TY - GEN A1 - Müller, Bernd R. A1 - Lange, Axel A1 - Harwardt, Michael A1 - Hentschel, Manfred P. T1 - Sub-micrometer computed tomography at BAMline PY - 2004 UR - http://www.helmholtz-berlin.de/media/media/oea/web/pr_webseite/druckschriften/berichte/bessy/annualreport2003.pdf#page=321 SN - 0179-4159 SP - 321 EP - 323 PB - Berliner Elektronenspeicherring-Gesellschaft für Synchrotronstrahlung CY - Berlin AN - OPUS4-3509 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - GEN A1 - Müller, Bernd R. A1 - Lange, Axel A1 - Harwardt, Michael A1 - Hentschel, Manfred P. T1 - Submikro-Computer-Tomographie an der BAMline T2 - Jahrestagung Zerstörungsfreie Materialprüfung 2004 CY - Salzburg, Österreich DA - 2004-05-17 KW - Computer Tomographie KW - Vergrößerung mit asymmetrischen Kristallen PY - 2004 UR - http://www.ndt.net/article/dgzfp04/papers/v09/v09.htm SN - 3-931381-55-2 SP - 1(?) EP - 7(?) PB - DGZfP CY - Berlin AN - OPUS4-5869 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - GEN A1 - Müller, Bernd R. A1 - Lange, Axel A1 - Harwardt, Michael A1 - Hentschel, Manfred P. T1 - Synchrotron Based Micro-CT and Refraction Enhanced Micro-CT of MMC T2 - International Symposium on NDT in Aerospace CY - Fürth, Germany DA - 2008-12-03 KW - X-ray Refraction KW - Synchrotron Radiation KW - Computed Tomography KW - Metal Matrix Composites KW - Lightweight Materials KW - Aerospace PY - 2008 SN - 978-3-940283-12-2 N1 - Serientitel: Berichtsband / Deutsche Gesellschaft für zerstörungsfreie Prüfung e. V. – Series title: Berichtsband / Deutsche Gesellschaft für zerstörungsfreie Prüfung e. V. IS - DGZfP-BB 114 (Poster 10) SP - 295 EP - 305 PB - DGZfP CY - Berlin AN - OPUS4-18607 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - GEN A1 - Müller, Bernd R. A1 - Lange, Axel A1 - Hentschel, Manfred P. ED - Green, R. E. ED - Djordjevic, B. B. ED - Hentschel, M. P. T1 - Synchrotron Radiation Refraction Topography PY - 2003 SN - 3-540-40154-7 SP - 167 EP - 176 PB - Springer CY - Berlin AN - OPUS4-2765 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - JOUR A1 - Müller, Bernd R. A1 - Hentschel, Manfred P. T1 - Synchrotron radiation refraction topography for charcterization of lightweight materials N2 - The employment of synchrotron radiation for refraction topography of materials has considerable advantages over standard x-ray sources. The much higher beam intensity and the parallel and monochromatic radiation provide faster measurements and better angular and spatial resolution. X-ray refraction techniques image the inner surface and interface concentration of micro-structured materials. This effect of x-ray optics is additional to small-angle scattering by diffraction, when the scattering objects reach micrometre dimensions. We have developed x-ray refraction techniques within the last decade in order to meet the growing demands for improved non-destructive characterization of high-performance composites, ceramics and other low-density materials. Sub-micron particle dimensions, the pore size of ceramics, the crack density distribution and single fibre debonding within damaged composites can be measured and visualized by computer-generated interface topographs. For this purpose investigations are now being performed at the new hard x-ray beamline of the Federal Institute for Materials Research and Testing (BAM) at BESSY, Berlin. This BAMline provides monochromatic radiation of photon energies from 5 to 60 keV from a double multilayer and/or a double-crystal monochromator. A separate instrument is dedicated to the further development and application of synchrotron radiation refraction (SRR) topography. Different from conventional small-angle scattering cameras with collimating slits and pinholes, scattering angles down to a few seconds of arc are selected by a single-crystal analyser, similar to a Bonse-Hart diffractometer. A 20 µm spatial resolution of the scattering micro-structures is achieved by a CCD camera with a fluorescent converter. First SRR topographs of aircraft composites [carbon fibre-reinforced plastics (CFRP), carbon fibre-reinforced ceramics (C/C), metal matrix ceramics (MMC)] will be reported. KW - BAMline KW - Refraction topography PY - 2004 DO - https://doi.org/10.1002/xrs.736 SN - 0049-8246 VL - 33 IS - 6 SP - 402 EP - 406 PB - Wiley CY - Chichester AN - OPUS4-11930 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Müller, Bernd R. A1 - Lange, Axel A1 - Harwardt, Marco A1 - Hentschel, Manfred P. A1 - Illerhaus, Bernhard A1 - Goebbels, Jürgen T1 - Synchrotron Refraction CT and Synchrotron Bragg Magnification CT for NDE T2 - International Symposium on Digital industrial Radiology and Computed Tomography (DIR 2007) CY - Lyon, France DA - 2007-06-25 KW - X-ray Refraction KW - Diffraction Enhanced Imaging (DEI) KW - Bragg Magnification KW - Synchrotron Radiation KW - Computed Tomography (CT) KW - Metal Matrix Composites (MMC) KW - Lightweight Materials KW - Aerospace PY - 2007 IS - CD-ROM SP - 1 EP - 8 CY - Lyon, France AN - OPUS4-16366 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - JOUR A1 - Müller, Bernd R. A1 - Lange, Axel A1 - Harwardt, Michael A1 - Hentschel, Manfred P. A1 - Illerhaus, Bernhard A1 - Goebbels, Jürgen T1 - Synchrotron Refraction CT and Synchrotron Bragg Magnification CT for NDE N2 - X-ray refraction topography techniques are based on ultra-small angle scattering by micro-structural elements causing phase-related effects such as refraction and total reflection at a few minutes of arc as the refractive index of X-rays is nearly unity. The refraction contrast is several times higher than “true absorption” and results in images of cracks, pores and fibre debonding separations below the spatial resolution of the detector. In most cases the investigated inner surface and interface structures correlate to mechanical properties. For the exploration of micro structured materials the refraction technique has been improved by a 3D Synchrotron Refraction Computed Tomography test station. The specimen is placed in an X-ray beam between two single crystals, which suppresses all sample scattering. In addition, an asymmetric cut second crystal can magnify the image up to 50 times revealing nano meter resolution. The technique is an alternative to other attempts on raising the spatial resolution of CT machines. KW - X-ray refraction KW - Diffraction Enhanced Imaging (DEI) KW - Bragg magnification KW - Synchrotron radiation KW - Computed Tomography (CT) KW - Metal Matrix Composites (MMC) KW - Lightweight materials KW - Aerospace PY - 2008 DO - https://doi.org/10.1784/insi.2008.50.6.316 SN - 0007-1137 VL - 50 IS - 6 SP - 316 EP - 319 PB - British Institute of Non-Destructive Testing CY - Northampton AN - OPUS4-18001 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - JOUR A1 - Müller, Bernd R. A1 - Lange, Axel A1 - Harwardt, Michael A1 - Hentschel, Manfred P. T1 - Synchrotron-based micro-CT and refraction-enhanced micro-CT for non-destructive materials characterisation N2 - X-ray computed tomography is an important tool for non-destructively evaluating the 3-D microstructure of modern materials. To resolve material structures in the micrometer range and below, high brilliance synchrotron radiation has to be used. The Federal Institute for Materials