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(2017)
Aus ähnlichen Beweggründen, die Ferdinand von Steinbeis im Großen verfolgte, ist es den Bemühungen des Textilfachlehrers Reichelt und dem damaligen Prof. Stängle zu verdanken, dass gegen Ende des 19. Jahrhunderts an der in der Zwischenzeit zum Technikum für Textilindustrie avancierten Reutlinger Textilanstalt eine reichhaltige Sammlung von Modellen und Gewebemustern eingerichtet und aufgebaut wurde. Den Schwerpunkt der aus über 500000 Mustern und Gewebefragmenten bestehenden Kollektion bilden europäische Jacquard-Gewebe und engliche Anzugsstoffe aus dem 19. Jahrhundert. Das Glanzstück der Reutlinger Gewebesammlung bilden ... etwa 900 altjapanische Gewebefragmente aus der Zeit von 1530 bis 1880 ...
The current paper studies the influence of geometrical parameters of the fused deposition modeling (FDM) - fused filament fabrication (FFF) 3D printing process on printed part strength for open source desktop 3D printers and the most popular material used for that purpose - i.e., polylactic acid (PLA). The study was conducted using a set of different nozzles (0.4, 0.6, and 0.8 mm) and a range of layer heights from the minimum to maximum physical limits of the machine. To assess print strength, a novel assessment method is proposed. A tubular sample is loaded in the weakest direction (across layers) in a three point bending fixture. Mesostructure evaluation through scanning electronic microscopy (SEM) scans of the samples was used to explain the obtained results. We detected a significant influence of geometric process parameters on sample mesostructure, and consequently, on sample strength.
Estimating molar solubility from the Hildebrand-Scott relation employing Hansen solubility parameters (HSP) is widely presumed a valid semi quantitative approach. To test this presumption and to determine quantitatively the inherent accuracy of such a solubility prognosis, l-ascorbic acid (LAA) was treated as an example of a commercially important solute. Analytical calculus and Monte Carlo (MC) simulation were performed for 20 common solvents with total HSP ranging from 14.5 to 33.0 (MPa)0.5 utilizing validated material data. It was found that, due to the uncertainty of the material data used in the calculations, the solubility prediction had a large scattering and, thus, a low precision.