TY - CONF A1 - Goedecke, Thomas A1 - Menrad, Andreas A1 - Gründer, Klaus-Peter T1 - Vergleich Experiment und numerische Simulation bei der hydraulischen Innendruckprüfung von Kunststoffverpackungen T2 - 43. Jahrestagung der Gesellschaft für Umweltsimulation e. V. (GUS) CY - Stutensee, Deutschland DA - 2014-03-26 PY - 2014 AN - OPUS4-32673 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Schlick-Hasper, Eva A1 - Seidler, Oliver A1 - Goedecke, Thomas A1 - Kraume, M. T1 - Helium leak testing of dangerous goods packagings N2 - The International Dangerous Goods Regulations prescribe the immersion under water method (“bubble test”) as standard method for the leakproofness test of dangerous goods packagings. But this test procedure acts as a test method for leak localisation, not for quantitative leakage rates measurement. Additionally, the sensitivity in detecting leaks of small diameters is restricted, depending on the test liquid and the test pressure. The bubble test is not suitable for a comparison with quantitative limit leakage rates based on realistic transport conditions. This is especially important when estimating the risk of the formation of an explosive atmosphere during the intercontinental carriage of dangerous goods packagings in freight containers. To compare measured leakage rates with limit leakage rates, a quantitative leak testing procedure is required. Therefore a new approach for dangerous goods packagings is implemented: The pressure technique by accumulation using Helium as a tracer gas. This work presents the test equipment necessary for the quantitative measurement of Helium leakage rates through closures of different kinds of dangerous goods packagings. The essential steps to achieve good repeatable results are: A controlled Helium filling process to reach a defined test pressure in the test sample, a sufficient homogenisation of the Helium-air-mixture inside the test sample and the ensuring of a constant pressure level of the test sample during the test. The Helium loss rate of the accumulation chamber has to be measured separately to receive a correction factor for the measured leakage rates. Different constructional measures are introduced to prevent a disturbing influence of the Helium leakage rate of the filling valves on the measurement results. Methods to estimate the disturbing effect of Helium permeation through permeable parts of the test sample are also presented. As a supporting method for the experimental investigations the Helium sniffer test can be applied. This practical application-oriented advice can enable other users to establish a pressure technique by accumulation for their own technical field. T2 - 19th World Conference on Non-Destructive Testing CY - Munich, Germany DA - 13.06.2016 KW - Gefahrgutverpackungen KW - Dichtheit KW - Helium KW - Überdruckverfahren PY - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:b43-366358 SN - 978-3-940283-78-8 VL - 158 SP - p175, 1 EP - 10 AN - OPUS4-36635 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - JOUR A1 - Schlick-Hasper, Eva A1 - Goedecke, Thomas A1 - Kraume, M. T1 - Sift-proofness of Dangerous Goods Packagings - An Incompletely Defined Requirement N2 - Sift-proofness is a requirement for different types of dangerous goods packagings for solid substances according to the international Dangerous Goods Regulations. In these regulations, a sift-proof packaging is defined as a packaging that is completely impermeable to dry contents. This means indirectly that absolutely no mass transport of solid substances is allowed. Moreover, this requirement applies both to the original filling substance and to fine solid material generated during transport. Further specifications, test conditions or tolerable limit values are not given. This is in contrast to physical principles and the usual practice in other fields of technology in which sift-proofness is relevant. This paper shows the necessary steps for how the requirements for sift-proofness of dangerous goods packagings can be defined more precisely. Physical basics of the term ‘sift-proofness’ are explained. A qualitative as well as a quantitative approach is possible. In any case, it is essential to carry out appropriate vibration tests to assess the siftproofness. There is a need for systematical investigations of the sift-proofness of dangerous goods packagings. KW - Dangerous goods packagings KW - Sift-proofness KW - Leak proofness KW - Dust KW - Particles PY - 2018 U6 - https://doi.org/10.1002/pts.2307 SN - 0894-3214 SN - 1099-1522 VL - 31 IS - 5 SP - 235 EP - 245 PB - Wiley & Sons, Ltd. AN - OPUS4-44763 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - JOUR A1 - Schlick-Hasper, Eva A1 - Goedecke, Thomas A1 - Ackermann, M. A1 - Senkel, U. T1 - Staubdichtheit von Gefahrgutsäcken und -FIBC - Überblick über Probleme in der derzeitigen Transportpraxis N2 - Gemäß den internationalen Gefahrgutvorschriften müssen Säcke und flexible Großpackmittel (Flexible Intermediate Bulk Container - FIBC) für feste Gefahrgüter staubdicht sein. In der Praxis der stichpunktartigen Kontrollen von Gefahrguttransporten durch die Autobahnpolizei Münster werden jedoch immer wieder Austritte von pulverförmigen oder körnigen Gefahrgütern aus eigentlich intakten Säcken und FIBC detektiert. Es wird ein Überblick über die im Jahr 2019 festgestellten Gefahrgutaustritte aus diesen Arten von Gefahrgutverpackungen gegeben. Darauf aufbauend wird eine systematische Einordnung hinsichtlich betroffener Bauarten und eine Diskussion möglicher Lösungsansätze vorgenommen. KW - Gefahrgutverpackungen KW - Staubdichtheit KW - Gefahrgutsäcke KW - FIBC KW - Gefahrgutkontrollen PY - 2020 SN - 2191-007 VL - 10 IS - 3 SP - 10 EP - 15 PB - VDI Fachmedien GmbH & Co. KG CY - Düsseldorf AN - OPUS4-50717 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Goedecke, Thomas T1 - Gefahrgutverpackungen für UN 2814 T2 - EBOLA: Sicherer Umgang mit infektiösen Abfällen - Informationsveranstaltung vom RKI, UBA, BAuA und BAM CY - BAM, Berlin DA - 2015-02-23 PY - 2015 AN - OPUS4-33299 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - JOUR A1 - Menrad, Andreas A1 - Goedecke, Thomas A1 - Wagner, M.H. T1 - Drop test of plastic packagings - Correlation with material parameters and change of packaging behaviour after impact of standard liquids N2 - A guided drop test was performed to achieve a defined and reproducible impact orientation of jerrycans. The drop heights where 50% of the jerrycans experienced a failure from a crack where fluid can escape (50% failure drop height) were compared among jerrycans made of four different materials, in their original state and preconditioned with standard liquids. To analyse the impact of only elevated temperatures, the packages were preconditioned for 21?days at 40°C without the use of chemicals. The 50% failure drop height was compared by using Young's modulus; the notched impact strength (NIS) of specimen cut from plates which were manufactured by compression moulding and the notched tensile impact strength of specimen cut-outs of the jerrycans' side walls. The NIS depends highly on the thermal preconditioning of the plates being manufactured by compression moulding. A trend can be seen that a higher Young's modulus, a higher NIS and a higher notched tensile impact strength result in a higher 50% failure drop height, but the values are spread. The influence of the wall thickness cannot be neglected. The change of the 50% failure drop height in regard to the preconditioning at 40°C with and without nitric acid was compared in terms of their resistance to molecular degradation, density and degree of crystallinity. The conditioning at elevated temperature causes post-crystallization. It was shown that the resistance to molecular degradation determined on pressed plates correlates with the change of the 50% failure drop height after pre-storage with nitric acid. KW - HDPE KW - Drop test KW - Notched impact strength KW - Tensile impact strength KW - Molecular degradation PY - 2014 U6 - https://doi.org/10.1002/pts.2042 SN - 0894-3214 VL - 27 IS - 6 SP - 479 EP - 493 PB - Wiley CY - Chichester, UK AN - OPUS4-32640 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Goedecke, Thomas T1 - DANGEROUS GOODS PACKAGINGS FOR UN 2814 T2 - 2015 ISTA-CHINA PACKAGING SYMPOSIUM CY - Xiamen City, Fujian Province, China DA - 2015-10-21 PY - 2015 AN - OPUS4-35029 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - JOUR A1 - Schlick-Hasper, Eva A1 - Seidler, Oliver A1 - Goedecke, Thomas A1 - Kraume, M. T1 - Measurement of helium leakage rates through closures of dangerous goods packagings for the assessment of potentially explosive mixtures in freight containers N2 - The objective was to find out whether an explosive atmosphere can be created in a freight container by gaseous leakage flow of vapour-air-mixture through leaks in the closures of dangerous goods packagings filled with hazardous liquids. Because