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Dive into the research topics where Mark Opitz is active.

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Featured researches published by Mark Opitz.


Materials Science Forum | 2015

Fast Curing of Carbon Fiber Reinforced Plastics Using the Integration of Nanoparticles

Wibke Exner; Mark Opitz; Peter Wierach

Fast curing of carbon fiber reinforced plastics (CFRPs) is limited by the degradation of the resin under high temperatures and by the development of internal strains. The authors counter these problems by adding nanoparticles to the matrix of CFRPs. In the presented work various volume fractions of nanosized aluminum oxide particles are integrated into the epoxy resin RTM6. To demonstrate the increased heat flow within the CFRP component, thermal conductivity tests are presented. Results show increasing values as the filler content is raised.With increasing filler content the reaction speed is also accelerated. This effect is analyzed by differential scanning calorimetry. It is shown that the particle surface has a catalytic effect on the curing of the epoxy resin. The results of the author also show that the added nanoparticles not only change the material composition, but also modify the network of the epoxy resin. In a series of experiments it is demonstrated how nanoparticles decrease the chemical shrinkage. The results show a reduction of the shrinkage higher than the volume fraction of the nanoparticles, which can be explained by the formation of interphases. Thermal mechanical analysis also confirms a decreased thermal shrinkage due to the integration of nanoparticles. Finally, the inspection of L-shaped CFRPs samples with different filler contents show the ability of nanofillers to decrease the spring-in.In summary, the integration of aluminum oxide decreases the thermal as well as the chemical shrinkage, increases the thermal conductivity and accelerates the chemical reaction.Overall, these changes in curing behavior lead to an increased dimensional stability of the CFRPs. Thus, nanoparticles may be one way of overcoming the disadvantages of fast curing cycles.


Polymer Testing | 2016

Determination of volumetric shrinkage of thermally cured thermosets using video-imaging

Wibke Exner; Alexandra Kühn; Artur Szewieczek; Mark Opitz; Thorsten Mahrholz; Michael Sinapius; Peter Wierach


Archive | 2013

Molding tool for manufacturing component, has molding tool surface made of flexible material, in which semi-finished product is introduced for molding final component, where actuating device is provided with multiple actuating elements

Philipp Hilmer; Mark Opitz


Archive | 2017

Are low-cost foam materials suitable for RTM large-scale production?" - A method for material characterization under real boundary process conditions.

Mark Opitz; Dominic Bertling; Nico Liebers


Archive | 2016

Verfahren und Vorrichtung zur Analyse von Formkörpern als Komponenten für Faserverbundbauteile

Dominic Bertling; Nico Liebers; Mark Opitz


Archive | 2015

Sensor Controlled Open and Closed Mould Composite Production

Markus Kleineberg; Nico Liebers; Manuel Buggisch; Mark Opitz; Robert Hein


Archive | 2015

Fully controlled production environment for autoclave injection processes

Markus Kleineberg; Nico Liebers; Manuel Buggisch; Erik Kappel; Tobias Wille; Philipp Hilmer; Mark Opitz; Martin Liebisch


Archive | 2015

Method and apparatus for analysis of moldings as components for fiber composite components

Dominic Bertling; Nico Liebers; Mark Opitz


Archive | 2015

EVALUATION AND CALIBRATION OF TOOL INDEPENDENT CURE MONITORING SYSTEMS FOR EPOXY RESINS

Jochen Schmidt; Mark Opitz; Nico Liebers


Archive | 2015

Experiment-basierte Prozessgestaltung als Schlüssel zum bezahlbaren Leichtbau

Mark Opitz; Nico Liebers; Robert Kaps

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Nico Liebers

German Aerospace Center

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Wibke Exner

German Aerospace Center

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Erik Kappel

German Aerospace Center

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