3D neutron tomography:: recent developments and first steps towards reverse engineering
The 3D Neutron CT facility at FRM Garching is now operating successfully at a new cold beam line. The higher flux, improved motion control and new image processing software have reduced the time from exposure to 3D model down to one working day. For the first time, reverse engineering techniques hav...
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Published in | Nuclear instruments & methods in physics research. Section A, Accelerators, spectrometers, detectors and associated equipment Vol. 424; no. 1; pp. 58 - 65 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
Published |
Elsevier B.V
11.03.1999
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Subjects | |
Online Access | Get full text |
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Abstract | The 3D Neutron CT facility at FRM Garching is now operating successfully at a new cold beam line. The higher flux, improved motion control and new image processing software have reduced the time from exposure to 3D model down to one working day. For the first time, reverse engineering techniques have been applied to data generated by neutron CT from metal machine parts. Both 3D models and inverse moulds were created using selective laser sintering, and an exact replica was cast in aluminum. |
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AbstractList | The 3D Neutron CT facility at FRM Garching is now operating successfully at a new cold beam line. The higher flux, improved motion control and new image processing software have reduced the time from exposure to 3D model down to one working day. For the first time, reverse engineering techniques have been applied to data generated by neutron CT from metal machine parts. Both 3D models and inverse moulds were created using selective laser sintering, and an exact replica was cast in aluminum. |
Author | Blümlhuber, Wolfgang Fent, Andreas Schillinger, Burkhard Marcus Wegner |
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Copyright | 1999 Elsevier Science B.V. |
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References | C. Rausch, T. Bücherl, J, Hofmann, B. Schillinger, H. v. Seggern, in: Proc. 5th World Conf. Neutron Radiography Berlin, 1996, printed 1997, pp. 113–117. B. Schillinger, R. Gebhard, B. Haas, W. Ludwig, C. Rausch, U. Wagner, 3D Neutron Tomography in Material Testing and Archaeology, Proc. 5th World Conf. on Neutron Radiography, Berlin, 1996, printed 1997, pp. 688–693. For further information, see http://www.eos-gmbh.de. Schillinger (BIB3) 1996; 4 For further information, see http://www.ivs-solutions.de. For further information, see http://www.volumegraphics.com. , / H. Kobayashi, K. Tomura, S. Harasawa, M. Hattori, in: Proc. 3rd World Conf. on Neutron Radiography, 1990, pp. 421–428. and For further information, see http://www.iware.com. For further information, see http://www.materialise.be. McFarland, Lanza, Poulos (BIB2) 1991; 38 H. Kobayashi, H. Wakao, Accurate measurement of for divergent collimators, in: Neutron Radiography, Proc. 3rd World Conf. Neutron Radiography, Osaka. 1989, printed 1990, pp. 889–892. |
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Snippet | The 3D Neutron CT facility at FRM Garching is now operating successfully at a new cold beam line. The higher flux, improved motion control and new image... |
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SubjectTerms | Cameras CCD camera Charge coupled devices Computed tomography Computer software Computerized tomography Image processing Motion control Neutron detectors Neutron radiography Rapid prototyping Reverse engineering Sintering |
Title | 3D neutron tomography:: recent developments and first steps towards reverse engineering |
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