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Comparison of the molecular properties and morphology of polypropylenes irradiated under different atmospheres and after annealing

2006, Krause, Beate, Häußler, Liane, Voigt, Dieter

Electron-beam irradiation, a well-known way of generating long-chain branching, was used to modify polypropylene. Samples were investigated with differential scanning calorimetry, polarized light microscopy, and size exclusion chromatography. Independently of the atmosphere, postannealing led to the deactivation of residual radicals and to the reduction of the nucleus density. In comparison with the initial polypropylene, the crystallization temperatures increased for nonannealed samples but decreased for annealed samples. Stable products were obtained only by irradiation in nitrogen followed by annealing. A reaction including free radicals with oxygen in the ambient atmosphere led to increasing molar mass degradation and the formation of long-chain branching after Storage. © 2006 Wiley Periodicals, Inc.

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Charakterisierung und Optimierung von Nano-Templaten aus Polymeren : bmb+f-Förderschwerpunkt Kondensierte Materie, Großgeräte der physikalischen Grundlagenforschung ; Schlussbericht

2004, Stamm, Manfred, Sydorenko, A., Minko, S., Tokarev, I., Křenek, R.

[no abstract available]

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Chemisches Verfahren zur Herstellung von Kunststoffformteilen mit beflockten Oberflächen als Einstoffsystem auf der Basis von Polyamid : gemeinsamer Schlussbericht für den Zeitraum: 01.10.2005 - 31.07.2008

2008, Lehmann, Dieter, Hoffmann, Gerald, Bahners, Thomas

[no abstract available]

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Verbundprojekt Leichtbau mit thermoplastischen Nanocomposites (LB-Nanos) - Werkstoffentwicklung und -charakterisierung : Abschlussbericht

2009, IPF

[no abstract available]

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Untersuchung neuartiger kombinierter Vernetzungsmechanismen für die Pulverlackhärtung unter Einfluss von Katalysatoren, Teilprojekt 1/Teil 1; Untersuchungen zur thermischen und katalysierten Spaltung von Uretdionen als verkappungsmittelfrei blockierte Isocyanate, Teilprojekt 1/Teil 2; Einfluss von Additiven und Pigmenten auf die Grenzflächenphänomene bei der Pulverlackbeschichtung, Teilprojekt 2/Teil 3 : Abschlussbericht Teil 1 - 3 zum Teilprojekt 1 - 2 im Rahmen des F und E-Programmes zur Erweiterung der Anwendung der Pulverlackiertechnik

2000, Gedan-Smolka, Michaela, Meier Haack, Jochen, Lehmann, Frank, Grundke, Karina, Uhlmann, Petra, Wulf, Martin

[no abstract available]

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Investigation of changes in crystalline and amorphous structure during deformation of nano-reinforced semi-crystalline polymers by space-resolved synchrotron saxs and waxs

2009, Schneider, K., Schone, A., Jun, T.-S., Korsunsky, A.M.

Complex structural changes occur in semi-crystalline polymers during deformation. In (nano-)filled systems the situation becomes even more complicated, since not only phase changes may take place, but also local (interfacial) failure between phases may occur. To help identify specific processes taking place within these systems, simultaneous small- and wide-angle X-ray scattering (SAXS/WAXS) measurements were performed using synchrotron radiation during in situ deformation. Using a highly focused beam, spatially resolved local information can be extracted by scanning the beam across the deformed/damaged region within the sample. The characteristic changes in the different phases are presented and discussed. While the study of WAXS patterns gives insight into the orientation and dimensions of the crystallites, SAXS provides information about the mutual arrangement of phases and the interfacial failure phenomena. Based on the analysis of the results obtained in our experiments it will be shown that the first changes in the crystalline phase appear long before macroscopic yielding of the sample is reached, i.e. the onset of irreversible deformation takes place. In the post-yield regime radical changes are observed in both the long- and short-range structures. It is concluded that the presence of nano-fillers exerts a strong influence on the establishment of microcrystalline structure, and hence also on the deformation behaviour at the microscopic scale.

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Advances for the topographic characterisation of SMC materials

2009, Calvimontes, A., Grundke, K., Müller, A., Stamm, M.

For a comprehensive study of Sheet Moulding Compound (SMC) surfaces, topographical data obtained by a contact-free optical method (chromatic aberration confocal imaging) were systematically acquired to characterise these surfaces with regard to their statistical, functional and volumetrical properties. Optimal sampling conditions (cut-off length and resolution) were obtained by a topographical-statistical procedure proposed in the present work. By using different length scales specific morphologies due to the influence of moulding conditions, metallic mould topography, glass fibre content and glass fibre orientation can be characterized. The aim of this study is to suggest a systematic topographical characterization procedure for composite materials in order to study and recognize the influence of production conditions on their surface quality. © 2009 by the authors.

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Substratinduzierte Veränderungen von Zellen im Kontakt mit Polymermaterialien : Schlussbericht

2002, IPF

[no abstract available]

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Grundlegende Untersuchungen zur Entwicklung von Hochtemperaturthermoplastblends mit verbesserter Phasenanbindung : Forschungsvorhaben auf dem Gebiet: "Exploratorische Materialforschung mit Nachwuchswissenschaftlerinnen und Nachwuchswissenschaftlern" ("Hot-Topics") ; Laufzeit: 04/2001 - 09/2002 ; Abschlußbericht

2003, Pospiech, Doris, Hoffmann, Thorsten, Altstädt, Volker

[no abstract available]

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Correlation of carbon nanotube dispersability in aqueous surfactant solutions and polymers

2009, Krause, Beate, Petzold, Gudrun, Pegel, Sven, Pötschke, Petra

In order to assess the dispersability of carbon nanotube materials, tubes produced under different synthesis conditions were dispersed in aqueous surfactant solutions and the sedimentation behaviour under centrifugation forces was investigated using a LUMiFuge stability analyzer. The electrical percolation threshold of the nanotubes after melt mixing in polyamide 6.6 was determined and the state of dispersion was studied. As a general tendency, the nanotubes having better aqueous dispersion stability showed lower electrical percolation threshold and better nanotube dispersion in the composites. This indicates that the investigation of the stability of aqueous dispersions is also able to give information about the nanotubes inherent dispersability in polymer melts, both strongly influenced by the entanglement and agglomerate structure of the tubes within the as-produced nanotube materials. The shape of the nanotubes in the aqueous dispersions was assessed using a SYSMEX flow particle image analyzer and found to correspond to the shape observed from cryofractured surfaces of the polymer composites. © 2008 Elsevier Ltd. All rights reserved.