TY - GEN A1 - Greenwood, J. A1 - Schröder, Hartmut A1 - Trubiroha, Peter A1 - Franke, P. A1 - Hufenus, R. T1 - Durability standards for goesynthetics - The tests for weathering and biological resistance T2 - 1st European Geosynthetics Conference (EUROGEO 1) CY - Maastricht, The Netherlands DA - 1996-09-30 KW - Bewitterung KW - Beständigkeit KW - Material, geosynthetisch KW - Normung PY - 1996 SN - 90-5410-836-3 SP - 637 EP - 642 PB - Balkema CY - Rotterdam AN - OPUS4-644 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Trubiroha, P. A1 - Geburtig, Anja A1 - Wachtendorf, Volker T1 - Messung der Temperatur von bestrahlten Oberflächen-Blechdicke beim BST N2 - Die Grenzen der Oberflächentemperaturen von Proben, die der natürlichen oder einer künstlichen Globalstrahlung ausgesetzt sind, können grob mit sog. Schwarzstandard Thermometern BST oder Weißstandard Thermometern WST ermittelt werden [ 1a) ]. Um einige Mängel der aktuellen Konstruktion zu beseitigen, wird ein neues Konzept dieser Thermometer vorgeschlagen, das sie weniger träge und ihre physikalischen Eigenschaften ähnlicher denen einer 5 mm dicken Polymerplatte macht. Es wird auch gezeigt, dass eine Anforderung an die Reaktionszeit von weniger als 1 min in EN 513 unrealistisch ist. T2 - 45. Jahrestagung der GUS CY - Stutensee DA - 16.03.2016 KW - Oberflächentemperatur KW - Strahlungserwärmung KW - IR-Thermometer PY - 2016 SN - 978-3-9816286-7-8 SP - 125 EP - 134 AN - OPUS4-36916 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Trubiroha, P. A1 - Geburtig, Anja A1 - Wachtendorf, Volker ED - Reichert, T. T1 - Surface temperatures of irradiated test specimens - decisive physical quantities and a largely unsolved problem N2 - Temperature is an important parameter in weathering tests. In many (photo-)chemical degradation processes a Variation of the specimen temperature by A t = + 1 °C can cause a Variation of AP(property change) by ± 8%. Since the early eighties it is well known that some types of black panel thermometers can show temperatures that are far below the maximum surface temperature of a black specimen. Although, there were precise requirements for the black coating of the BPT, a replacement by a white coating - depending on the design of the BPT - did not really change the temperature shown by the thermometer. There was no correlation between the BPT and the specimen surface temperature. In Europe and later at ISO the so-called black- and white-standard thermometers BST/WST were introduced. Now, there are BST and WST (ISO) and there are thermally uninsulated and insulated BPT and WPT (ASTM), partly for artificial or for outdoor exposure. And there are other adventurous procedures to determine surface temperatures. The different types of thermometers and different procedures will be discussed and it will be shown that there is no procedure which establishes a correlation between outdoor surface temperatures and surface temperatures in artificial exposure tests. T2 - 6th European weathering symposium Natural and artificial ageing of polymers CY - Bratislava, Slovak Republic DA - 11.09.2013 PY - 2013 SN - 978-3-9813136-8-0 N1 - Serientitel: CEEES Publication – Series title: CEEES Publication IS - 16 SP - 185 EP - 194 AN - OPUS4-31292 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CHAP A1 - Geburtig, Anja A1 - Wachtendorf, Volker A1 - Trubiroha, P. A1 - Zäh, M. A1 - Schönlein, A. A1 - Müller, A. A1 - Vatahska, T. A1 - Manier, G. A1 - Reichert, T. ED - White, C. C. ED - Martin, J. ED - Chapin, J.T. T1 - Polypropylene numerical photoageing simulation by dose-response functions with respect to irradiation and temperature: vipquali project N2 - The aim of the joint project ViPQuali (Virtual Product Qualification) was to describe a component’s ageing behaviour in a given environment, by numerical simulation. Having chosen polypropylene (PP) as the material, which does not show sensitivity to moisture, the relevant weathering parameters of the dose–response functions could be limited to spectral irradiance and temperature. In artificial irradiation tests, for PP plates of varied stabiliser content, spectral sensitivity as well as temperature dependence of irradiation-caused crack formation was quantified. For that purpose, samples were exposed both to artificial weathering tests at various constant temperatures and to spectrally resolved irradiation. The temperature dependence could be modelled by an Arrhenius fit. For fitting the spectral sensitivity, a plateau function was chosen. Subsequently, the stabiliser content was parameterised and extrapolated. The formed dose–response functions were incorporated into a Computational Fluid Dynamics (CFD) software program, simulating the environment of a sample within a Phoenix-exposed IP/DP (Instrument Panel/Door Panel box) box, based on sun position and weather conditions, including radiation interactions. Observed local effects as well as the general ageing advance of PP hats are compared with respect to simulation and experiment. Resulting from this project, for this most simple example of PP of varied stabiliser content, the time to failure can be estimated for each weathering exposure environment with known time-resolved irradiance and temperature conditions. PY - 2015 SN - 978-3-319-06033-0 SN - 978-3-319-06034-7 DO - https://doi.org/10.1007/978-3-319-06034-7_14 SP - Chapter 14, 215 EP - 229 PB - Springer AN - OPUS4-32062 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Trubiroha, P. A1 - Geburtig, Anja A1 - Wachtendorf, Volker ED - Reichert, T. T1 - On the yet unsolved problem of the determination of precise surface temperatures of specimens exposed to natural and artificial weathering N2 - The surface temperature of test specimens exposed to natural and artificial solar radiation are roughly ascertained with black standard thermometers BST and white standard thermometers WST. For the calibration of these thermometers a new European Standard prEN 16465 was published in 2015, describing the well-known contact method and a new contactless method with a pyrometer. It can be confirmed that the temperature calibrations according to the two methods provide different calibration results which are not interchangeable (which is already stated in the scope of this standard). The described contactless method to determine the surface temperature 'under radiation load' results in clearly too high temperatures. This paper tries to highlighting the reasons. T2 - 7th European weathering symposium - Natural and artificial ageing of polymers CY - Naples, Italy DA - 16.09.2015 PY - 2015 SN - 978-3-9816286-6-1 N1 - Serientitel: CEEES Publication – Series title: CEEES Publication IS - 17 SP - 23 EP - 36 AN - OPUS4-34351 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - 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. T1 - Discussion on Weathering Reference Materials N2 - Weathering reference materials (WRMs) are used to characterize the harshness of an exposure, aiming on either reproducibility of a specific exposure or on the comparability between various kinds of natural or artificial weathering exposure. The materials that are used as weathering reference materials differ in their sensitivities (as well as in interactions and interferences of the latter), conditioned by the different processes which lead to the respective property change. It is also essential to take into account the necessary measurement equipment for the respective property change, in order to allow timely intervention. What are the key issues on choosing a weathering reference material? What can be learned from the weathering reference materials, investigated so far? Possibilities and limitations are discussed on the basis of existing weathering reference materials. Conclusions are drawn, for establishing new weathering reference materials. T2 - 9th European Weathering Symposium CY - Basel, Switzerland DA - 18.09.2019 KW - Temperature dependency KW - Weathering KW - Irradiation KW - Spectral sensitivity PY - 2019 SN - 978-3-9818507-5-8 SP - 283 EP - 292 PB - Thomas Würtz Grafik-Design CY - Karlsruhe, Germany AN - OPUS4-49150 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Trubiroha, P. A1 - Geburtig, Anja A1 - Wachtendorf, Volker T1 - 40 Years of Global-UV-Test weathering device: with fluorescent UV lamps and a precise microclimatical control into the future N2 - On the basis of a lot of investigation on the spectral sensitivity of photo degradation of plastics and on the underestimated influence of temperature and relative humidity on degradation processes a new type of weathering device was presented at the end of the seventies: It was a combination of a radiation source with fluorescent UV lamps and a precise climatic cabinet. The radiation emission from a combination of four different types of fluorescent UV lamps was superimposed on the specimen surfaces in the climatic cabinet to match the UV part of solar radiation as closely as possible. Air temperature was controlled to within ± 1 °C, and relative humidity to within ± 5 %RH. As the lamps’ emission is focussed on the UV range almost no radiation heating of the sample occurs. Therefore, the temperature of the sample, which is the quantity of consideration for the degradation, is nearly identical with the chamber’s air temperature, which is the quantity to be controlled. Also, therefore, high humidity can be obtained on the sample surface. The limitation of the emission to the UV range is sufficient for the study of the polymer matrix. This type of weathering device offers an exactness of microclimatic control of the sample’s surface, which should be a standard for weathering devices. Even now it is the only weathering device which generates pure relative humidity (without aerosol). T2 - 9th European Weathering Symposium CY - Basel, Switzerland DA - 18.09.2019 KW - Weathering KW - Irradiation PY - 2019 SN - 978-3-9818507-5-8 SP - 37 EP - 47 PB - Thomas Würtz Grafik-Design CY - Karlsruhe, Germany AN - OPUS4-49151 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Wachtendorf, Volker A1 - Geburtig, Anja A1 - Trubiroha, P. T1 - Application of a newly proposed sensor for effective UV-irradiance for the monitoring of both natural and artificial weathering conditions N2 - To improve on the classic radiometric sensor with radiometric measurement [ ] here a new UV-sensor characteristic for effective UV is proposed that no longer applies equal weighting of spectral irradiation into the UV irradiance value but rather aims at approaching a weighting according to a typical spectral sensitivity curve of polymers. This curve resembles the erythema curve of the skin which is the basis of the UV-index. For the use of the sensor it would be desirable to keep it in the artificial weathering device for the complete weathering test (including rain phases) while the same sensor should also be applicable for the monitoring of outdoor weathering exposures. A first application of this kind of weighted measurement and a comparison with radiometric measurements accompanied with polymer ageing results will be presented together with conclusions for a future effective UV irradiance sensor. T2 - 9th European Weathering Symposium CY - Basel, Switzerland DA - 18.09.2019 KW - UV-irradiance PY - 2019 SN - 978-3-9818507-5-8 VL - 19 SP - 293 EP - 306 AN - OPUS4-49154 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Geburtig, Anja A1 - Wachtendorf, Volker A1 - Trubiroha, P. 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 - Bewitterung KW - Spektrale Bestrahlung KW - Kunststoffe PY - 2017 SN - 978-3-9816286-9-2 SP - 91 EP - 99 AN - OPUS4-39595 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER -