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Institute
- Fakultät II - Maschinenbau und Bioverfahrenstechnik (211) (remove)
Bürstenlose Generatorsysteme mit doppelt gespeisten Kaskadenmaschinen werden zzt. für die regenerative Energieerzeugung z. B. mit Windkraftanlagen untersucht. Sie sind eine Alternative zu Generatorsystemen mit doppelt gespeisten Induktionsmaschinen. Kaskadenmaschinen arbeiten mit zwei Drehfeldern verschiedener Polpaarzahl. Im Stator befinden sich zwei Wicklungen für die beiden Polpaarzahlen oder eine Wicklung zur gleichzeitigen Erzeugung der beiden Drehfelder mit getrennten Anschlüssen für die beiden Drehfelder. Der Rotor trägt eine in sich kurzgeschlossene Wicklung, die gleichzeitig mit beiden Drehfeldern verkettet ist und deren Strom beide Drehfelder gleichzeitig erzeugt. Dieser Bericht behandelt die Flussdichte- und Durchflutungsverhältnisse der Wicklungen in Stator und Rotor für Kaskadenmaschinen. Dazu werden die Durchflutungen der Statorwicklungen und der Rotorwicklung für die beiden Polpaarzahlen bestimmt und die für die Wicklungsverluste wirksame Gesamtdurchflutung für verschiedene Polzahlkombinationen ermittelt. Die Ergebnisse werden mit Induktionsmaschinen für eine Polzahl verglichen.
Bürstenlose Generatorsysteme mit doppelt gespeisten Kaskadenmaschinen werden zzt. für die regenerative Energieerzeugung z. B. mit Windkraftanlagen untersucht. Sie sind eine Alternative zu Generatorsystemen mit doppelt gespeisten Induktionsmaschinen. Kaskadenmaschinen arbeiten mit zwei Drehfeldern verschiedener Polpaarzahl. Im Stator befinden sich zwei Wicklungen für die beiden Polpaarzahlen oder eine Wicklung zur gleichzeitigen Erzeugung der beiden Drehfelder mit getrennten Anschlüssen für die beiden Drehfelder. Der Rotor trägt eine in sich kurzgeschlossene Wicklung, die gleichzeitig mit beiden Drehfeldern verkettet ist und deren Strom beide Drehfelder gleichzeitig erzeugt. Dieser Bericht behandelt die sinnvollen Polpaarzahlen für Kaskadenmaschinen. Dazu werden die Polpaarzahlkombinationen hinsichtlich ihrer parasitären Effekte und Ausführungsmöglichkeiten qualitativ bewertet.
Complexes like iron (II)-triazoles exhibit spin crossover behavior at ambient temperature and are often considered for possible application. In previous studies, we implemented complexes of this type into polymer nanofibers and first polymer-based optical waveguide sensor systems. In our current study, we synthesized complexes of this type, implemented them into polymers and obtained composites through drop casting and doctor blading. We present that a certain combination of polymer and complex can lead to composites with high potential for optical devices. For this purpose, we used two different complexes [Fe(atrz)3](2 ns)2 and [Fe(atrz)3]Cl1.5(BF4)0.5 with different polymers for each composite. We show through transmission measurements and UV/VIS spectroscopy that the optical properties of these composite materials can reversibly change due to the spin crossover effect.
Compounds that exhibit the spin crossover effect are known to show a change of spin states through external stimuli. This reversible switching of spin states is accompanied by a change of the properties of the compound. Complexes, like iron (II)-triazole complexes, that exhibit this behavior at ambient temperature are often discussed for potential applications. In previous studies we synthesized iron (II)-triazole complexes and implemented them into electrospun nanofibers. We used Mössbauer spectroscopy in first studies to prove a successful implementation with maintaining spin crossover properties. Further studies from us showed that it is possible to use different electrospinning methods to either do a implementation or a deposition of the synthesized solid SCO material into or onto the polymer nanofibers. We now used a solvent in which both, the used iron (II)-triazole complex [Fe(atrz)3](2 ns)2 and three different polymers (Polyacrylonitrile, Polymethylmethacrylate and Polyvinylpyrrolidone), are soluble. This shall lead to a higher homogeneous distribution of the complex along the nanofibers. Mössbauer spectroscopy and other measurements are therefore in use to show a successful implementation without any significant changes to the complex.
Parametric study of piezoresistive structures in continuous fiber reinforced additive manufacturing
(2024)
Recent advancements in fiber reinforced additive manufacturing leverage the piezoresistivity of continuous carbon fibers. This effect enables the fabrication of structural components with inherent piezoresistive properties suitable for load measurement or structural monitoring. These are achieved without necessitating additional manufacturing or assembly procedures. However, there remain unexplored variables within the domain of continuous fiber-reinforced additive manufacturing. Crucially, the roles of fiber curvature radii and sensing fiber bundle counts have yet to be comprehensively addressed. Additionally, the compression-sensitive nature of printed carbon fiber-reinforced specimens remains a largely unexplored research area. To address these gaps, this study presents experimental analyses on tensile and three-point flexural specimens incorporating sensing carbon fiber strands. All specimens were fabricated with three distinct curvature radii. For the tensile specimens, the number of layers was also varied. Sensing fiber bundles were embedded on both tensile and compression sides of the flexural specimens. Mechanical testing revealed a linear-elastic behavior in the specimens. It was observed that carbon fibers supported the majority of the load, leading to brittle fractures. The resistance measurements showed a dependence on both the number of sensing layers and the radius of curvature, and exhibited a slight decreasing trend in the cyclic tests. Compared with the sensors subjected to tensile stress, the sensors embedded on the compression side showed a lower gauge factor.
Powder bed-based additive manufacturing processes offer an extended freedom in design and enable the processing of metals, ceramics, and polymers with a high level of relative density. The latter is a prevalent measure of process and component quality, which depends on various input variables. A key point in this context is the condition of powder beds. To enhance comprehension of their particle-level formation and facilitate process optimization, simulations based on the Discrete Element Method are increasingly employed in research. To generate qualitatively as well as quantitatively reliable simulation results, an adaptation of the contact model parameterization is necessary. However, current adaptation methods often require the implementation of models that significantly increase computational effort, therefore limiting their applicability. To counteract this obstacle, a sophisticated formula-based adaptation and evaluation method is presented in this research. Additionally, the developed method enables accelerated parameter determination with limited experimental effort. Thus, it represents an integrative component, which supports further research efforts based on the Discrete Element Method by significantly reducing the parameterization effort. The universal nature of deducting this method also allows its adaptation to similar parameterization problems and its implementation in other fields of research.
Bürstenlose Generatorsysteme mit doppelt gespeisten Kaskadenmaschinen werden zurzeit für die regenerative Energieerzeugung z. B. mit Windkraftanlagen untersucht. Sie sind eine Alternative zu Generatorsystemen mit doppelt gespeisten Induktionsmaschinen. Kaskadenmaschinen arbeiten mit zwei Drehfeldern verschiedener Polpaarzahl. Im Stator befinden sich zwei Wicklungen für die beiden Polpaarzahlen oder eine Wicklung zur gleichzeitigen Erzeugung der beiden Drehfelder mit getrennten Anschlüssen für die beiden Drehfelder. Der Rotor trägt eine in sich kurzgeschlossene Wicklung, die gleichzeitig mit beiden Drehfeldern verkettet ist und deren Strom beide Drehfelder gleichzeitig erzeugt. Der vorliegende Beitrag beschreibt wie die elektromagnetischeWirkung unsymmetrischer Rotorwicklungen für Kaskadenmaschinen mit der Drehfeldanalyse behandelt werden kann. Die Rotorwicklungen dienen dazu, gleichzeitig beide Grundfelder der Kaskadenmaschine zu erzeugen. Dazu sind sie z. T. mit Wicklungszweigen aufgebaut, die in verschiedenen Knoten zusammen geschaltet sind. Aus Sicht der Statorwicklungen sind sie unsymmetrisch aufgebaut. Unsymmetrische Rotorwicklungen treten auch in Induktions- und Synchronmaschinen auf, z. B. bei Wicklungsfehlern, Stabbrüchen oder bei unsymmetrischen Anlaufkäfigen. Mit dem hier dargestellten Rechenverfahren wird die elektromagnetische Kopplung zwischen den Wicklungszweigen und zur Statorwicklung erfasst.
