TY - CONF A1 - Wolff, Dietmar T1 - Investigating the Performance of Rubber Seals at low Temperatures T2 - 2013 International High-Level Radioactive Waste Management Conference CY - Albuquerque, NM, USA DA - 2013-04-28 PY - 2013 AN - OPUS4-28476 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - JOUR A1 - Jaunich, Matthias A1 - Stark, Wolfgang A1 - Wolff, Dietmar T1 - Low temperature properties of rubber seals N2 - Rubber is widely used as sealing material in various applications. In many fields the sealing function at low temperatures is necessary. Therefore the understanding of failure mechanisms is of high importance. Rubbers are normally used above their glass-rubber transition region but the minimum working temperature limit is not defined precisely. Therefore the lower operation temperature limit of rubber seals should be determined in dependence of the material properties. The results of Differential Scanning Calorimetry (DSC) and Dynamic Mechanical Analysis (DMA) are combined with the results of the standardized compression set according to ISO 815 respectively a modified test using the DMA equipment. N2 - Tiefentemperaturverhalten von Elastomerdichtungen Elastomere werden vielfach als Dichtungsmaterial für verschiedene Anwendungen eingesetzt. In vielen Bereichen ist die Funktion der Dichtung auch bei tiefen Temperaturen erforderlich. Daher ist das Verständnis des Versagensmechanismus von großer Bedeutung. Normalerweise werden Elastomere oberhalb ihres Glass-Gummi Übergangsbereiches eingesetzt aber die minimale Einsatztemperatur ist nicht exakt definiert. Daher ist es sinnvoll diese untere Temperatureinsatzgrenze in Abhängigkeit von den Materialeigenschaften zu bestimmen. Die Ergebnisse der DSC und der DMA werden mit den Ergebnissen des standardisierten Druckverformungsrestes nach ISO 815 und einer abgewandelten Messung mit der DMA kombiniert. KW - Sealing material KW - Elastomer KW - Compression set KW - Dynamic mechanical analysis KW - Low temperature behaviour PY - 2011 SN - 0948-3276 SN - 0022-9520 IS - 03 SP - 52 EP - 55 PB - Hüthig CY - Heidelberg AN - OPUS4-23422 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - JOUR A1 - Jaunich, Matthias A1 - Stark, Wolfgang A1 - Wolff, Dietmar T1 - Comparison of low temperature properties of different elastomer materials investigated by a new method for compression set measurement N2 - The method for the determination of compression set values with a Dynamic Mechanical Analysis (DMA) setup at low temperatures, which was presented previously, allows a much faster and readily automated procedure than the standardized compression set test according to ISO 815-2. This method is applied to a series of different elastomeric materials that are commonly used for sealing applications. The results of the compression set test are compared with results from thermal analysis to allow an in depth comparison of the material behaviour at low temperatures. Furthermore, a comparison between two EPDM materials is presented. These materials show very similar properties determined by thermo analytical methods such as Differential Scanning Calorimetry (DSC) and Dynamic Mechanical Analysis (DMA) but differ clearly in their compression set behaviour. This comparison shows the importance and value of information of the compression set test in addition to thermal analysis to judge the behaviour of sealing materials and confirms the relevance of the new compression set test method for the investigation of low temperature properties of elastomers. KW - Sealing material KW - Elastomer KW - Compression set KW - Dynamic mechanical analysis KW - Low temperature behaviour PY - 2012 DO - https://doi.org/10.1016/j.polymertesting.2012.07.016 SN - 0142-9418 VL - 31 IS - 8 SP - 987 EP - 992 PB - Elsevier Science CY - Amsterdam [u.a.] AN - OPUS4-26538 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - RPRT A1 - Völzke, Holger A1 - Wolff, Dietmar A1 - Barnabas, I. A1 - Ordogh, M. A1 - Shirai, K. A1 - Saegusa, T. A1 - Cho, C.-H. A1 - Kook, D. A1 - Lopez, J. F. A1 - Conde, J. M. A1 - Alejano, C. A1 - Lloret, M. A1 - Quecedo, M. A1 - Shea, J. A1 - Ross, P. J. A1 - White, N. A1 - Rossiter, G. A1 - Hodgson, Z. A1 - Sorenson, K. A1 - McConnell, P. A1 - Hanson, B. ED - Sorenson, K. ED - Shirai, K. ED - Völzke, Holger T1 - Extended storage collaboration program - International subcommittee report - International perspectives on technical data gaps associated with extended storage and transportation of used nuclear fuel N2 - The US Electric Power Research Institute (EPRI) chartered a volunteer committee in November 2009 to share information and data related to extended storage and subsequent transportation of used nuclear fuel. This committee is named the Extended Storage Collaboration Program (ESCP) and was initially comprised of representatives from industry (fuel and cask vendors, utilities, the Nuclear Energy Institute, and EPRI), as well as government (e.g., US Department of Energy) and the US Nuclear Regulatory Commission. The primary motivation for establishing this committee was the recognition that used fuel will need to be stored past the regulatory licensing timeframe. In the US, this is mainly a result of the cessation of licensing activities for the planned Yucca Mountain repository. Recognizing that there is a global interest in extended storage and transportation, the International Subcommittee was established in December 2010 to extend the reach of ESCP internationally in order to fully address extended storage and transportation issues, as they apply to different systems, national policies, and