Research and Testing (BAM) has built up an imaging setup for micro-tomography and -radiography (BAMline) at the Berliner storage ring for synchrotron radiation (BESSY). In computed tomography, the contrast at interfaces within heterogeneous materials can be strongly amplified by effects related to X-ray refraction. Such effects are especially useful for materials of low absorption or mixed phases showing similar X-ray absorption properties that produce low contrast. The technique is based on ultra-small-angle scattering by microstructural elements causing phase-related effects, such as refraction and total reflection. The extraordinary contrast of inner surfaces is far beyond absorption effects. Crack orientation and fibre/matrix debonding in plastics, polymers, ceramics and metal-matrix-composites after cyclic loading and hydro-thermal aging can be visualized. In most cases, the investigated inner surface and interface structures correlate to mechanical properties. The technique is an alternative to other attempts on raising the spatial resolution of CT machines. KW - Refraction KW - Computed tomography KW - NDE KW - Ti-MMC KW - Lightweight materials KW - Metal matrix composites KW - Synchrotron radiation KW - X-ray refraction PY - 2009 DO - https://doi.org/10.1002/adem.200800346 SN - 1438-1656 VL - 11 IS - 6 SP - 435 EP - 440 PB - Wiley-VCH Verl. CY - Weinheim AN - OPUS4-20564 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - GEN A1 - Müller, Bernd R. A1 - Lange, Axel A1 - Harwardt, Marco A1 - Hentschel, Manfred P. A1 - Illerhaus, Bernhard A1 - Goebbels, Jürgen A1 - Bamberg, J. A1 - Heutling, F. ED - Danny Van Hemelrijck, ED - Igor Solodov, ED - Anastasopoulos, Athanasios ED - Gerhard Busse, T1 - Synchrotron-Refraction-Computed-Tomography for NDT and characterisation of lightweight composite materials T2 - 4th International Conference of Emerging Technologies in Non-Destructive Testing (ETNDT 4) CY - Stuttgart, Germany DA - 2007-04-02 KW - Refraction KW - Computed Tomography KW - NDE KW - Ti-MMC PY - 2008 SN - 978-0-415-46476-5 SP - 217 EP - 221 PB - Taylor & Francis CY - London, UK AN - OPUS4-18680 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - GEN A1 - Hentschel, Manfred P. A1 - Müller, Bernd R. A1 - Harwardt, Michael A1 - Lange, Axel T1 - Synchrotron-Refraktions-Computer Tomographie für die Materialforschung T2 - DGZfP Jahrestagung CY - Rostock, Deutschland DA - 2005-05-02 KW - Computer-Tomographie KW - Synchrotronstrahlung KW - Refraktionskontrast KW - Bragg-Vergrößerung PY - 2005 SN - 3-931381-64-1 N1 - Serientitel: Berichtsband / Deutsche Gesellschaft für zerstörungsfreie Prüfung e. V. – Series title: Berichtsband / Deutsche Gesellschaft für zerstörungsfreie Prüfung e. V. IS - 94-CD SP - 1(?) EP - 7(?) PB - DGZfP CY - Berlin AN - OPUS4-11698 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Müller, Bernd R. A1 - Lange, Axel A1 - Harwardt, Michael A1 - Hentschel, Manfred P. T1 - Synchrotron-Refraktions-Computer-Tomographie - EIne neue Methode zur Erkennung von Grenzflächen T2 - DGZfP-Jahrestagung 2009 CY - Münster, Deutschland DA - 2009-05-18 KW - Synchrotronstrahlung KW - Refraktion KW - Diffraktion KW - Kleinwinkelstreuung KW - Materialcharakterisierung KW - Zerstörungsfrei PY - 2009 SN - 978-3-940283-16-0 IS - DGZfP-BB 115 (Di.1.A.1) SP - 1 EP - 11 AN - OPUS4-20609 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Hentschel, Manfred P. A1 - Müller, Bernd R. A1 - Harwardt, Michael A1 - Lange, Axel T1 - Synchrotron-Refraktions-Computer-Tomographie für die Materialforschung T2 - DGZfP-Jahrestagung 2005 CY - Rostock, Germany DA - 2005-05-02 PY - 2005 AN - OPUS4-11754 