670 Industrielle und handwerkliche Fertigung
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Hardboards (HBs) (wet-process high-density fibreboards) were made in an industrial trial using a binder system consisting of cationic mimosa tannin and laccase or just cationic tannin without any thermosetting adhesive. The boards displayed superior mechanical strength compared to reference boards made with phenol–formaldehyde, easily exceeding the European standards for general-purpose HBs. The thickness swell of most of the boards was slightly greater than the standards would allow, so some optimisation is required in this area. The improved board properties appear to be mainly associated with ionic interactions involving quaternary amino groups in cationic tannin and negatively charged wood fibres rather than to cross-linking of fibres via laccase-assisted formation and coupling of radicals in tannin and fibre lignin.
Sesam öffne Dich
(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 ...
In recent years, machine learning algorithms have made a huge development in performance and applicability in industry and especially maintenance. Their application enables predictive maintenance and thus offers efficiency increases. However, a successful implementation of such solutions still requires high effort in data preparation to obtain the right information, interdisciplinarity in teams as well as a good communication to employees. Here, small and medium sized enterprises (SME) often lack in experience, competence and capacity. This paper presents a systematic and practice-oriented method for an implementation of machine learning solutions for predictive maintenance in SME, which has already been validated.
Functionalised particles are highly requested in materials research, as they can be used as vital components in many advanced applications such as smart materials, functional coatings, drug carrier systems or adsorption materials. In this study, furan-functionalised melamine-formaldehyde (MF) particles were successfully prepared for the first time using an organic sol-gel process. Commercially available 2-Aminomethylfuran (AMF) and 2-Aminomethyl-5-methylfuran (AMMF) were used as modifying agents. In the isolated polymer particles, a melamine (M) to modifying agent ratio of M:AMF mol/mol 2.04:1 and M:AMMF ratio of mol/mol 1.25:1 was used. The obtained particles were isolated in various centrifugation and re-dispersion cycles and analysed using ATR-FT-IR, Raman and solid state 13C NMR spectroscopy, TGA, SEM and DSC measurements. Upon functionalisation the size of the MF particles increased (MF 1.59 µm, 27% CV (coefficient of variation); MF-AMF 2.56 µm, 25% CV; MF-AMMF 2.20 µm, 35% CV). DSC measurements showed that another type of exothermic residual reactivity besides condensation-based curing takes place with the furan-modified particles that is not related to the liberation of volatile compounds. The newly obtained particles are able to undergo Diels-Alder reactions with maleimide groups. The characteristic IR and Raman absorbance bands of the reaction products after the particles were reacted with 4,4′-Diphenylmethanebismaleimide reagent confirm the formation of a Diels-Alder adduct.
Homogeneous and monodispersed furan functionalised melamine-formaldehyde particles were produced. As a precursor, 2-chloro-1,3,5-triazine-2,4-diamine (Mel) was selectively substituted with 2-aminomethyl furan (Fu) units in a convenient one step reaction. The pure reaction product Fu-Mel, which was used without further purification, was reacted with formaldehyde by conventional sol-gel condensation in aqueous medium to yield chemically homogenous, spherically shaped and monodispersed particles. The particles were analysed using ATR-FT-IR, Raman, 1H and 13C NMR spectroscopy, TGA, SEM and DSC measurements. The reactivity of the furan groups located at the particle surface was studied by performing a thermoreversible Diels-Alder cycloaddition reaction with bis-maleimide coupling agents. The formed networks showed thermoreversible behaviour, which was characterised by dynamic IR and DSC measurements.
In academia and industry learning factories are established as close-to-reality learning environments for education and training in the manufacturing domain. Although the approach and concept of existing learning factories is often similar, orientation and design of individual facilities are diverse. So far, there is no structured framework to describe learning factory approaches. In the paper a multidimensional description model is presented in form of a morphology which can be used as a starting point for the structuring and classification of existing learning factory application scenarios as well as a support for the development and improvement of learning factory approaches.
This article provides a general overview of the most promising candidates of bio based materials and deals with the most important issues when it comes to their incorporation into PF resins. Due to their abundance on Earth, much knowledge of lignin-based materials has already been gained and uses of lignin in PF resins have been studied for many decades. Other natural polyphenols that are less frequently considered for impregnation are covered as well, as they do also possess some potential for PF substitution.
Impact of phenolic resin preparation on its properties and its penetration behavior in Kraft paper
(2018)
The core of decorative laminates is generally made of stacked Kraft paper sheets impregnated with a phenolic resin. As the impregnation process in industry is relatively fast, new methods need to be developed to characterize it for different paper-resin systems. Several phenolic resins were synthesized with the same Phenol:Formaldehyde ratio of 1:1.8 and characterized by Fourier Transform Infrared Spectrometry (FTIR) as well as Size-Exclusion Chromatography (SEC). In addition, their viscosities and surface tensions when diluted in methanol to 45% of solid content were measured. The capacity of each resin to penetrate a Kraft paper sheet was characterized using a new method, which measures the conductivities induced by the liquid resin crossing the paper substrate. With this method, crossing times could be measured with a good accuracy. Surprisingly, the results showed that the penetration time of the resin samples is not correlated to the viscosity values, but rather to the surface tension characteristics and the chemical characteristics of paper. Furthermore, some resins had a higher swelling effect on the fibers that delayed the crossing of the liquid through the paper.
High quality decorative laminate panels typically consist of two major types of components: the surface layers comprising décor and overlay papers that are impregnated with melamine-based resins, and the core which is made of stacks of kraft papers impregnated with phenolic (PF) resin. The PF-impregnated layers impart superior hydrolytic stability, mechanical strength and fire-resistance to the composite. The manufacturing involves the complex interplay between resin, paper and impregnation/drying processes. Changes in the input variables cause significant alterations in the process characteristics and adaptations of the used materials and specific process conditions may, in turn, be required. This review summarizes the main variables influencing both processability and technological properties of phenolic resin impregnated papers and laminates produced therefrom. It is aimed at presenting the main influences from the involved components (resin and paper), how these may be controlled during the respective process steps (resin preparation and paper production), how they influence the impregnation and lamination conditions, how they affect specific aspects of paper and laminate performance, and how they interact with each other
(synergies).
Im Rahmen des Forschungsprojektes wurden Ausrüstungsmittel und -verfahren entwickelt, die dem vorbeugenden Schutz von Textilien (insbesondere Bodenbelägen) vor Anschmutzung dienen. Das Verfahren sieht eine kombinierte Ausrüstung von Textilien mit fluorierten Polymeren mit inkorporierten Nanopartikeln (in erster Linie: SiO2) zur Erhöhung der Rauhigkeit vor. Es wurden kommerziell erhältliche Hydrophobiermittel (Fluorcarbon- oder Kohlenwasserstoff-basierte Polymere) in Kombination mit SiO2-Nanopartikeln auf Teppiche aufgebracht und hinsichtlich eines Anschmutzens - z.B. durch Kaffee, KoolAid, Rotwein, AATCC Standard Soil, schwarze Schuhcreme - untersucht. Hierzu wurden die scherempfindlichen Dispersionen der Hydrophobiermittel mit neu entwickelten angepassten Dispersionen von SiO2-Nanopartikel versetzt. Die SiO2-Nanopartikel wurden mit systematisch variierten Größen von 10-1.000 nm synthetisiert, umfassend charakterisiert und mit Hilfe von neu entwickelten Fluormethacrylat-Copolymeren mit reaktiven Gruppen (Maleinsäure-, Itaconsäure- oder Citraconsäureanhydrid) und hydrophilen Modifiern (Alkohol- oder Amingruppen) stabilisiert. Die resultierenden Polymer-Teilchen-Dispersionen konnten aus wässrigen oder ethanolisch-wässrigen Lösungen auf Textilien (PA-, PES- oder WO-Teppiche und -Gewebe) appliziert werden. Weiterhin wurden auch die neu entwickelten Fluorcarbon-Polymere hinsichtlich ihrer Anwendung getestet. In Anschmutzungsversuchen wiesen die so ausgerüsteten Teppiche ein geringeres Anschmutzen durch Standardschmutz als Referenzmaterialien auf. Die Beständigkeit der Ausrüstung bei mechanischer Belastung konnte durch Vernetzung der Polymere auf dem Textilmaterial verbessert werden. Für PA 6- und PA 6.6-Teppiche wurden die besten Ergebnisse hinsichtlich eines geringeren Anschmutzens durch wasserlösliche Verschmutzungen (Kaffee, Rotwein, KoolAid) im Vergleich zu unbehandelten Teppichen ermittelt, wenn die Ausrüstung mit Fluorpolymer-stabilisierten SiO2-Nanopartikeln oder mit einer kombinierten Dispersion aus SiO2-Partikeln und Fluorcarbonharzen vorgenommen wurde. Eine im Vergleich zu unbehandelten Teppichen weniger starke Anschmutzung durch AATCC Standard Soil (DIN EN ISO 11378-2) wurde für mit SiO2-Partikeln behandelte PA 6-Teppiche ermittelt. Hydrophobe Anschmutzungen (z.B. schwarze Schuhcreme) konnten von mit Fluorcarbon-Polymeren ausgerüsteten Teppichen am besten entfernt werden. Die Kombination von SiO2-Partikeln mit Fluorcarbon-Polymeren erwies sich meist als günstiger als die alleinige Behandlung mit Fluorcarbonharzen. Ein Zusammenhang zwischen der Größe der Nanopartikel, der Abrasionsbeständigkeit und den Reinigungseigenschaften wurde festgestellt, und es konnte gezeigt werden, dass FC-Nanopartikel-Composites diese verbessern. Die mechanische Beständigkeit der Antischmutzausrüstung mit SiO2-Nanopartikeln und Fluorcarbon-Polymeren auf Polyamidteppichen wurde z.B. durch Hexapod-Trommelbeanspruchung (nach ISO 10361) geprüft. Durch REM, IR-Spektroskopie und den Wassertropfentest wurde nach 4.000 und auch nach 12.000 Touren noch eine intakte Beschichtung nachgewiesen. Mit Vernetzern, die das Polymer selbst, das Polymer mit Partikeln und/oder der Substratoberfläche vernetzen, konnte z.T. die Abrasionsbeständigkeit verbessert werden (hier müssen ggf. optimalere Vernetzer gesucht werden).