of high temperatures during intercontinental carriage, there is a gauge pressure in the free vapour phase inside the packagings which can cause a gaseous leakage flow. Two different methods were applied: Helium limit leakage rates for 23 quantitatively important hazardous liquids concerning their lower explosion limit (LEL) were calculated for a worst case transport scenario (Method 1). Helium leakage rates of five closure types of dangerous goods packagings with volumes of approximately 6 l were measured using the pressure technique by accumulation (Method 2). All types of closures of steel packagings were uncritical. The maximum measured leakage was 33% of the limit leakage rate. The leakage rates of screw closures of plastic jerricans can exceed the LEL if there are production-related patterns such as non-concentricity of the closures and flashes on the neck. Especially for plastic packagings it is important to minimize gaseous leakage flow, because an explosive atmosphere can also be reached by permeation of the individual filling substance or by a combination of both effects. For the assessment of potentially explosive mixtures in freight containers, both mass transfer mechanisms have to be taken into account. KW - Gefahrgutverpackungen KW - Dichtheit KW - Leckagerate KW - Überdruck KW - Frachtcontainer KW - Untere Explosionsgrenze KW - Dangerous goods packagings KW - Leakproofness KW - Leakage rate KW - Gauge pressure KW - Leak testing KW - Lower explosion limit PY - 2015 U6 - https://doi.org/10.1002/pts.2151 SN - 0894-3214 VL - 28 IS - 11 SP - 959 EP - 985 PB - Wiley & Sons, Ltd. CY - Chichester, UK AN - OPUS4-34967 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Geburtig, Anja A1 - Wachtendorf, Volker A1 - Goedecke, Thomas ED - Ziegahn, K.-F. T1 - Beanspruchung von HDPE-Verpackungsproben durch UV-Strahlung und Salpetersäure N2 - Transport und Lagerung flüssiger Chemikalien erfolgen häufig in HDPE-Behältern. Diese Behälter müssen Bauteilprüfungen bestehen, die mechanische und chemische Beanspruchungen kombinieren. UV-Beanspruchungen sind kein Bestandteil der Zulassungsprüfungen; gefordert wird aber eine ausreichende UV-Stabilisierung. Inwiefern diese UV-Stabilisierung aber abhängig vom jeweiligen Füllgut ist, soll hier untersucht werden. Vorgestellt wird der experimentelle Aufbau zur kombinierten Beanspruchung von Kunststoffproben durch UV-Strahlung und flüssige Chemikalien. Aufgrund des Gefährdungspotenzials sind dabei entsprechende Sicherheitsvorgaben einzuhalten. Ziel ist die Bewertung synergistischer Effekte beider Einzelbeanspruchungen. Die Wirksamkeit verschiedener Stabilisierungskonzepte bei Beanspruchung durch 55 %-ige Salpetersäure wird beleuchtet. Es wird anschaulich gezeigt, dass nur pigmentiertes HDPE ausreichende Stabilität aufweist. T2 - 43. Jahrestagung der GUS 2014 CY - Stutensee-Blankenloch, Germany DA - 26.03.2014 PY - 2014 SN - 978-3-9816286-0-9 SP - Kap. V 5, 45 EP - 51 AN - OPUS4-31136 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - JOUR A1 - Schlick-Hasper, Eva A1 - Neitsch, Marcel A1 - Goedecke, Thomas T1 - Industrial leak testing of dangerous goods packagings N2 - The Dangerous Goods Regulations currently do not include limit leakage rates orsensitivity requirements for industrial leak testing procedures that are equivalent tothe bubble test, which is the prescribed test method for design type testing ofdangerous goods packagings. During series production of such packagings, variousmethods are used, which often do not meet the requirements of the bubble test withregard to important criteria.Sensitivity, flow direction, pressure level and automatability are particularly importantfactors when selecting a suitable industrial leak testing method.The following methods are in principle both suitable and equally effective as thebubble test: pressure rise test (vacuum chamber), ultrasonic bubble leak detectionand gas detection methods (pressure technique by accumulation and vacuumchamber technique).To ensure a uniform test level during design type testing and production line leaktesting and therefore a comparable safety level as required by the Dangerous GoodsRegulations, it is necessary to include a more precise specification in these regula-tions. This requires, on the one hand, information about the sensitivity of the bubbletest and, on the other hand, the inclusion of a list of suitable, equally effective indus-trial test methods with their specific boundary conditions. T2 - 22nd IAPRI World Packaging CY - Online meeting KW - Bubble test KW - Dangerous goods packagings KW - Industrial leak testing KW - Leakproofness test KW - Series production PY - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:b43-507521 SP - 1 EP - 14 PB - Wiley AN - OPUS4-50752 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Schlick-Hasper, Eva A1 - Schneider, Uwe A1 - Goedecke, Thomas A1 - Kraume, M. T1 - Durchströmung von Glaskapillaren mit Lachgas und Helium N2 - Distickstoffmonoxid (N2O, Lachgas) und Helium (He) sind gängige Prüfgase für Dichtheitsprüfungen. Die einfachste Leckgeometrie stellt ein ideal zylindrisches Rohr dar. Es wurden Glaskapillaren verschiedener Abmessungen mit Lachgas und Helium durchströmt. Der Überdruck am Kapillareingang lag zwischen 100 mbar und 400 mbar. Es handelte sich um vier annähernd zylindrische Glaskapillaren mit den mittleren Durchmessern: Kapillare 1: ca. 102 μm; Kapillare 2: ca. 71 μm; Kapillare 3B: ca. 49 μm; Kapillare 4: ca. 53 μm. Zudem wurde eine nichtzylindrische Kapillare geprüft (Kapillare 3A). Die Kapillaren 1, 2 und 3B wurden mit beiden Prüfgasen getestet. Kapillare 3A wurde nur mit Lachgas durchströmt, Kapillare 4 nur mit Helium. Für die Messung der Leckageraten kam das Überdruckverfahren mit Ansammlung (Verfahren B3 nach DIN EN 1779: 1999-10) zum Einsatz. Als Detektor für Lachgas diente der Lachgasdetektor Maihak Unor 6 N, für Helium der Leckdetektor T-Guard der Firma Inficon. Es wurden verschiedene Theorieansätze verglichen. Beim Theorieansatz Ib erfolgte die Umrechnung der Lachgas-Messwerte auf die Helium-Messwerte und umgekehrt anhand der Druck-, Temperatur- und Gasartabhängigkeit der Leckagerate für laminar-viskose Gasströmung (DIN EN 1779: 1999-10; DGZfP-Richtlinie DP2: 2009-12). Beim Theorieansatz II wurde die Berechnung der Leckagerate für die laminar-viskose Rohrströmung unter der Annahme einer ideal zylindrischen Kapillare durchgeführt. Zusätzlich wurde mit „ANSYS Fluent“ eine CFD-Simulation vorgenommen. Bei Kapillare 3A wurde eine Serienschaltung der Strömungsleitwerte von Rohr und Düse angesetzt. Bei Anwendung des Ansatzes Ib werden bei Umrechnung der Helium-Messwerte auf Lachgas die Lachgas-Messwerte überschätzt. Umgekehrt werden bei der Umrechnung der Lachgas-Messwerte auf Helium die Helium-Messwerte unterschätzt. Bei Analyse der Einlauflängen der Rohrdurchströmung ist festzustellen, dass diese für Lachgas stets größer als für Helium sind. Bei Lachgas liegt daher für einige Messwerte noch keine ausgebildete laminare Rohrströmung vor. Einlaufeffekte können somit nicht vernachlässigt werden. Als Fazit ergibt sich, dass bei Verwendung von Helium als Prüfgas und Umrechnung der Helium-Messwerte auf Lachgas die Lachgas-Leckageraten sicherheitstechnisch konservativ abgeschätzt werden. T2 - 7. DGZfP-Fachseminar Dichtheitsprüfung und Lecksuche CY - Dortmund, Germany DA - 20.09.2016 KW - Glaskapillaren KW - Lachgas KW - Helium KW - Laminare Strömung PY - 2017 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:b43-396659 UR - http://www.ndt.net/search/docs.php3?MainSource=215 SN - 1435-4934 VL - 22 IS - 4 SP - Vortrag 5, 1 EP - 15 AN - OPUS4-39665 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - JOUR A1 - Schlick-Hasper, Eva A1 - Eiben, Mario A1 - Drousch, Björn A1 - Heinrich, Annika A1 - Goedecke, Thomas A1 - Kraume, M. T1 - Influence of the length of the internal sleeve valve on the release of powdery substances from the closures of valved bags for dangerous goods N2 - In practice, checks on dangerous goods transports often detect leaks of powdered dangerous goods from valved bags. In this work, the influence factors of a sudden release of powdery substances from the valves of valved bags were investigated. Drop tests were performed on paper bags of UN design type 5M2 with internal sleeve valve using 2 different powdery substances (Esplas H130 and zinc oxide “Rotsiegel”). The internal sleeve valves of all test samples were not sift‐proof with respect to both filling substances. For almost all test samples, the Esplas H130 powder already leaked out of pasted joints during manual filling. This is a contradiction to the requirement in UN 6.1.4.18.1, according to which closures and joints of paper bags 5M2 should be sift‐proof. In the drop tests, longer valve lengths had a greater sealing effect for both filling substances (for filling degrees of at least 95% and for test samples which had already been mechanically loaded). As an extreme example, at the drop height of 1.20 m and a filling degree of 100%, the released amount of zinc oxide powder from a 10‐cm‐long valve was about 16 times higher than from a valve length of 12.5 cm. The valve length is therefore a safety‐relevant parameter and should be specified by the manufacturer. To ensure that only filling goods with similar physical properties in comparison with the test substance are used for valved bags, the user must be informed of the particle size of the test substance. KW - Sacks KW - Bags KW - Dangerous goods packagings KW - Drop test KW - Sift-proofness PY - 2018 U6 - https://doi.org/10.1002/pts.2377 SN - 0894-3214 SN - 1099-1522 VL - 31 IS - 8 SP - 532 EP - 544 PB - John Wiley & Sons, Ltd. AN - OPUS4-45835 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - JOUR A1 - Schlick-Hasper, Eva A1 - Goedecke, Thomas A1 - Kraume, M. T1 - Investigations Concerning the Maximum Filling Degree of Dangerous Goods Packagings for Hazardous Liquids N2 - The dangerous goods regulations UN/ADR 6.1.5.5.4 (a) prescribe a maximum filling degree for determining the test pressure for the hydraulic pressure test by real measurements. The assumption is that the maximum filling degree of the liquid phase is the worst case concerning the gauge pressure. Therefore, the main objective of this study is to investigate the effect of the filling degree on the gauge pressure. Gauge pressure measurements and calculations for different substances were carried out at different filling degrees for a steel drum and a steel jerrican (heating up from 15°C to 55°C). The assumption that the maximum filling degree is the most critical is only valid for relatively rigid packagings: If the relative expansion of the packaging is smaller than the volume increase of the liquid phase due to heating up, the gauge pressure increases with increasing filling degree. But the opposite is true for relatively flexible packagings: If the relative expansion of the packaging exceeds the relative volume expansion of the liquid, the gauge pressure increases for decreasing filling degrees. The current regulations for the hydraulic test pressure determination at a maximum filing degree do not lead to the intended safety level. For a lower level than the maximum filling degree, the prescribed safety factor of 1.5 is not respected. Under transport conditions, it is possible that the inner gauge pressure exceeds the test pressure. This can result in a failure of the packaging. There is a need to reconsider the regulations. KW - Relative expansion KW - Dangerous Goods packagings KW - Filling degree KW - Gauge pressure KW - Overpressure PY - 2017 U6 - https://doi.org/10.1002/pts.2209 SN - 0894-3214 VL - 30 IS - 8 SP - 461 EP - 475 PB - Wiley & Sons, Ltd. AN - OPUS4-41341 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Schlick-Hasper, Eva A1 - Goedecke, Thomas A1 - Ackermann, M. A1 - Senkel, U. T1 - Staubdichtheit von Säcken und FIBC für feste Gefahrgüter - Eine kritische Betrachtung der derzeitigen Regelsetzung und Transportpraxis N2 - In den internationalen Gefahrgutvorschriften ist vorgeschrieben, dass Säcke und flexible Großpackmittel (Flexible Intermediate Bulk Container – FIBC) staubdicht sein müssen. Eine quantitative Definition des Terminus Staubdichtheit, wie in anderen Technikgebieten üblich, ist jedoch nicht gegeben. Auch geeignete Prüfverfahren zum Nachweis der Staubdichtheit sind in den Vorschriften nicht genannt. In der Praxis der stichpunkartigen Kontrollen von Gefahrguttransporten durch die Schwerlastgruppe der Autobahnpolizei Münster werden immer wieder Austritte von pulverförmigen oder körnigen Gefahrgütern aus eigentlich intakten Säcken und FIBC detektiert. Es wird ein Überblick über die im Jahr 2018 festgestellten Gefahrgutaustritte aus diesen Gefahrgutverpackungen sowie eine systematische Einordnung hinsichtlich betroffener Bauarten und möglicher Ursachen gegeben. Bei der Stofffreisetzung aus intakten Gefahrgutverpackungen liegt ein mechanischer Transport von Partikeln durch Leckkanäle, z. B. im Verschluss-, Naht- oder Wandungsbereich, vor. Generell kommen zwei Freisetzungswege in Frage: Einerseits eine Langzeit-Freisetzung während des Transports, hervorgerufen durch eine kombinierte Wirkung von Stapellast des Füllguts und Transportvibrationen; andererseits eine stoßartige Freisetzung. Auf Grundlage von durchgeführten Untersuchungen hinsichtlich der stoßartigen Freisetzung pulverförmiger Stoffe aus Gefahrgutsäcken werden erste Lösungsansätze hin zu einer Verbesserung der Staubdichtheit von Gefahrgutsäcken und -FIBC vorgestellt. Es wird ein Ausblick auf nachfolgende Arbeiten gegeben. T2 - 48. Jahrestagung der GUS 2019 CY - Stutensee, Ortsteil Blankenloch, Germany DA - 27.03.2019 KW - Gefahrgutverpackungen KW - Staubdichtheit KW - Säcke KW - FIBC PY - 2019 SN - 978-3-9818507-3-4 SP - 157 EP - 170 AN - OPUS4-47691 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - JOUR A1 - Schlick-Hasper, Eva A1 - Goedecke, Thomas A1 - Kraume, M. T1 - Leakproofness of dangerous goods packagings - comparison of worst-case limit leakage rates and sensitivity of the bubble test N2 - This work focuses on the question if the bubble test prescribed in the Dangerous Goods Regulations has sufficient sensitivity to detect leakage rates, which could result in the formation of explosive atmospheres during transport. The sensitivity of the bubble test is not directly comparable with other leak testing methods because of its different flow conditions. Therefore, a normalized minimum detectable leakage rate under Helium test conditions is calculated for the bubble test. This sensitivity of the bubble test under reference conditions is compared with limit leakage rates for a worst‐case transport scenario. The sensitivity of the bubble test is not sufficient to prove the limit leakage rates for 6‐L packagings. The formation of explosive vapour‐air‐mixtures cannot be excluded. Therefore, more sensitive leak testing methods should be considered for smaller packaging design types. KW - Bubble test KW - Dangerous goods packagings KW - Explosive atmosphere KW - Leakproofness KW - Limit leakage rates PY - 2019 U6 - https://doi.org/10.1002/pts.2435 VL - 32 IS - 6 SP - 279 EP - 285 PB - Wiley AN - OPUS4-47998 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - JOUR A1 - Eiben, Mario A1 - Schmidt, Anita A1 - Menrad, Andreas A1 - Jahnke, Wolfgang A1 - Goedecke, Thomas T1 - Validation of an alternative method for testing the chemical compatibility of liquids with polyethylene packagings for dangerous goods N2 - Safety risks may ensue when the chemicals contained in polyethylene packagingsa age and damage them. To prevent subsequent accidents, the European Dangerous Goods Regulations have laid down requirements for testing the chemical compatibility of liquid dangerous goods transported in polyethylene packagings. The test procedures include 6 months in which the chemical is prestored in the packaging. After this time, the respective design-type tests are performed. Alternative methods with so-called standard liquids, simulating the different types of damaging effects, are also possible. If a packaging has successfully passed the design type tests with a standard liquid, other dangerous goods may also be transported in this packaging, as long as it is demonstrated that they have a less damaging effect than the standard liquid. However, in this area there is only little information and research available. A new potentially effective and time-saving method for comparing the stress crack damaging influence of liquids with standard liquids was proposed by a major German chemical company. The validation of this method, which was carried out on two polyethylene materials, showed the general applicability of the method. Two kinds of wetting solutions were applied to simulate cracking under stress. The influence of prestorage, test temperatures, wetting agents and material was examined. FEM calculations were carried out to ascertain the influence of the sample shape. KW - Dangerous goods packagings KW - Chemical compatibility testing KW - HDPE KW - Environmental stress cracking KW - ESCR PY - 2013 U6 - https://doi.org/10.1002/pts.1989 SN - 0894-3214 VL - 26 IS - 7 SP - 385 EP - 398 PB - Wiley CY - Chichester, UK AN - OPUS4-29400 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - JOUR A1 - Schmidt, Anita A1 - Stephan, Martina A1 - Goedecke, Thomas T1 - Verfahrensregeln im neuen Gewand - BAM-GGR - Die BAM-Gefahrgutregel 001 zur Qualitätssicherung der Produktion von Gefahrgutverpackungen und IBC wurde überarbeitet und neu gefasst N2 - Gefahrgutverpackungen, die von der BAM Bundesanstalt für Materialforschung und -prüfung zugelassen werden sollen, müssen nach einem von ihr anerkannten Qualitätssicherungsprogramm (QSP) hergestellt und überwacht werden. Diese QSP-Anerkennung ist neben einer bestandenen Bauartprüfung eine Voraussetzung für das Erlangen und die Gültigkeit der