regulations around the world. This Subcommittee serves to deepen the overall understanding of degradation mechanisms associated with storage and transportation systems, expand the access to data and programs related to extended storage and transportation, and strengthen the overall technical basis for programmatic decisions. The International Subcommittee established three basic objectives: 1. Conduct a technical data gap survey 2. Assess opportunities to leverage specific research to benefit the larger international group 3. Integrate our work with relevant International Atomic Energy Agency (IAEA) committee work This report constitutes completion of Objective #1. The International Subcommittee worked to identify and prioritize technical gaps that need to be addressed to support licensing activities within their own countries. Because there are varying types of storage and transportation system designs, national policies and regulations, there are identified commonalities as well as differences that stress the importance of this work on an international scale. Section 5 of this report identifies and prioritizes all of the identified data gaps for each participating organization. However, important data gaps were identified that had a consensus of opinion of being a high priority. These technical gaps, as a function of storage system component are: 1. Fuel – hydride effects on fuel cladding and retrievability of fuel after storage 2. Canister – general canister corrosion and stress corrosion cracking of canister closure welds, particularly in marine environments 3. Closure – degradation of bolts and seals (metallic and organic) 4. Overpack – concrete degradation Dry storage systems were originally designed for limited periods. With extended dry storage, it is generally believed that used fuel can be stored safely and securely past the regulatory time period. However, the technical arguments need to be made to justify extended licensing periods. Addressing the data gaps will provide the necessary arguments to justify license extensions. In the development of this report, the International Subcommittee met five times over a period of 18 months to work through the issues of identifying and prioritizing the data gaps, and discussing of technical issues as they pertain to the safety of used fuel storage and transportation. The meeting locations and dates were: 1. Vienna June 2010 2. London October 2010 3. Charlotte December 2010 4. Berlin June 2011 5. Charlotte December 2011 This report is not meant to be a technical document. Rather, it is an overview of country regulatory policy, a review of in-country operational status and used fuel inventory, followed by a role-up of identification and prioritization of technical data gaps. Technical documents that were used in the data gap assessments are referenced. It is important to note that this document represents only the opinions of the contributors. This document in no way represents any official country position. The organizations providing support to the writing of this report are: Germany: - Bundesanstalt für Materialforschung und -prüfung Hungary: - Radioaktiv Julladekokat Kezelo Kozhasznu - Som System Kft. Japan: - Central Research Institute of Electric Power Industry South Korea: - Korea Atomic Energy Research Institute - Korea Radioactive Waste Management Corporation Spain: - Consejo de Seguridad Nuclear - ENRESA Empresa Nacional de Residuos Radiactivos - ENUSA Industrias Avanzadas United Kingdom: - EDF Energy - National Nuclear Laboratory Ltd. United States: - Pacific Northwest National Laboratory - Sandia National Laboratories KW - Used/spent fuel dry storage KW - Used/spent fuel transportation KW - Extended used/spent nuclear fuel storage KW - High burnup spent fuel storage and transportation KW - Spent fuel storage and transportation KW - Extended Storage Collaboration Program (ESCP) KW - ESCP International Subcommittee PY - 2012 UR - https://www.epri.com/research/products/1026481 N1 - This final report was prepared as part of the volunteer Extended Storage Collaboration Program (ESCP). VL - 1026481 SP - 1 EP - 132 PB - Electric Power Research Institute (EPRI) CY - Palo Alto, CA, USA AN - OPUS4-27405 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - JOUR A1 - Kasparek, Eva Maria A1 - Völzke, Holger A1 - Scheidemann, Robert A1 - Zencker, Uwe A1 - Wolff, Dietmar T1 - Experimental and numerical studies of shock absorbing materials for containers for radioactive waste N2 - Safety assessments of Containers for Transport and storage of radioactive materials involvedrop scenarios prescribed in the regulations of the International Atomic Energy Agency - IAEA or potential accidents that might occur in a specific nuclear facility. Hereby, the design of impact limiters and foundation properties of the handling Region have a major effect on the mechanical loading of the cask and lid System. Reliable numerical simulations, which very often constitute a relevant part of such safety proofs, require systematic information About the energy absorption potential of the respectiye materials and its implementation in FEM (finite element) programs. However, when performing drop tests, BAM (BAM Bundesanstalt für Materialforschung und -prüfung, Federal Institute for Materials Research and Testing) identified significant differences between numerical and experimental results, which most likely result from numerical methods that do not sufficiently reproduce the behaviour of impact limiting structures. Particularly concerned are Container impact limiter made of wood or Polyurethane foam as well as damping concrete bricks, which are embedded in foundations of German interim storages. PY - 2012 SN - 1431-5254 VL - 57 IS - 6 SP - 397 EP - 401 PB - Inforum CY - Berlin AN - OPUS4-26261 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Jaunich, Matthias A1 - Wolff, Dietmar A1 - Stark, Wolfgang T1 - Low temperature properties of rubber seals - results of component tests N2 - Rubbers are widely used as sealing material in various applications. In many fields the function of seal materials at low temperatures is required. Therefore the understanding of failure mechanisms that lead to leakage at low temperatures is of high importance. Therefore the lower operation temperature limit of rubber seals should be determined in dependence of the material properties. The results of Differential Scanning Calorimetry (DSC) and Dynamic Mechanical Analysis (DMA) are combined with results of standardized measurements as the compression set according to ISO 815. To reduce the test time of the standard tests a faster and more efficient technique was developed and applied. In addition the breakdown temperature of the sealing function of O-ring seals at low temperatures is measured in a component test setup in dependence of the material and the degree of compression. T2 - 10th Fall rubber colloquium CY - Hannover, Germany DA - 07.11.2012 PY - 2012 SN - 978-3-9814076-1-7 IS - khk2012_jaunich.pdf SP - 1 EP - 8 AN - OPUS4-26995 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Jaunich, Matthias A1 - Stark, Wolfgang A1 - Wolff, Dietmar T1 - Low temperature - For a seal this depends on the applied material T1 - Tieftemperatur - Bei Dichtungen entscheidet dies der eingesetzte Werkstoff N2 - For many sealing applications rubbers are applied due to their special material properties and easy use. In many applications as e.g. in aviation, traffic or process technology the material can be exposed to low temperatures during Operation. Therefore it is important to know the material behavior at those low temperatures to determine the temperature ränge that allows a safe Operation of the seal. One of our main Interests is to ensure the safe enclosureof dangerous goods under various conditions such as different temperatures and over long periods of time. For low temperatures the seal function of an elastomer is limited by the rubber-glass transition during which the material properties change from rubber-like to stiff and glass-like. For a given application this correlation is not trivial, as the glass-rubber transition covers a broad temperatureregion and is strongly influenced by the applied loading frequency. Therefore the applicability of a seal material has to be assessed by its properties in relation to the application conditions and the necessary level of tightness. To characterize the material and the seal function thermal analysis (Differential Scanning Calorimetry (DSC) and Dynamic Mechanical Analysis (DMA)), a modlfied method for the accelerated determination of compression set and component tests were applied to different rubber classes, The results show that the temperature ränge where the compression set values come close to 100 % correlates well with the onset temperature of the storage modulus measured by DMA ata measurement frequency of 1 Hz. An in depth analysis of the compression set data allows an estimation of the expected time- and temperature-dependent recovery behavior. T2 - DKT 2012 - German Rubber Conference CY - Nuremberg, Germany DA - 02.07.2012 PY - 2012 IS - 10-2330_5-L-1530 SP - 1 EP - 4 PB - Deutsche Kautschuk-Gesellschaft CY - Frankfurt am Main AN - OPUS4-26190 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Jaunich, Matthias A1 - Stark, Wolfgang A1 - Wolff, Dietmar T1 - Material behaviour of static seals at low temperatures N2 - For many sealing applications rubber materials are applied due to their Special material properties and easy use. The crucial advantage of elastomeric seals in comparison to other seal is their high resilience. In many applications as e.g. in aviation, traffic or process technology the material can be exposed to low temperatures during Operation. Therefore it is important to know the material behavior at those low temperatures to determine the temperature ränge that allows a safe Operation of the seal. For low temperatures the seal function of an elastomer is in a way limited by the rubber-glass transition during which the material properties change from rubber-like to stiff and glass-like. This may result in a direct loss of the sealing function but especially for purely static applications a leak tightness well below the rubber-glass transition was observed, For a given application this correlation is not trivial, as the glass-rubber transition covers a broad temperature region and is strongly influenced by the applied load period. Therefore the applicability of a seal material has to be assessed by its properties in relation to the application conditions and the -ecessary level of tightness. T2 - 17th ISC - International sealing conference CY - Stuttgart, Germany DA - 13.09.2012 PY - 2012 SN - 978-3-00-039198-9 IS - A 16 SP - 295 EP - 300 CY - Frankfurt/M. AN - OPUS4-26524 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Wolff, Dietmar T1 - Well defined liquid crystalline homo and block copolymerthacrylates synthesized by organolanthanide complexes T2 - Europolymer Conference 1999 (EUPOC '99) Regular Macromolecular Structures Based on the Controlled Polymerization Processes CY - Gargnano, Italy DA - 1999-05-23 PY - 1999 AN - OPUS4-11310 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER -