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- Beitrag zu einem Tagungsband (40) (entfernen)
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- Mobile Radiographie (3)
- Neutronentomographie (3)
- Archäologischer Nassholzfund (2)
- Bridging separate competence areas (2)
- Containerprüfung (2)
- Hochenergieradiographie (2)
- Materialerkennung (2)
- NDT-wide (2)
- Public security (2)
- Risk assessment (2)
Radiography is a helpful method to identify the inherent structure of unexploded ordnances (UXOs). Portable Computed Radiography (CR) systems on the basis of phosphor imaging plates , have attracted attention for NDT-applications during the last few years. A portable IP system ACR 2000 has been tested for X-ray inspection of UXO's in the field. Digitised radiographs are presented to explain the needs and demands for a reliable characterisation of UXO's. Computed radiographs of UXOs are compared with film radiographs exposed in the same way, to evaluate the reliability and to identify advantages and disadvantages of the CR system for UXO inspection. Film based and CR systems provide sufficient information for identification of chemical warfare agents in UXO's, which is an essential problem for explosive ordnance disposal. The advantages and the potential of the portable CR system is discussed on the basis of experiences gathered during different field trails.
Zur Durchstrahlung großer, dichter Objekte reichen die Energien, die mit normalen Röntgenröhren erzielt werden können, ab gewissen Schichtdicken nicht mehr aus. Als hochenergetische Strahlenquellen stehen Kobalt-60 und Elektronenbeschleuniger zur Verfügung. Als Einschränkung der Hochenergieradiographie ist der geringere Kontrast besonders beim Vorhandensein leichterer Objekte umgeben von Körpern bestehend aus schweren Elementen anzusehen. Es ist daher zu erwarten, dass Objekte aus organischen Substanzen hinter dicken Schwermetallwänden oder in Bohrungen von Metallblöcken schwer zu erkennen sind. Im Gegensatz zu einem Gammastrahler wie Kobalt-60 mit den beiden Spektrallinien um 1,3 MeV besitzt die Bremsstrahlung aus einem Beschleuniger einen wesentlichen Anteil an niederenergetischer Strahlung, der fließend zu höheren Energien übergeht. Es wird hier untersucht, welche Signaturen von leichten Materialien in einer Umgebung aus Schwermetall bis zu welcher Dicke und bis zu welchem Komplexizitätsgrad erkennbar sind. Mit einem Betatron (JME X-ray Betatron 7,5 MeV) und einem Matrixdetektor (Perkin Elmer XRD 1621) wurden Aufnahmen von unterschiedlichen leichten Objekten angefertigt, die zunehmend in eine Umgebung aus Schwermetallen gestellt wurden. Mit unterschiedlichen Energieeinstellungen wurde untersucht, inwieweit eine Materialerkennung hinter welcher Abschirmung möglich ist. Die experimentellen Ergebnisse werden mit Simulationen verglichen, die mit einer Software zur Modellierung von Durchstrahlungsverfahren (aRTist) erzeugt wurden. Dabei wird dem Problem der Aufhärtung bei Anwendung von Bremsstrahlung Rechnung getragen. Die Ergebnisse können sowohl zur Erkennung von Fremdkörpern in Maschinen oder Pumpen als auch zur Überprüfung von Frachtladungen im Bereich der öffentlichen Sicherheit und bei Zollkontrollen dienen.
Bildbearbeitung
(2002)
Human perception of images
(2005)
EFNDT working group 5 'NDT technology for public security and safety', two areas with the same aim
(2014)
It is a quite common and understandable wish to make the world a safer place. This entails both freedom from danger, and thus encompasses both, safety and security. However, it is a trivial fact that public security and technical safety are commitments to distinct social entities that might be quite understandable due to the various kinds of threats. On the other hand, it is a common justifiable interest to have effective methodologies to detect them in time, i.e., before something disastrous might happen. It is rather obvious that particularly non-destructive inspection technologies, namely radiological methods, are applied in both areas. As a logical consequence, sharing the technical knowledge and experiences could be of benefit for both of them. However, the different areas of activities cleave the information exchange between them. In order to overcome this gap, the EFNDT Working Group 5 'NDT Technology for Public Security and Safety' (EFNDT WG 5) has taken an initiative to bring together actors of both areas of activities, symbolized as building a 'bridge'. The activities of the EFNDT WG 5 range from identifying features exhibiting certain threats that are detectable with available NDT technologies, adapting and improving them according to their specified applications and to search for alternative technologies or ways of applications where deemed to be applicable. Successful exchanges of information and experiences have been achieved in recent workshops, where also new ideas have been raised for future common projects. This kind of work is far from being completed; it is more or less at its beginning. In future workshops it is intended to follow up these ideas and to pave the way for future common interdisciplinary projects. Therefore, all groups involved in such projects are welcome, not only researchers and NDT-specialists, but also all endusers of the respective technologies as well as theoreticians for risk assessment, performance evaluation, modelling, statistics etc. All the addressed areas are deemed to play an important role in making the world a safer place, cooperatively.
The existence of some 100 million active mines threatens human life and curtails substantially the economic base in over 70 countries. Humanitarian demining is tedious and it currently only employs metal detectors, prodders, dogs and armoured mechanical vehicles.
Achieving a world free of mines within a period of 10 years as stipulated in international treaties requires safer and more efficient technologies. In response to this challenge the Working Group 5 of the European Federation for Non-Destructive Testing (EFNDT WG5) was founded in Berlin in March 1999. The subject of this working group now consisting of 50 members from 17 countries is the detection of antipersonnel mines (APMD). The basic idea was to investigate existing NDT methods into their ability to aid mine detection. The scope of activities ranged from collecting available information, setting up links to related organisation, defining terminology and standards to selecting dedicated research projects. Since some of these tasks are already conducted by other organisations on an European and international level the attention of the working group has been focused mainly on two R&D areas and on reliability assessment studies. Otherwise, EFNDT WG5 APMD nevertheless remains open to novel approaches in mine detection. Aim of all activities is to provide deminers with safer and more efficient tools than merely with prodders and metal detectors currently used for their dangerous task.