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Projects

In page navigation: Research
  • Projects
    • Autonome Strukturbildung in Wirbelschichtsprühagglomerationsprozessen
    • Modification and structuring of powders by gas phase processes (A2)
    • Formulation of hetero-aggregates in continuously-operated opposed jet fluidized beds
    • Forschungskostenzuschuss zum Capes-Humboldt-Forschungsstipendium für Postdoktoranden (Dr. Araujo dos Santos)
    • Neuartige Hochtemperaturthermoplastpulver für das Laser-Sintern (LS) von Polymeren (HTTP-LS)
    • Creation of functional particles and porous structures by spray drying

Projects

  • Autonome Strukturbildung in Wirbelschichtsprühagglomerationsprozessen


    (Third Party Funds Group – Sub project)
    Overall project: Autonome Prozesse in der Partikeltechnik - Erforschung und Erprobung von Konzepten zur modellbasierten Führung partikeltechnischer Prozesse
    Term: 01.10.2022 - 30.09.2025
    Funding source: DFG / Schwerpunktprogramm (SPP)
    Abstract

    Im Rahmen des vorliegenden Projektes werden Modelle, Methoden und Implementierungen zur Realisierung von autonomen Strukturbildungsprozessen in Sprühwirbelschichten (SWS) entwickelt. Dazu werden neue Multi-rate Soft-Sensoren zur Online-Bestimmung der Agglomeratstruktur mit erweiterten Regelungskonzepten zur gezielten Einstellung der gewünschten Agglomeratstruktur kombiniert. Struktur- und Morphologie-Modelle spielen dabei eine entscheidende Rolle, um die erforderliche Verbindung zwischen den Eingangsgrößen, den Messgrößen und der gewünschten Agglomeratstruktur herzustellen. Mit diesem Ansatz adressiert das geplante Projekt alle zentralen Forschungsbereiche des Schwerpunktprogrammes.In der ersten Förderphase werden Homo-Agglomerate betrachtet, die aus Primärpartikeln eines Materials aufgebaut sind. Zentrale Zielsetzungen der ersten Förderphase sind: 1) Entwicklung neuer Modelle zur Beschreibung des dynamischen Verhaltens der Struktur und Morphologie von Homo-Agglomeraten in kontinuierliche betriebenen SWSen mit und ohne Recycle; 2) Untersuchung der Strukturbildungsdynamik in Simulation und Experiment; 3) Aufklärung von Prozess-Struktur- und Material-Struktur-Beziehungen durch detaillierte Charakterisierung der Agglomeratstruktur; 4) Entwicklung und Implementierung von neuen Multi-rate Soft-Sensoren zur Erfassung der Strukturbildung bei der SWS-Agglomeration; 5) Entwicklung echtzeitfähiger Modelle für die Prozessregelung mit Hilfe datengetriebener Surrogat- und Hybridmodelle; 6) Entwicklung, Implementierung und Evaluierung verschiedener Regelalgorithmen für die autonome Strukturbildung von Homo-Agglomeraten für SWS-Agglomerationsprozesse mit und ohne Recycle.Dazu ist eine enge Kooperation mir den Partnern des Schwerpunktprogrammes in den Bereichen Prozessmodellierung, Online-Messverfahren, Modelreduktion, Optimierung und Prozessführung geplant.In der zweiten Förderphase ist eine Erweiterung der Modelle, Methoden und Implementierungen für Hetero-Agglomerate vorgesehen. Diese sind aus Primärpartikeln unterschiedlicher Materialien aufgebaut, was mit einem komplexeren Prozessverhalten einhergeht, aber auch neue Möglichkeiten für die Produktgestaltung eröffnet.

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  • Modification and structuring of powders by gas phase processes (A2)


    (Third Party Funds Group – Sub project)
    Overall project: CRC 814 - Additive Manufacturing
    Term: 01.07.2011 - 30.06.2023
    Funding source: DFG / Sonderforschungsbereich (SFB)
    URL: https://www.crc814.research.fau.eu
    Abstract

    Sub-project A2 aims at the development of new processstrategies for the production of polymer- and metal-based multi-materialparticles for additive manufacturing, e.g. by addition of nanoscale additives.By extensive property characterisation, the understanding of nanoscaleparticles on nucleation and modification of polymer properties, e.g.crystallisation kinetics and metal properties, e.g. structure and phaseformation, will be improved. Combined with process modelling, relations betweensingle particle properties, processability and manufactured parts propertieswill be established, thereby allowing recursive design of application-optimisedmulti-materials and parts.




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  • Formulation of hetero-aggregates in continuously-operated opposed jet fluidized beds


    (Third Party Funds Group – Sub project)
    Overall project: Creation of synergies in tailor-made mixtures of heterogeneous powders: Hetero aggregations of particulate systems and their properties
    Term: 01.04.2022 - 31.03.2025
    Funding source: DFG / Schwerpunktprogramm (SPP)
    Abstract
    The six-year vision of the project is the establishment of a scalable continuous process for formulation of multinary hetero-aggregates from dry primary particles as an alternative to flame synthesis and aerosol processes. The functionality of the hetero-aggregates will be grounded in the designed composition and distribution of hetero-contacts between constituents achieved by mixing at the primary particle scale (~ 10 nm). Process modelling is an integral part of the project: Firstly, to establish the process function of the formulation process (in the Rumpfian sense). Secondly, to generate tools for model-based sensor fusion, online measurement, process optimization and control.Comprehensive characterization of hetero-aggregate properties is the link between the experiments and the simulation studies, iteratively providing validation and improvement of process models and experimental design as well as revealing the material functions of hetero-aggregate formulation in opposed jet fluidized beds.In the first three years, the first funding period, the objectives of the project are:- Establishment and investigation of a continuous binary hetero-aggregate formulation process in opposed jet fluidized beds;- Development of a multiphase and multiscale process model for that heteroaggregate formulation process;- Investigation of systems theoretic properties of the process as a prerequisite for process control and optimization of the formulation process;- Elucidation of the optical, electronic and photochemical properties of hetero-junctions and hetero-aggregates (bulk behavior);- Linkage of the observed aggregates’ bulk behavior to distinct features of single aggregate structures and band gap characteristics as studied by SEM/EDX; - Determination of the mechanical properties of single hetero-aggregates by measurements and elucidation of the relationships between aggregate strength, structure and formulation process parameters.Cooperation is sought throughout the partners of the priority programme, especially in the areas of complementary characterization methods (e.g. transmission electron and scanning electron microscopy, and electron tomography), aggregate formation process modelling on primary particle scale (e.g. by discrete element methods), and comparison of process technologies. The focus of the second funding period is on the transition from binary (over ternary and quaternary) to multinary aggregates by multi-stage operation of the formulation process. New characterization procedures and protocols will be developed to distinguish and quantify the additional opportunities of multi-component hetero-contacts and to unveil the interplay of process parameters and aggregate properties. First-principles models will be extended for the additional tasks of model-based optimization and control, utilizing also data-driven approaches (hybrid/surrogate modelling).
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  • Forschungskostenzuschuss zum Capes-Humboldt-Forschungsstipendium für Postdoktoranden (Dr. Araujo dos Santos)


    (Third Party Funds Single)
    Term: 01.03.2020 - 28.02.2021
    Funding source: Alexander von Humboldt-Stiftung
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  • Neuartige Hochtemperaturthermoplastpulver für das Laser-Sintern (LS) von Polymeren (HTTP-LS)


    (Third Party Funds Group – Sub project)
    Overall project: Neuartige Hochtemperaturthermoplastpulver für das Laser-Sintern (LS) von Polymeren (HTTP-LS)
    Term: 01.04.2019 - 31.03.2022
    Funding source: Bayerisches Staatsministerium für Wirtschaft und Medien, Energie und Technologie (StMWIVT) (ab 10/2013)
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  • Creation of functional particles and porous structures by spray drying


    (Third Party Funds Group – Sub project)
    Overall project: SFB 1411: Design of particulate products
    Term: 01.01.2020 - 31.12.2023
    Funding source: DFG / Sonderforschungsbereich (SFB)
    Abstract
    The objective is the development of a new scalable technology for continuous production of stationary phase materials for use in particle chromatography from suspensions by "spray printing", i.e. layer-by-layer build-up of functional, porous substrates by individual droplet placement and drying. We will design and implement a new device for layer-by-layer build up. We will perform experiments on solids formation from drying free and sessile droplets and derive dynamic models that will allow describing predictively layer morphology and spatial heterogeneity of the porous Substrates.
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Friedrich-Alexander-Universität
Erlangen-Nürnberg

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91054 Erlangen
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