Bauartzulassung. KW - Gefahrgut KW - Verpackungen KW - IBC KW - BAM-GGR 001 KW - Qualitätssicherung PY - 2014 SN - 0944-6117 VL - 4 SP - 30 EP - 31 PB - Vogel CY - München AN - OPUS4-32648 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - JOUR A1 - Geburtig, Anja A1 - Wachtendorf, Volker A1 - Schmidt, Anita A1 - Goedecke, Thomas T1 - Combined impact of UV radiation and nitric acid on HDPE containers during outdoor exposure T1 - Kombinierte Einwirkung von UV-Strahlung und Salpetersäure auf HDPE-Behälter bei der Freibewitterung N2 - Unpigmented HDPE jerrycans filled with nitric acid (55%) and water respectively had been exposed to outdoor conditions for one Berlin summer season. As both liquids underwent equal temperature progression, exposure effects of UV radiation and nitric acid as well as of their combination can be separated and compared. On the basis of various property changes after these exposures, synergistic action is evaluated and compared to a damaged Intermediate Bulk Container (IBC) from a transport accident. It is found that carbonyl formation goes along with lightness increase in color measurement due to microcracking and with a worsening in mechanical behavior, all of them showing synergistic effects of UV and nitric acid exposure. In contrast, embedding nitrogen compounds goes along with yellowing of the material but cannot be correlated to oxidation. The reason for intensified damaging is the decomposition of the 55-percent nitric acid and formation of nitrogen oxides even at ambient temperatures, caused by UV radiation. Thus, damaging effects become similar to those caused by fuming nitric acid exposure at temperatures above 60 °C, with the result of strong oxidative degradation of the polyethylene. In contrast, exclusive exposure to the 55-percent nitric acid at 40 °C does not cause any failure. It can therefore be assumed that also the damaged IBC had been exposed to both UV radiation and nitric acid, probably outdoors. KW - Polyethylene KW - Nitric acid KW - UV radiation KW - Outdoor weathering KW - Resistance PY - 2018 U6 - https://doi.org/10.3139/120.111148 SN - 0025-5300 VL - 60 IS - 3 SP - 257 EP - 264 PB - Carl Hanser Verlag CY - München AN - OPUS4-44567 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - JOUR A1 - Schlick-Hasper, Eva A1 - Bethke, John A1 - Goedecke, Thomas T1 - How To Measure The Angle of Repose of Hazardous Substances in the Test Centers for Dangerous Goods Packagings N2 - The flow properties of powdery or granular filling substances for dangerous goods packagings are safety-relevant parameters. To specify the flow behavior, the angle of repose is measured in the recognized test centers for dangerous goods packagings in Germany. Previous investigations performed on non-hazardous substances revealed that some of the methods currently used have disadvantages in application. Additionally, for occupational health and safety reasons, it was generally viewed critically to carry out measurements of the angle of repose for dangerous goods at all. Instead, the dimensionless Hausner ratio to describe the flow behavior was proposed. In this work, the investigations were extended to real hazardous substances to concretize the assessment. Five exemplary hazardous substances were tested for their angle of repose using the methods commonly applied in the test centers. The Hausner ratio was also determined. In addition, the influence of a different climatic preconditioning on the angle of repose measurement was examined using three selected non-hazardous bulk materials. The results show that the measurement of the angle of repose is not fundamentally excluded for dangerous goods. However, for reasons of applicability, repeatability and occupational health and safety, only the ISO method can be applied for dangerous filling substances. This method provides conservative results regarding a safety-related evaluation of flow properties for the transport of dangerous goods. In principle, both the ISO method and the determination of the Hausner ratio can be used for dangerous goods. It is also essential especially with finely powdered filling goods, to carry out controlled preconditioning. KW - Angle of repose KW - Flow properties KW - Flowability KW - Hausner ratio KW - Powders KW - Sift-proofness PY - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:b43-576552 SN - 0894-3214 SP - 1 EP - 20 PB - Wiley AN - OPUS4-57655 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER -