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Three established test methods employed for evaluating the abrasion or wear resistance of textile materials were compared to gain deeper insight into the specific damaging mechanisms to better understand a possible comparability of the results of the different tests. The knowledge of these mechanisms is necessary for a systematic development of finishing agents improving the wear resistance of textiles. Martindale, Schopper, and Einlehner tests were used to analyze two different fabrics made of natural (cotton) or synthetic (polyethylene terephthalate) fibers, respectively. Samples were investigated by digital microscopy and scanning electron microscopy to visualize the damage. Damage symptoms are compared and discussed with respect to differences in the damaging mechanisms.
Abreinigbare Schlauchfilter kommen zur Abscheidung von Stäuben sowie staubförmigen Substanzen zum Einsatz. Aufgrund typischer Prozessbedingungen unterliegen sie während ihres Einsatzes thermischer, chemischer und mechanischer Beanspruchung. Das IGF-Projekt Nr. 18307 "Untersuchung der chemischen und thermischen Degradation von abreinigbaren Filtermedien und Verbesserung deren Beständigkeit durch Oberflächenmodifikation" hat mehrere Prüfmethoden verglichen.
The pH value of the human skin is not in the neutral range but is slightly acidic with values of – depending on the body part – 3.5 to 6. This provides a suitable habitat for the commensal skin floral but has a killing effect on some pathogenic micro-organisms and an inactivating effect on some viruses. This protective acid mantle of the skin thus represents a first external protective layer against infestation by pathogens. An appropriate surface pH on textiles can help to minimize the transmission of pathogens through the clothing of healthcare workers while at the same time not exerting a negative influence on the skin’s own flora. In addition, the colonization of e.g. bed linen by pathogenic microorganisms can be reduced. This can also have a positive influence on bacteria-associated odor formation on functional clothing.
The pH value of the human skin is not in the neutral range but is slightly acidic with values of – depending on the body part – 3.5 to 6. This provides a suitable habitat for the commensal skin floral but has a killing effect on some pathogenic micro-organisms and an inactivating effect on some viruses. This protective acid mantle of the skin thus represents a first external protective layer against infestation by pathogens. An appropriate surface pH on textiles can help to minimize the transmission of pathogens through the clothing of healthcare workers while at the same time not exerting a negative influence on the skin’s own flora. In addition, the colonization of e.g. bed linen by pathogenic microorganisms can be reduced. This can also have a positive influence on bacteria-associated odor formation on functional clothing.
Energy consumption by air-conditioning is expansive and leads to the emission of millions of tons of CO2 every year. A promising approach to circumvent this problem is the reflection of solar radiation: Rooms that would not heat up by irradiation will not need to be cooled down. Especially, transparent conductive metal oxides exhibit high infrared (IR) reflectivity and are commonly applied as low-emissivity coatings (low-e coatings). Indium tin oxide (ITO) coatings are the state-of-the-art application, though indium is a rare and expensive resource. This work demonstrates that aluminum-doped zinc oxide (AZO) can be a suitable alternative to ITO for IR-reflection applications. AZO synthesized here exhibits better emissivity to be used as roofing membrane coatings for buildings in comparison to commercially available ITO coatings. AZO particles forming the reflective coating are generated via solvothermal synthesis routes and obtain high conductivity and IR reflectivity without the need of any further post-thermal treatment. Different synthesis parameters were studied, and their effects on both conductive and optical properties of the AZO nanoparticles were evaluated. To this end, a series of characterization methods, especially 27Al-nuclear magnetic resonance spectroscopy (27Al-NMR) analysis, have been conducted for a deeper insight into the particles’ structure to understand the differences in conductivity and optical properties. The optimized AZO nanoparticles were coated on flexible transparent textile-based roofing membranes and tested as low-e coatings. The membranes demonstrated higher thermal reflectance compared with commercial ITO materials with an emissivity value lowered by 16%.
Cleanable bag filter : comparisons of different testing methods of ageing of filter materials
(2019)
Cleanable bag filters are used to separate dust and other airborne particulate systems. Due to typical process conditions, they are subject to thermal, chemical and mechanical stress during use. The main objective of the IGF project no. 18307 "Investigation of the chemical and thermal degradation of cleanable filter media and improvement of their resistance by surface modification", was the development of a valid test method which can reproduce degradation caused by high temperatures and aggressive chemical atmospheres in a practice-oriented but time-saving manner. Within the IGF project, 2 accelerated ageing methods were applied, both of which have the decisive advantage of investigating damage in the gas phase. Many resistances of filter materials are otherwise carried out by immersing the materials in a mostly liquid damage medium at a defined temperature. These resistances are difficult to transfer ageing in the gas phase.
The requirements for textiles differ greatly depending on the area of application, whereby it often does not remain with only one required functionality. For example, in the field of functional clothing or protective clothing/PPE, it is necessary to protect the textile’s wearers from UV radiation. At the same time, self-cleaning effects offer certain advantages in that field. In addition, an antimicrobial effect in functional clothing can reduce the formation of unpleasant odors, and in PPE – especially in the healthcare sector – can contribute to the interruption of the chain of infection. One way to achieve these 3 desired functions in just one finishing step is to immobilize titanium dioxide (TiO2). However, TiO2 is viewed critically for application in the textile sector due to a REACH listing. Another disadvantage is that it only takes effect under UV radiation and is therefore not suitable for indoor use. Alternatively, photocatalysts such as doped zinc oxides (ZnO) can be used, which also exhibit catalytic activity through activation by visible light, which can lead to the killing of microorganisms and the degradation of organic soiling.
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).
Im Rahmen des Forschungsprojektes sollten die Möglichkeiten und Grenzen des Einsatzes von Sol-Gel-Ausrüstung für die Verbesserung der Scheuer-/Abrasionsbeständigkeit für Gewebe aus unterschiedlichen Fasermaterialien untersucht werden. Dabei lag der Schwerpunkt auf Textilien für die Bereiche Bekleidung- /Berufsbekleidung sowie Bezugsstoffe (Möbel, Automotive, Personentransport).
Flame-retardant finishing of cotton fabrics using DOPO functionalized alkoxy- and amido alkoxysilane
(2023)
In the present study, DOPO-based alkoxysilane (DOPO-ETES) and amido alkoxysilane (DOPO-AmdPTES) were synthesized by one-step and without by-products as halogen-free flame retardants. The flame retardants were applied on cotton fabric utilizing sol–gel method and pad-dry-cure finishing process. The flame retardancy, the thermal stability and the combustion ehaviour of treated cotton were evaluated by surface and bottom edge ignition flame test (according to EN ISO 15025), thermogravimetric analysis (TGA) and micro-scale combustion calorimeter (MCC). Unlike CO/DOPO-ETES sample, cotton treated with DOPO-AmdPTES nanosols exhibits self-extinguishing ehaviour with high char residue, an improvement of the LOI value and a significant reduction of the PHRR, HRC and THR compared to pristine cotton. Cotton finished with DOPO-AmdPTES reveals a semi-durability after ten laundering cycles keeping the flame-retardant properties unchanged. According to the results obtained from TGA-FTIR, Py-GC/MS and XPS, the major activity of flame retardant occurs in the condensed phase via catalytic induced char formation as physical barrier along with the activity in the gas phase derived mainly from the dilution effect. The early degradation of CO/DOPO-AmdPTES compared to CO/DOPO-ETES, triggered by the cleavage of the weak bond between P and C=O, as the DFT study indicated, provides the beneficial effect of this flame retardant on the fire resistance of cellulose.