold Flow Simulations with Two-Scale Structural Mechanical Simulations for Long Fiber Reinforced Thermoplastics
Buck, F.; Brylka, B.; Müller, V.; Müller, T.; Hrymak, A. N.; Henning, F.; Böhlke, T.
2015. Materials science forum, 825-826, 655–662. doi:10.4028/www.scientific.net/MSF.825-826.655
Development and validation of a CAE chain for unidirectional fibre reinforced composite components
Kärger, L.; Bernath, A.; Fritz, F.; Galkin, S.; Magagnato, D.; Oeckerath, A.; Schön, A.; Henning, F.
2015. Composite structures, 132, 350–358. doi:10.1016/j.compstruct.2015.05.047
Experimental characterization to determine the influence of different binder systems to the preform permeability during RTM manufacturing
Magagnato, D.; Thoma, B.; Henning, F.
2015. Zeitschrift Kunststofftechnik / Journal of Plastics Technology, 11 (4), 256–270. doi:10.3139/O999.03042015
Two-scale structural mechanical modeling of long fiber reinforced thermoplastics
Buck, F.; Brylka, B.; Müller, V.; Müller, T.; Weidenmann, K. A.; Hrymak, A. N.; Henning, F.; Böhlke, T.
2015. Composites science and technology, 117, 159–167. doi:10.1016/j.compscitech.2015.05.020
Chemical-Stitching as a promising approach for automated preforming of textiles
Thoma, B.; Weidenmann, K. A.; Henning, F.
2012. Kunststofftechnik, 2012 (5), 491–514
Untersuchung des Einflusses verschiedener Prozessbedingungen, Fasergewichtsanteile und Faserlängen auf die Faserorientierung im Polyurethan Fasersprühprozess
Kuppinger, J.; Wafzig, F.; Henning, F.; Weidenmann, K. A.; Haspel, B.; Elsner, P.
2011. Zeitschrift Kunststofftechnik / Journal of Plastics Technology, 7 (2), 45–65
Einfluss von Glasfaserlänge und Glasfasergehalt auf die mechanischen Eigenschaften von langglasfaserverstärktem Polyurethan
Kuppinger, J.; Weidenmann, K.; Kordick, M.; Wafzig, F.; Henning, F.; Elsner, P.
2010. Zeitschrift Kunststofftechnik / Journal of Plastics Technology, 2010 (5), 205–227
Leichtbau leicht gemacht - Wirtschaftliche Herstellung von Faserverbundwerkstoff-Teilen
Thoma, B.; Henning, F.
2010. Plastverarbeiter, (10), 140–141
Bücher
Continuous–Discontinuous Fiber-Reinforced Polymers – An Integrated Engineering Approach
Böhlke, T.; Henning, F.; Hrymak, A.; Kärger, L.; Weidenmann, K. A.; Wood, J. T. (Hrsg.)
2019. Carl Hanser Verlag. doi:10.3139/9781569906934