Subclinical mastitis in heifers during early lactation affects udder health, future milk production and, therefore, the risk of premature culling. The aim of this cross-sectional study was to identify pre- and post-partum risk factors associated with a high heifer mastitis rate (HMR), and to find out which period (either pre- or post-partum) contains more risk factors and consequently should be the focus of mastitis control in heifers. A total of 77 herds were included in this study and the potential animal- and farm-related risk factors were recorded during a one-time farm visit. The HMR was provided by the dairy herd improvement test (DHI) as the annual average of the past 11 DHIs. For this study, data were analyzed in two models using generalized linear models. Each model examined the association between possible risk factors and HMR, one including only prepartum risk factors and the other one only post-partum risk factors. One identified pre-partum risk factor was the proportion of udder-healthy cows in the herd. Post-partum risk factors were the type of teat cleaning procedure before milking, teat disinfection, treatment of mastitis in heifers, a body condition score (BCS) of >3.0 in fresh heifers, and the combination of a teat cleaning procedure with a teat disinfectant. The results show the importance of the period shortly after calving for udder health in heifers, as four of the five significant risk factors were identified in this period and three of them were related to the milking process. However, further research with a higher number of herds is needed to minimize individual herd effects.
During machine milking, pathogenic microorganisms can be transmitted from cow to cow through liners. Therefore, in Germany, a spray method for the intermediate disinfection of the milking cluster is often used for prevention. This method of cluster disinfection is easy to perform, requires little time and no extra materials, and the disinfection solution is safe from outside contamination in the spray bottle. Since no data on a systematic efficacy trial are available, the aim of this study was to determine the microbial reduction effect of intermediate disinfection. Therefore, laboratory and field trials were conducted. In both trials, two sprays of 0.85 mL per burst of different disinfectant solutions were sprayed into the contaminated liners. For sampling, a quantitative swabbing method using a modified wet–dry swab (WDS) technique based on DIN 10113-1: 1997-07 was applied. Thus, the effectiveness of disinfectants based on Peracetic Acid, Hydrogen Peroxide and Plasma-Activated Buffered Solution (PABS) was compared. In the laboratory trial, the inner surfaces of liners were contaminated with pure cultures of Escherichia (E.) coli, Staphylococcus (S.) aureus, Streptococcus (Sc.) uberis and Sc. agalactiae. The disinfection of the contaminated liners with the disinfectants resulted in a significant reduction in bacteria with values averaging 1 log for E. coli, 0.7 log for S. aureus, 0.7 log for Sc. uberis and 0.8 log for Sc. agalactiae. The highest reduction was obtained for contamination with E. coli (1.3 log) and Sc. uberis (0.8 log) when PABS was applied and for contamination with S. aureus (1.1 log) and Sc. agalactiae (1 log) when Peracetic Acid Solution (PAS) was used. Treatment with sterile water only led to an average reduction of 0.4 log. In the field trial, after the milking of 575 cows, the liners were disinfected and the total microorganism count from the liner surface was performed. The reduction was measured against an untreated liner within the cluster. Although a reduction in microorganisms was achieved in the field trial, it was not significant. When using PAS, a log reduction of 0.3 was achieved; when using PABS, a log reduction of 0.2 was obtained. The difference between the two disinfection methods was also not significant. Treatment with sterile water only led to a reduction of 0.1 log. The results show that spray disinfection under these circumstances does result in a reduction in the bacteria on the milking liner surface, but for effective disinfection a higher reduction would be preferred.
We report velocity-dependent internal energy distributions of nitric oxide molecules, NO, scattered off graphene supported on gold to further explore the dynamics of the collision process between NO radicals and graphene. These experiments were performed by directing a molecular beam of NO onto graphene in a surface-velocity map imaging setup, which allowed us to record internal energy distributions of the NO radicals as a function of their velocity. We do not observe bond formation but (1) major contributions from direct inelastic scattering and (2) a smaller trapping–desorption component where some physisorbed NO molecules have residence times on the order of microseconds. This is in agreement with our classical molecular dynamics simulations which also observe a small proportion of two- and multi-bounce collisions events but likewise a small proportion of NO radicals trapped at the surface for the entire length of the molecular dynamics simulations (a few picoseconds). Despite a collision energy of 0.31 eV, which would be sufficient to populate NO(v = 1), we do not detect vibrationally excited nitric oxide.