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - GEN A1 - Müller, Bernd R. A1 - Hentschel, Manfred P. A1 - Lange, Axel T1 - SYRTOPO - Materialcharakterisierung an der BAMline N2 - Einleitung Die Bundesanstalt für Materialforschung und -prüfung (BAM) hat im Synchrotronstrahlungslabor BESSY (im Wissenschafts- und Technologiezentrum Berlin-Adlershof) ein Röntgen-Strahlrohr (BAMline) sowie einen Messplatz für die zerstörungsfreie Materialcharakterisierung aufgebaut. Der Messplatz erlaubt die Untersuchung mit monochromatischer Röntgenstrahlung im Energiebereich von 5keV bis 60keV mit hohem Photonenfluß. Seit Anfang 2001 läuft der Probebetrieb zur Optimierung der Strahlungsquelle sowie des experimentellen Aufbaus. Die Besonderheiten der BAMline im Vergleich zu Laboröntgenquellen sind der hohe Photonenfluss bei freier Wahl der Photonenenergie sowie die Polarisationseigenschaften und die außerordentliche Parallelität der Strahlung bei großem Strahlungsquerschnitt. Dies ermöglicht Refraktionstopogramme für Metall-Matrix-Komposite (MMC) in relativ kurzer Zeit, mit einer lateralen Ortsauflösung von 10µm, zu messen. Das neuartige ZfP-Verfahren der Röntgen-Refraktions-Topograhy wurde an anderer Stelle ausführlich beschrieben [1,2]. Es nutzt die Messtechnik der traditionellen Kleinwinkelstreuung auf unkonventionelle Weise, und wurde in den letzten zehn Jahren in unserem Labor entwickelte und an die fortgeschrittenen Anforderungen für die zerstörungsfreie Charakterisierung von neuartigen Werkstoffen wie faserverstärkten Kompositen und Keramiken angepasst. Das Verfahren basiert auf dem Brechungseffekt von Röntgenstrahlen. Auf Grund der kurzen Wellenlänge der Röntgenstrahlen (l » 0.1nm) können innere Oberflächen sowie Grenzflächenkonzentrationen von Nanometer Große detektiert werden, so dass mit Hilfe dieser Technik sehr leicht Partikel, Risse und Porengrößen im Sub-Mikrometer-Bereich gemessen werden können, ohne dabei die Proben zu zerstören, wie es bei mikroskopischen Techniken notwendig ist. Anwendungsfelder dieser Untersuchungsmethode sind z.B. die Erkennung von Faser-Matrix-Enthaftung nach Schlageinwirkung sowie Rissbildung durch Alterung und Herstellung bei faserverstärkten Kompositen. T2 - Jahrestagung Zerstörungsfreie Materialprüfung 2002 CY - Weimar, Deutschland DA - 2002-05-06 PY - 2002 UR - http://www.ndt.net/article/dgzfp02/papers/v16/v16.htm SN - 3-931381-39-0 N1 - Serientitel: Berichtsband / Deutsche Gesellschaft für zerstörungsfreie Prüfung e. V. – Series title: Berichtsband / Deutsche Gesellschaft für zerstörungsfreie Prüfung e. V. IS - 80-CD SP - 1(?) EP - 6(?) PB - DGZfP CY - Berlin AN - OPUS4-2793 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Shashev, Yury A1 - Kupsch, Andreas A1 - Lange, Axel A1 - Britzke, Ralf A1 - Bruno, Giovanni A1 - Mueller, Bernd R. A1 - Hentschel, Manfred P. T1 - Talbot- Lau interferometry with a non- binary phase grating for non-destructive testing N2 - Grating interferometric set-ups have been established in the last decade. They are promising candidates to obtain enhanced image contrast from weakly absorbing micro and nano structures. They are based on X-ray refraction and near-field diffraction using the Talbot effect. At the expense of taking multiple images, Talbot-Lau grating interferometry allows separating the absorption, refraction, and scattering contributions by analysing the disturbances of a phase grating interference pattern. Contrary to other refraction enhanced methods, this technique can be applied using conventional X-ray tubes (divergent, polychromatic source). This makes it attractive to solve typical non-destructive testing problems. We investigated the efficiency of phase gratings, i.e. the visibility (the amplitude of oscillations) upon variation of propagation distance and phase grating rotation around an axis parallel to the grid lines. This grating rotation changes the grating shape (i.e. the distributions of phase shifts). This can yield higher visibilities than derived from rectangular shapes. Our study includes experimental results obtained from synchrotron radiation, as well as simulations for monochromatic radiation. The advantages of Talbot-Lau interferometry are demonstrated at the example of glass capillaries. T2 - WCNDT2016 CY - Munich, Germany DA - 13.06.2016 KW - Phase-contrast X-ray imaging KW - Talbot- Lau interferometry KW - Phase grating KW - Visibility KW - Synchrotron radiation PY - 2016 UR - https://nbn-resolving.org/urn:nbn:de:kobv:b43-365987 SN - 978-3-940283-78-8 VL - BB 158 SP - Tu.3.G.2., 1 EP - 9 AN - OPUS4-36598 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Ewers, Benjamin A1 - Kupsch, Andreas A1 - Lange, Axel A1 - Hentschel, Manfred P. T1 - Terahertz spectral imaging techniques in NDT: Topography and computed tomography N2 - The emerging technology of generation and detection of Terahertz waves (1 THz = 1012 Hz) offers diverse potentials in non-destructive testing (NDT) regarding security as well as safety aspects. Herein, we focus on the latter with emphasis on imaging techniques. The THz range (0.1 … 10 THz, 3mm …30 µm) closes the technological gap between ultra high frequency electronics and FIR optics in the electro-magnetic (EM) spectrum. Electro-optical sampling provides straight access to the EM wave including its phase (rather than intensity). THz waves are well suited to characterize non-metallic materials since they penetrate paper, plastics, ceramics and certain composites (e.g. GFC). We employ a commercial fibre-coupled THz time domain spectrometer (TDS) for scanning the samples laterally through a focal spot. At each position the entire temporal pulse train is recorded, which offers the opportunity to use various parameters derivable for imaging. Topographic measurements are performed as reflection set-up. The achievable spatial resolution is diffraction limited at about 100 µm -300 µm (which allows for perception of single defects on a sub-mm scale). In contrast to typical pulse echoed ultrasound testing THz topography is a non-contact inspection tool without coupling agents. Several reflections of subsequent concealed layers are detected instead of just the first encountered one. Comparing to X-ray (radiology) the non-ionizing THz-waves generate images of similar contrast regarding metal and plastic (organic) components, while conventional radiography emphasizes one type of material depending on the energy preselected. Moreover, the full temporal information is exploited to derive spectra in certain selected time windows, i.e. separated spectral properties of each layer in multilayered structures. Tomographic measurements are performed in transmission mode. The sample is mounted on a rotation stage in order to allow for lateral scanning under the different projection angles. The reconstruction is typically performed by filtered backprojection, which is widely used for X-ray CT. The adaption of this technique to the THz range comes along with several experimental drawbacks such as considerable refraction and scattering. According to these difficulties we investigate the occurring artefacts. The THz-TDS provides the opportunity to calculate a separate backprojection of each frequency interval as obtained by the Fourier transformation of the recorded