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  • 62 Ingenieurwissenschaften

620 Ingenieurwissenschaften und zugeordnete Tätigkeiten

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Fast-Track Your Decisions: Leveraging Low Code to Speed Up Simulation-Driven Insights in Semiconductor Industry (2025)
Leißau, Madlene ; Rössl, Adrian ; Laroque, Christoph
Low-code approaches can accelerate decision-making in the semiconductor industry by streamlining simulation-driven insights. This supports the paradigm shift to Industry 4.0 and Industry 5.0 by enabling rapid development and optimized workflows. However, existing simulation methods often require extensive coding expertise, limiting accessibility and slowing down model development. This paper presents a simulation template that streamlines the development of discrete event simulation models in semiconductor manufacturing. Thus, the simulation template implements reusable components to simplify model creation and reduce development time. The approach encourages collaboration between technical and nontechnical stakeholders. Combined with a low-code data farming framework, the simulation template increases agility, accelerates experimentation, and supports efficient, data-driven production planning decisions.
Vorentwicklung eines aktiven Cell-Balancing-Systems für Multi-Zell-Lithium-Ionen-Batterien im Bereich Elektromobilität (2025)
Jehring, Matthias ; Bodach, Mirko ; Gottschalk, Benny
Mechanische Erscheinungen (2025)
Horst, Thomas
Verbrennungsmotoren zur Rückverstromung von Wasserstoff (2025)
Walther, Ulrich ; Gottschalk, Benny ; Bodach, Mirko
Experimental studies on increasing damping by embedding dry carbon fibers (2025)
Dannemann, Martin ; Ehrig, Tom ; Modler, Niels ; Regner, Sebastian
The paper investigates the change of the structural dynamic behavior caused by embedding dry carbon fibers into beam-shaped specimens. It was assumed that a significant part of the vibration energy is dissipated due to friction between the dry fibers. To verify this, and to separate the effects of mass and stiffness changes, three different types of specimens – with and without dry fibers – were designed, manufactured and dynamically characterized through a bending resonance test. The results show a significant increase in damping due to the embedding of dry carbon fibers. Contrary to expectations, the natural frequency of this type of specimen increased along with the damping. However, the reason for this increase in damping and natural frequency remains unclear, as the decay curves, for example, do not exhibit a friction-typical characteristic.
Inline-Messtechnik für kontinuierliche Prozesse/Inline measurement technology for continuous processes - Inline technology for continuous production processes using pultrusion as an example (2025)
Dempfle, Tobias ; Rieger, Maximilian ; Strauß, Sebastian ; Kläber, Leander ; Kabardiadi-Virkovski, Alexander ; Taudt, Christopher
Das Projekt PulLoop entwickelt kostengünstige, berührungslose Messsysteme für kontinuierliche Produktionsverfahren wie Pultrusion und Extrusion. Ziel ist die Integration eines optischen Messsystems zur Reduzierung von Ausschuss und zur datengetriebenen Prozessoptimierung. Der Closed-Loop-Ansatz ermöglicht eine effiziente Produktion mit präziser Toleranzdokumentation.
Neues Verfahren ermöglicht präzisere Oberflächenmessungen (2025)
Hartmann, Peter
Didaktik psychologischer Inhalte für (angehende) Ingenieure und Betriebswirte – ein Lehr-Lernprojekt zu Blended Learning (2024)
Riedel, Ralph ; Franke, Susanne ; Starker, Ulrike
Differentiation of biological tissue based on angle-resolved scattering distribution using fiber-coupled single-mode light source with spectrally controllable emission characteristics (2023)
Ruf, Daniel ; Baselt, Tobias ; Kabardiadi-Virkovski, Alexander ; Hartmann, Peter
Optimization of Magnetic Cobalt Ferrite Nanoparticles for Magnetic Heating Applications in Biomedical Technology (2023)
Zahn, Diana ; Landers, Joachim ; Diegel, Marco ; Salamon, Soma ; Stihl, Andreas ; Schacher, Felix H. ; Dellith, Jan ; Dutz, Silvio
Using magnetic nanoparticles for extracorporeal magnetic heating applications in bio-medical technology allows higher external field amplitudes and thereby the utilization of particles with higher coercivities (HC). In this study, we report the synthesis and characterization of high coercivity cobalt ferrite nanoparticles following a wet co-precipitation method. Particles are characterized with magnetometry, X-ray diffraction, Mössbauer spectroscopy, transmission electron microscopy (TEM) and calorimetric measurements for the determination of their specific absorption rate (SAR). In the first series, CoxFe3−xO4 particles were synthesized with x = 1 and a structured variation of synthesis conditions, including those of the used atmosphere (O2 or N2). In the second series, particles with x = 0 to 1 were synthesized to study the influence of the cobalt fraction on the resulting magnetic and structural properties. Crystallite sizes of the resulting particles ranged between 10 and 18 nm, while maximum coercivities at room temperatures of 60 kA/m for synthesis with O2 and 37 kA/m for N2 were reached. Magnetization values at room temperature and 2 T (MRT,2T) up to 60 Am2/kg under N2 for x = 1 can be achieved. Synthesis parameters that lead to the formation of an additional phase when they exceed specific thresholds have been identified. Based on XRD findings, the direct correlation between high-field magnetization, the fraction of this antiferromagnetic byphase and the estimated transition temperature of this byphase, extracted from the Mössbauer spectroscopy series, we were able to attribute this contribution to akageneite. When varying the cobalt fraction x, a non-monotonous correlation of HC and x was found, with a linear increase of HC up to x = 0.8 and a decrease for x > 0.8, while magnetometry and in-field Mössbauer experiments demonstrated a moderate degree of spin canting for all x, yielding high magnetization. SAR values up to 480 W/g (@290 kHz, 69 mT) were measured for immobilized particles with x = 0.3, whit the external field amplitude being the limiting factor due to the high coercivities of our particles.
Angebotsorientierte netzdienliche Energiebereitstellung in bidirektionaler Verknüpfung mit einem Nahwärmenetz am Beispiel eines Schulgebäudes (2022)
Härtel, Tobias ; Reichel, Mario ; Schwind, Martin ; Hoffmann, Matthias
Autonom zur Steckdose – ein neuer Ansatz für netzdienliche Elektromobilität (2024)
Krabbes, Felix ; Höppner, Tom ; Jehring, Matthias ; Greiner, Monique ; Gabryelski, Nicole ; Voßwinkel, Rick ; Heinrich, Michael ; Queck, Elena ; Bodach, Mirko ; Teich, Tobias ; Gläß, Michaela
Scalable Emulator for Hydrogen-Based Gas Engines in Decentralized Combined Heat and Power Plants (2024)
Zitzelsberger, Johann ; Andarbekova, Alina ; David, Uwe
Bi-Directional Vibration-Driven Mobile Robots Based on Multipole Magnetoactive Elastomers (2024)
Reiche, Marius ; Zentner, Lena ; Borin, Dmitry ; Becker, Felix ; Becker, Tatiana
Adaptive Cruise Control Implementation to a Path-following MPC for Vehicle Guidance (2023)
Krabbes, Felix ; Ritschel, Robert ; Voßwinkel, Rick
Dual-MPC as Next Generation Energy Management Algorithm for Multi-Energy-Source Vehicles (2023)
Krabbes, Felix ; Voßwinkel, Rick
Praxisbeitrag Ladeinfrastruktur im öffentlichen Raum (2022)
Mewes, Christoph ; Höppner, Tom ; Steiner, Kevin ; Bodach, Mirko ; Teich, Tobias ; Queck, Elena
Hypotrochoidische Welle-Nabe-Verbindungen – Experimentelle Untersuchungen beweisen das große Potential gegenüber der genormten Passfederverbindung (2022)
Selzer, Marcus ; Forbrig, Frank ; Ziaei, Masoud
Influence of a Shaft Shoulder on the Torsional Load-Bearing Behaviour of Trochoidal Profile Contours as Positive Shaft–Hub Connections (2024)
Ziaei, Masoud ; Selzer, Marcus ; Sommer, Heiko
Shafts with a stepped shoulder are particularly well known in the field of drive technology. In combination with a form-fit shaft–hub connection, the shaft shoulder fixes the hub on the shaft as well as being responsible for the absorption of the axial forces. With profiled shafts, there is a notch overlay in the shaft shoulder, involving the shaft shoulder and profile. If the hub is also connected with the profiled shaft, the hub edge acts as an additional notch in the shaft shoulder area. The multiple resulting notches have not previously been part of research activities in the field of innovative trochoidal profile connections. Compared to conventional positive-locking connections, such as the keyway connection or the involute splined shaft profile, the favourable features of trochoidal profiles have only been based on connections with stepless shafts without a shoulder in previous studies. Accordingly, this article addresses numerical and experimental investigations of trochoidal profile connections with offset shafts for pure torsional loading. Focusing on a hybrid trochoid with four eccentricities and six drivers, a well-founded numerical and experimental investigation was carried out with numerous fatigue tests. In addition, the influence of a shaft shoulder was also demonstrated on simple epitrochoidal and hypotrochoidal profiles.
Schnelle, breitbandige Datenübertragung zwischen Truck und Trailer als Voraussetzung für das hochautomatisierte Fahren von Lastzügen (2021)
Körber, Bernd ; Müller, Norman ; Trebeck, Matthias ; Wunderlich, Tom
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