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Dissertation
Einfluss mesoskopischer und mikroskopischer Phasenverteilungen auf das Wachstumsverhalten physikalisch kurzer Risse
(2017-09-28)
Im Rahmen der vorliegenden Arbeit wird der Einfluss der meso- und mikroskopischen Phasenverteilung auf das Wachstumsverhalten physikalisch kurzer Risse unter Ermüdungsbelastung in metallischen Werkstoffen untersucht. Dazu werden physikalisch kurze Risse in einem Stahl und einer Aluminiumlegierung gezielt initiiert und bei einer definierten Belastung wachsen gelassen,
um die Interaktion des Risses mit den unterschiedlichen Phasenverteilungen analysieren zu können.
Zur Analyse des mesoskopischen Phaseneinflusses ...
Dissertation
Bruchmechanische Charakterisierung physikalisch kleiner Ermüdungsrisse
(2017-05-05)
Im Rahmen dieser Arbeit wurden das Wachstumsverhalten und der Belastungszustand physikalisch kleiner Ermüdungsrisse bei mechanisch monotoner und zyklischer Belastung unter Berücksichtigung der Mikrostruktur in-situ untersucht.
Das Wachstumsverhalten kleiner Risse hat im Bereich der bruchmechanischen Rissanalyse in der jüngsten Vergangenheit ein besonderes Interesse erfahren, vor allem weil diese Risse einen wesentlichen Anteil der Lebensdauer ausmachen. Kleine Risse in der Größenordnung der Mikrostruktur (Korngrößen, ...
Konferenzveröffentlichung
Influence Of The Fiber-Matrix-Interaction On The Fracture Behavior Of Regenerated Cellulose Fiber Reinforced Polypropylene
(Society of Plastics Engineers, 2017)
This investigation focuses on the fiber-matrix-interaction of man-made cellulose fibers (RCF) in a PP matrix with an additional MAPP content using an energetic evaluation of the single fiber pull-out test (SFPT). Furthermore glass fibers were characterized for reference purposes. With the SFPT the interfacial shear strength (IFFS) and the critical fiber length (lc) as well as the consumed energy of a fiber pull-out and a fiber rupture were determined. In a following step the resulting values of lc were related to the ...
Konferenzveröffentlichung
The Adhesion of LSR Thermoplastic Composites after Storage Tests
(Society of Plastics Engineers, 2017)
The adhesion properties of liquid silicone rubber (LSR) and different thermoplastics (PC, PA, and PP) were examined in this investigation. In order to guarantee the adhesion of both components, an activation (silicatization) of the TP surface, which is a conventional method, was carried out. Furthermore, the long-term stability of the silicatization (storage of the activated surfaces) as well as the wetting behavior were investigated. Moreover, microscopic investigations were performed to analyze the activated ...
Aufsatz
Fabrication and characterization of ethylene–octene copolymer composites with ionic liquid functionalized carbon nanotubes
(2017-10-16)
Modification of multi-walled carbon nanotubes (MWCNTs) by means of imidazolium ionic liquid (IL) was performed. Structural characterization of funtionalized nanofillers (IL-f-MWCNTs) was made by means of Raman spectroscopy and transmission electron microscopy. MWCNTs and IL-f-MWCNTs were introduced within ethylene octane copolymer (EOC) with octene co-monomer content of 17% by using the masterbatch approach. The efficiency of the carbonaceous nanofiller distribution within the polymer matrix was characterized by means ...
Aufsatz
Crack path predictions in fiber reinforced composites
(2017-09-06)
Composite materials exhibit beneficial features compared to conventional engineering material, e.g. a comparable strength and a reduced weight at the same time. To fully exploit these beneficial properties within technical structures, fracture mechanical concepts must be taken into account. The global fracture behavior in composite materials is related to the local delamination at interfaces between matrix and inclusion as well as the local fracture behaviors of the constituents. Because of their structure, the global ...
Aufsatz
Comparative investigation of two-dimensional imaging methods and X-ray tomography in the characterization of microstructure
(2017-10-02)
The microstructural features of three different materials have been quantified by means of 2D image analysis and X-ray micro-computer tomography (CT) and the results were compared to determine the reliability of the 2D analysis in the material characterization. The 3D quantification of shrinkage pores and Fe-rich inclusions of an Al-Si-Cu alloy by X-ray tomography was compared with the statistical analysis of the 2D metallographic pictures and a significant difference in the results was found due to the complex ...