Lehrstuhl für Werkstoffwissenschaften (Werkstoffkunde und Technologie der Metalle)

Adresse:
Martensstraße 5
91058 Erlangen


Forschungsbereiche

Additive Fertigung
Hochtemperaturwerkstoffe
Leichtbauwerkstoffe
Numerische Simulation
Ultraharte Schichten


Forschungsprojekt(e)

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Modellierung und Simulation der Multi-Material-Verarbeitung metallischer Werkstoffe bei der strahlbasierten additiven Fertigung im Pulverbett
Prof. Dr.-Ing. Carolin Körner
(01.04.2019 - 30.09.2021)


(Auslegungsgrundlagen einer tubulären, mittels additiver Methoden und Extrusion gefertigten Elektrolysezelle):
Tubulyze: Auslegungsgrundlagen einer tubulären, mittels additiver Methoden und Extrusion gefertigten Elektrolysezelle
Prof. Julien Bachmann; Prof. Dr.-Ing. Carolin Körner
(01.01.2019 - 31.12.2022)


Grundlagenuntersuchungen zur Herstellung und Eigenschaften von in-situ AI3Ti-verstärkten Aluminiumgusslegierungen
Prof. Dr.-Ing. Carolin Körner
(01.01.2019 - 31.12.2020)


(Additive Manufacturing using Metal Pilot Line):
MANUELA: Additive Manufacturing using Metal Pilot Line
Prof. Dr.-Ing. Carolin Körner
(01.10.2018 - 30.09.2022)


Erzeugung hierarchisch gegliederter Oberflächenfeingestalten durch spanende Verfahren zur Reduzierung von Eigenspannungen in CVD-Diamantschichten auf Stahl
PD Dr.-Ing. Stefan Rosiwal
(01.09.2018 - 31.08.2020)



Publikationen (Download BibTeX)

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Fiegl, T., Franke, M., & Körner, C. (2019). Impact of build envelope on the properties of additive manufactured parts from AlSi10Mg. Optics and Laser Technology, 111, 51-57. https://dx.doi.org/10.1016/j.optlastec.2018.08.050
Wolf, T., Fu, Z., & Körner, C. (2019). Selective electron beam melting of an aluminum bronze: Microstructure and mechanical properties. Materials Letters, 238, 241-244. https://dx.doi.org/10.1016/j.matlet.2018.12.015
Müller, A., Roslyakova, I., Sprenger, M., Git, P., Rettig, R., Markl, M.,... Singer, R. (2019). MultOpt++: a fast regression-based model for the development of compositions with high robustness against scatter of element concentrations. Modelling and Simulation in Materials Science and Engineering, 27(2). https://dx.doi.org/10.1088/1361-651X/aaf0b8
Müller, A., Sprenger, M., Ritter, N., Rettig, R., Markl, M., Körner, C., & Singer, R. (2019). MultOpt++: a fast regression-based model for the constraint violation fraction due to composition uncertainties. Modelling and Simulation in Materials Science and Engineering, 27(2). https://dx.doi.org/10.1088/1361-651X/aaf01e
Pistor, J., & Körner, C. (2019). Formation of topologically closed packed phases within CMSX-4 single crystals produced by additive manufacturing. Materials Letters, 1. https://dx.doi.org/10.1016/j.mlblux.2019.100003
Novak, N., Borovinsek, M., Vesenjak, M., Wormser, M., Körner, C., Tanaka, S.,... Ren, Z. (2018). Crushing Behavior of Graded Auxetic Structures Built from Inverted Tetrapods under Impact. Physica Status Solidi (B) Basic Research. https://dx.doi.org/10.1002/pssb.201800040
Köpf, J., Rasch, M., Meyer, A., Markl, M., Schmidt, M., & Körner, C. (2018). 3D grain growth simulation and experimental verification in laser beam melting of IN718. In Procedia CIRP 74 (2018) (pp. 82–86). Fürth, DE.
Markl, M., Müller, A., Ritter, N., Hofmeister, M., Naujoks, D., Schaar, H.,... Körner, C. (2018). Development of Single-Crystal Ni-Base Superalloys Based on Multi-criteria Numerical Optimization and Efficient Use of Refractory Elements. Metallurgical and Materials Transactions A-Physical Metallurgy and Materials Science, 49A(9), 4134-4145. https://dx.doi.org/10.1007/s11661-018-4759-0
Osmanlic, F., Wudy, K., Laumer, T., Schmidt, M., Drummer, D., & Körner, C. (2018). Modeling of Laser Beam Absorption in a Polymer Powder Bed. Polymers, 10(7). https://dx.doi.org/10.3390/polym10070784
Ritter, N., Sowa, R., Schauer, J.C., Gruber, D., Göhler, T., Rettig, R.,... Singer, R. (2018). Effects of Solid Solution Strengthening Elements Mo, Re, Ru, and W on Transition Temperatures in Nickel-Based Superalloys with High γ′-Volume Fraction: Comparison of Experiment and CALPHAD Calculations. Metallurgical and Materials Transactions A-Physical Metallurgy and Materials Science. https://dx.doi.org/10.1007/s11661-018-4730-0
Pobel, C., Lodes, M., & Körner, C. (2018). Selective Electron Beam Melting of Oxide Dispersion Strengthened Copper. Advanced Engineering Materials, 20(8). https://dx.doi.org/10.1002/adem.201800068
Ramsperger, M. (2018). Selektives Elektronenstrahlschmelzen der einkristallinen Ni-Basis Superlegierung CMSX-4 (Dissertation).
Markl, M., & Körner, C. (2018). Powder layer deposition algorithm for additive manufacturing simulations. Powder Technology, 330, 125-136. https://dx.doi.org/10.1016/j.powtec.2018.02.026
Guschlbauer, R., Momeni, S., Osmanlic, F., & Körner, C. (2018). Process development of 99.95% pure copper processed via selective electron beam melting and its mechanical and physical properties. Materials Characterization. https://dx.doi.org/10.1016/j.matchar.2018.04.009
Arnold, C., Pobel, C., Osmanlic, F., & Körner, C. (2018). Layerwise monitoring of electron beam melting via backscatter electron detection. Rapid Prototyping Journal. https://dx.doi.org/10.1108/RPJ-02-2018-0034
Momeni, S., Guschlbauer, R., Osmanlic, F., & Körner, C. (2018). Selective electron beam melting of a copper-chrome powder mixture. Materials Letters, 223, 250-252. https://dx.doi.org/10.1016/j.matlet.2018.03.194
Jum'h, I., Abdelhay, A., Telfah, A., Al-Akhras, M.-A., Al-Kazwini, A., & Rosiwal, S. (2018). Veratric acid removal from water by electrochemical oxidation on BDD anode. In IOP Conference Series: Materials Science and Engineering Volume 305. Irbid, JO: Institute of Physics Publishing.
Hübner, D., Gotterbarm, M., Kergaßner, A., Köpf, J., Pobel, C., Markl, M.,... Stingl, M. (2018). Topology Optimization in Additive Manufacturing Considering the Grain Structure of Inconel 718 using Numerical Homogenization. In Proceedings of 7th International Conference on Additive Technologies (pp. 102-111). Maribor, SI.
Jüchter, V., Franke, M., Merenda, T., Stich, A., Körner, C., & Singer, R. (2018). Additive manufacturing of Ti-45Al-4Nb-C by selective electron beam melting for automotive applications. Additive Manufacturing, 22, 118-126. https://dx.doi.org/10.1016/j.addma.2018.05.008
Winkler, A., Modler, N., Drossel, W.-G., Mäder, T., & Körner, C. (2018). High-Volume Production-Compatible Technologies for Light Metal and Fiber Composite-Based Components with Integrated Piezoceramic Sensors and Actuators. Advanced Engineering Materials, 20(12). https://dx.doi.org/10.1002/adem.201801001


Zusätzliche Publikationen (Download BibTeX)


Helmer, H.E. (2016). Additive Fertigung durch Selektives Elektronenstrahlschmelzen der Nickelbasis Superlegierung IN718: Prozessfenster, Mikrostruktur und mechanische Eigenschaften (Dissertation).
Attar, E. (2011). Simulation of Selective Electron Beam Melting Process (Dissertation).
Löhnert, K. (2011). Einfluss der thermomechanischen Vorbehandlung auf die Eigenschaften der Nickelbasissuperlegierung A718Plus (Dissertation).
Kellermann, K. (2011). Eigenspannungen in Mehrschichtaufbauten aus Diamant und Chromkarbid auf Vergütungsstählen (Dissertation).
Derfuß, B. (2008). Entbinderungsverhalten beim Pulverspritzguss mit Mesophasenkohlenstoff und wasserlöslichen Bindersystemen (Dissertation).
Rottmair, C.A. (2007). Einfluss der thermischen Prozessführung auf die Eigenschaften von Graphitformteilen, hergestellt durch Pulverspritzguss von Mesophasen-Kohlenstoff (Dissertation).

Zuletzt aktualisiert 2017-15-03 um 01:00