time resolved amplitude. This results in a spectrally resolved reconstruction of each voxel, which is unique in computed tomography technology. T2 - 10th European conference on non-destructive testing CY - Moscow, Russia DA - 2010-06-07 KW - Terahertz time domain spectroscopy KW - Spectral computed tomography KW - 3D topography PY - 2010 UR - http://www.ndt.net/article/ecndt2010/reports/1_09_10.pdf IS - Paper 4.02.18 SP - 1 EP - 10(?) AN - OPUS4-21465 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Kupsch, Andreas A1 - Beckmann, Jörg A1 - Ewert, Uwe A1 - Hentschel, Manfred P. A1 - Lange, Axel T1 - Terahertz-Radiographie riskanter Substanzen ohne Strahlengefährdung T2 - DGZfP-Jahrestagung 2007 CY - Fürth, Deutschland DA - 2007-05-14 KW - Terahertz-Radiographie KW - Explosivstoffe KW - Nichtmetallische Werkstoffe PY - 2007 SN - 978-3-931381-98-1 SP - 1 EP - 10 PB - DGZfP CY - Berlin AN - OPUS4-16100 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - JOUR A1 - Kupsch, Andreas A1 - Beckmann, Jörg A1 - Ewert, Uwe A1 - Hentschel, Manfred P. A1 - Lange, Axel T1 - Terahertz-Wellen: Radiographie ohne Strahlengefährdung N2 - Mit dem Einsatz von Terahertz-Wellen eröffnen sich gegenüber Röntgenstrahlung neuartige Möglichkeiten der Radiologie. Von der dielektrischen Materialcharakterisierung nicht metallischer Werkstoffe bis zur Detektion des Innenlebens von unkonventionellen Spreng- und Brandvorrichtungen (USBV) wird ein großes Anwendungsspektrum für die bildgebende zerstörungsfreie Prüfung abgedeckt. Die physiologische Unbedenklichkeit der Strahlung favorisiert sie auch für Personenkontrollen an Flughäfen. Das Prinzip eines modernen zeitauflösenden Terahertz-Spektrometers mit einer Ortsauflösung bis 0,3mm und einem Frequenzbereich von 0,1 bis 2,2THz wird erläutert sowie die Wechselwirkung mit Materie. Die Besonderheiten von THz-Topogrammen werden am Beispiel einer Briefbombenattrappe mit Röntgen-Radiogrammen verglichen. KW - Terahertz-Radiographie KW - Explosivstoffe KW - Nichtmetallische Werkstoffe PY - 2008 UR - http://materialstesting.de/directlink.asp?MP100891 SN - 0025-5300 VL - 50 IS - 6 SP - 341 EP - 348 PB - Hanser CY - München AN - OPUS4-17598 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - GEN A1 - Hampe, Andreas A1 - Harbich, Karl-Wolfram A1 - Hentschel, Manfred P. A1 - Rudolph, Hans-Volker T1 - The Determination of Inner Surfaces in Composites by X-Ray Refraction T2 - 12th International Conference on Composite Materials ; 12th ICCM Europe CY - Paris, France DA - 1999-07-05 PY - 1999 SN - 2-9514526-2-4 IS - 423 CY - Paris AN - OPUS4-3273 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - GEN A1 - Görner, Wolf A1 - Hentschel, Manfred P. A1 - Müller, Bernd R. A1 - Riesemeier, Heinrich A1 - Krumrey, M. A1 - Ulm, G. T1 - The first hard X-rays at the BAMline PY - 2001 UR - http://www.helmholtz-berlin.de/media/media/oea/web/pr_webseite/druckschriften/berichte/bessy/annualreport2000.pdf#page=329 SN - 0179-4159 SP - 329 EP - 331 PB - Berliner Elektronenspeicherring-Gesellschaft für Synchrotronstrahlung CY - Berlin AN - OPUS4-1299 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - GEN A1 - Kupsch, Andreas A1 - Beckmann, Jörg A1 - Ewert, Uwe A1 - Lange, Axel A1 - Hentschel, Manfred P. ED - Beyerer, J. T1 - Threat detection and characterisation by spectroscopic THz-imaging T2 - 2nd Security Research Conference "Future Security" CY - Karlsruhe, Germany DA - 2007-09-12 KW - Terahertz-Radiography KW - Explosives PY - 2007 SN - 978-3-86644-147-7 SP - 155 EP - 158 PB - Universitätsverl. CY - Karlsruhe AN - OPUS4-16101 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER -