TY - JOUR A1 - Geburtig, Anja A1 - Wachtendorf, Volker A1 - Trubiroha, P. T1 - Exposure response function for a quantitative prediction of weathering caused aging of polyethylene N2 - The exposure response function of the carbonyl formation over the bulk has been determined for a high-density polyethylene of a thickness of 200 μm, which was used as a weathering reference material according to ISO TR 19032. To this end, spectral sensitivity was studied by local measurement of the effect of spectrally dispersed irradiation. Both the exposure device and the methodology of determination are described. The temperature dependency of photooxidation was determined by UV exposure at various temperatures between 23 and 80 °C. Deviations from linearity and thus reciprocity below 40 °C are discussed and assumed to be related to diffusion limitations. An Arrhenius approach –based on data of linear carbonyl formation – has been incorporated into the exposure response function. Using this exposure response function, aging in terms of the distribution of a quantitative property change over a plastic component can be predicted for a specific outdoor location with real chronologic weather data as input for the exposure. Thus, artificial and natural weathering can be linked and compared. The established exposure response function has been validated by outdoor exposure results from the literature. If an estimated diffusion limitation is taken into consideration, calculations and published data are in good agreement. KW - Irradiation KW - Weathering KW - Spectral sensitivity KW - Temperature dependency KW - Spectral irradiation PY - 2019 DO - https://doi.org/10.3139/120.111348 SN - 0025-5300 VL - 61 IS - 6 SP - 517 EP - 526 PB - Carl Hanser Verlag GmbH & Co. KG AN - OPUS4-48295 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Geburtig, Anja A1 - Wachtendorf, Volker A1 - Trubiroha, P. ED - Ziegahn, K.-F. T1 - Quantitative Auswertemöglichkeiten bei der spektralen Bestrahlung – Berechnung des Wirkungsspektrums N2 - Für die Bewertung des Wellenlängeneinflusses auf die Alterungsvorgänge bei der Bestrahlung UV- oder lichtempfindlicher Materialien kann die Methode der spektralen Bestrahlung angewendet werden. Im Prinzip wird dabei das linear dispergierte Spektrum einer Strahlenquelle mit kontinuierlichem Spektrum (z.B. Xe-Lampe) auf eine Probenoberfläche abgebildet, so dass Ort einer Materialänderung und Wellenlänge der Bestrahlung einander zugeordnet werden können. Nachfolgende lokal-auflösende Analysemethoden ermitteln eine Eigenschaftsänderung an einem spezifischen Ort der Probe, aus dem sich dann die Bestrahlungswellenlänge ergibt. Der verwendete Aufbau wird beschrieben. Es wird an einem ausgewählten Beispiel gezeigt, wie durch geeignete Anbindung eines Messsystems zur Bestimmung der spektralen Bestrahlungsstärke und ortsaufgelöste Messungen der Eigenschaftsänderungen eine quantitative Auswertung realisiert werden kann. Der Einfluss nichtlinearer Alterungsverläufe wird diskutiert. Grenzen der Methode werden aufgezeigt und Erweiterungsmöglichkeiten dargestellt. T2 - 46. Jahrestagung der GUS CY - Stutensee-Blankenloch, Germany DA - 22.03.2017 KW - UV-Bestrahlung PY - 2017 SN - 978-3-9816286-9-2 SP - V 8, 91 EP - 99 AN - OPUS4-42578 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - GEN A1 - Wachtendorf, Volker A1 - Geburtig, Anja A1 - Braun, Ulrike A1 - Schartel, Bernhard A1 - Trubiroha, Peter T1 - Influence of weathering on the stability of flame retardancy in polymeric materials for outdoor use T2 - 4th European weathering symposium - Natural and artificial ageing of polymers CY - Budapest, Hungary DA - 2009-09-16 KW - Flame retardancy KW - Weathering KW - Stability KW - Polymeric material KW - Outdoor PY - 2009 SN - 978-3-9810472-8-8 IS - CEEES Publication No. 11 SP - 313 EP - 326 PB - DWS Werbeagentur und Verlag GmbH CY - Karlsruhe AN - OPUS4-20060 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Geburtig, Anja A1 - Kömmling, Anja A1 - Wachtendorf, Volker ED - Reichert, T. T1 - UV-LEDs - a new tool to determine the spectral response N2 - To determine a polymer’s spectral response of photo degradation, two main methods have been established. The so-called “filter technique” uses polychromatic radiation, which is filtered by a set of various sharp cut-on filters. This procedure provides separated reading points of an activation spectrum of the investigated material. With the "spectrographic technique” a specimen is irradiated with pectrally dispersed radiation, locally quasi monochromatically, and the local property changes.are related to the radiant exposure at the respective wavelengths. A third method, the irradiation of specimens with quasi monochromatic radiation behind interference filters, is rarely used. These methods have advantages and disadvantages and therefore, there are limits for conclusions from these spectral data. Concerning the quasi monochromatic Irradiation of specimens the development of new UV radiation sources looks promising. With the rapid development of inexpensive UV Light-emitting diodes (LEDs), new : sources of nearly monochromatic radiation in the UV ränge are available, even down to about 250 nm. To determine the spectral response, the use of such UV-LEDs in TO-18 ) and TO-39 metal cases combines the advantages of low cost and energy efficiency, stable spectral irradiance, temperature.and humidity control, larger specimen areas, and an easy and stable analysis. Combinations of different UV LEDs are also discussed as replacement for xenon arc ' radiation sources, see patent application EP01528388A1. T2 - 5th European weathering symposium - Natural and artificial ageing of polymers CY - Lisbon, Portugal DA - 21.09.2011 KW - UV resistance KW - Weathering KW - Spectral sensitivity KW - Action spectrum KW - UV-LEDs PY - 2011 SN - 978-3-9813136-2-8 N1 - Serientitel: CEEES Publication – Series title: CEEES Publication IS - 15 SP - 77 EP - 86 PB - GUS (Gesellschaft für Umweltsimulation) CY - Pfinztal AN - OPUS4-24396 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - GEN A1 - Simon, Franz-Georg A1 - Geburtig, Anja A1 - Wachtendorf, Volker A1 - Trubiroha, Peter T1 - Materials and the Environment KW - Ecoefficiency KW - Weathering exposure KW - Photodegradation KW - Polymers PY - 2006 SN - 978-3-540-20785-6 IS - Part D / 15.1 SP - 789 EP - 803 PB - Springer CY - Berlin AN - OPUS4-13733 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Trubiroha, P. A1 - Geburtig, Anja A1 - Wachtendorf, Volker T1 - Natural versus artificial weathering of polymers – main differences in climatic conditions N2 - Different climatic conditions and weather variables during natural and artificial exposure of polymers may be reasons for an unsatisfying correlation between the ageing results. Here the main differences are discussed for: - Global solar radiation In weathering devices there is a constant spectral irradiance which is 5 times higher than the averaged spectral irradiance outdoors, which is strongly varying in its diurnal course. Intensified weathering using Fresnel reflectors concentrates only the direct solar radiation with a relatively low UV proportion. Problems of reciprocity may arise from the different mean of irradiance levels. - Temperatures at specimen surfaces. Because of the high irradiance levels mentioned above, artificial exposures may lead to high surface temperatures and large temperature differences between differently coloured specimen surfaces, if the artificial radiation source emits much VIS- and IR-radiation. Outdoors the surface temperature and temperature differences of exposed specimens are influenced by considerably lower irradiance levels and additionally by an effective radiation loss in the night. - Relative humidity at specimen surfaces In weathering devices the relative humidity at specimen surfaces is very low if it is uncontrolled. If controlled by ultrasonic humidifiers or spray nozzles, the additional exposure to water droplets is quite likely. - Wetness on specimen surfaces All usual spray programs prescribed in weathering standards recommend frequently changing of short spray/dry periods and result in total times of wetness (TOW) of the exposed specimen surfaces which is only about 30 % of the outdoor TOW. - Acidic precipitation and bio films Acidic precipitation and bio films are usual outdoor conditions which are only considered in special weathering tests. T2 - 8th European Weathering Symposium CY - Vienna, Austria DA - 20.09.2017 KW - Artificial weathering KW - Natural weathering KW - Weathering parameters PY - 2017 SN - 978-3-9818507-1-0 VL - 18 SP - 63 EP - 75 CY - Karlsruhe AN - OPUS4-42127 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - GEN A1 - Wachtendorf, Volker A1 - Geburtig, Anja ED - Reichert, T. T1 - Using chemiluminescence as sensitive detector of early stages weathering effects on car coatings to shorten weathering tests T2 - 2nd European Weathering Symposium "Natural and Artificial Ageing of Polymers" CY - Gothenburg, Sweden DA - 2006-06-16 KW - Chemiluminescence KW - Artificial weathering KW - Natural weathering KW - Automotive KW - Coating KW - Weathering KW - ADF test KW - Chemilumineszenz KW - Künstliche Alterung KW - Natürliche Alterung KW - Auto KW - Lack PY - 2005 SN - 3-9808382-9-3 VL - 6 SP - 63 EP - 73 PB - Gesellschaft für Umweltsimulation CY - Pfinztal AN - OPUS4-7623 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - JOUR A1 - Braun, Ulrike A1 - Wachtendorf, Volker A1 - Geburtig, Anja A1 - Bahr, Horst A1 - Schartel, Bernhard T1 - Weathering resistance of halogen-free flame retardance in thermoplastics N2 - The influence of weathering on the fire retardancy of polymers is investigated by means of a cone calorimeter test, before and after artificial weathering. The surface degradation was monitored using different techniques (ATR–FTIR, microscopy, colour measurement). Different kinds of polymeric materials were chosen, all as they are used in practice: polycarbonate (PC) blends, polyamide (PA) and polypropylene (PP) flame-retarded with arylphosphate, melamine cyanurate (MC) and intumescent formulation based on ammonium polyphosphate (APP), respectively. All samples show material degradation at the surface due to weathering. No significant weathering influence occurs on the flame retardancy when it is a bulk property, as was observed for aryl phosphates in PC blends and MC in PA. When the fire retardancy is dominated by a surface mechanism, dependence on the duration of weathering is detected: for intumescent formulations based on ammonium APP in PP, a worsening in the formation of the intumescent network was observed. KW - Fire retardancy KW - Weathering resistance KW - Degradation KW - Intumescence KW - Cone calorimeter PY - 2010 DO - https://doi.org/10.1016/j.polymdegradstab.2010.08.020 SN - 0141-3910 SN - 1873-2321 VL - 95 IS - 12 SP - 2421 EP - 2429 PB - Applied Science Publ. CY - London AN - OPUS4-22612 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - GEN A1 - Geburtig, Anja A1 - Wachtendorf, Volker A1 - Trubiroha, Peter T1 - The Principle of Reciprocity and its Limits T2 - 3rd European Weathering Symposium CY - Krakow, Poland DA - 2007-09-12 KW - Spectral sensitivity KW - Weathering KW - UV KW - Action spectra KW - Activation spectra KW - Stabilizer KW - Spektrale Empfindlichkeit KW - Bewitterung KW - Aktivierungsspektrum KW - Wirkungsspektrum KW - Stabilisator PY - 2007 SN - 978-3-9810472-3-3 VL - 8 SP - 243 EP - 258 CY - Pfinztal AN - OPUS4-15925 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - JOUR A1 - Geburtig, Anja A1 - Goedecke, Thomas A1 - Wachtendorf, Volker T1 - Combined impact of ultraviolet and chemical fluids on high-density polyethylene packaging material N2 - To investigate the ageing behaviour of filled plastic containers outdoors, square cuts of the wall of two high-density polyethylene (HDPE) types were exposed to ultraviolet (UV) radiation at their front side and to specific liquid chemicals (de-ionized water, surfactant or White Spirit) at their back. The UV radiant exposure at the front side was 80 MJ/m². To compare the actions of the different exposures, separate dark backside fluid exposures were performed, in parallel. Besides, UV weathering was carried out until a UV radiant exposure of 325 MJ/m², being roughly comparable to outdoor exposure of one year in Northern Australia. An unpigmented HDPE included in the investigation gave no sufficient protection for the White Spirit. In addition, it showed clear degradation after several of these exposures. In combination with the White Spirit, an increase of carbonyl bonds was measured, presumably assignable to degradation products of the White Spirit. For a pigmented HDPE material, with the implemented combined exposures, no relevant damage was observed, within applied the exposure period. KW - Weathering KW - UV KW - HDPE KW - Packaging PY - 2012 DO - https://doi.org/10.1002/pts.959 SN - 0894-3214 VL - 25 IS - 1 SP - 53 EP - 61 PB - Wiley CY - Chichester, UK AN - OPUS4-25417 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - GEN A1 - Geburtig, Anja A1 - Wachtendorf, Volker A1 - Trubiroha, Peter T1 - Referenzmaterialien für Bewitterungsprüfungen T2 - 32. Jahrestagung der GUS, Gesellschaft für Umweltsimulation CY - Pfinztal bei Karlsruhe, Deutschland DA - 2003-03-26 KW - Referenzmaterialien KW - Bewitterung PY - 2003 SN - 3-9808382-1-8 SP - 61 EP - 72 PB - GUS CY - Pfinztal (Berghausen) AN - OPUS4-3360 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER -