706 REFERENCES Henry, E.B., 1989, “The Role of Nondestructive Testing in the Production of Pipe and Tubing,” Materials Evaluation, American Society for Nondestructive Testing, Columbus, OH, Vol. 47, No. 6, pp. 714–715, 718, 720, 722–724. Hovland, H., 1985, “Developments in Field X-Radiography, 1931-62,” Materials Evaluation, American Society for Nondestructive Testing, Vol. 43, No. 11, American Society for Nondestructive Testing, Columbus, OH, pp. 1386–1390. IEEE/ASTM SI 10, Standard for Use of the International System of Units (SI): The Modernized Metric System, American Society for Testing and Materials, West Conshohocken, PA. IEEE/ASTM SI 10-1997, Standard for Use of the International System of Units (SI): The Modernized Metric System, ASTM International, West Conshohocken, PA. IEEE National Electrical Safety Code, Institute of Electrical and Electronics Engineers, New York, NY. ISO 9712, Nondestructive Testing — Qualification and Certification of Personnel. Geneva, Switzerland. Itoh, G., 1982, “A Review of the History of Nondestructive Testing in Japan,” Materials Evaluation, American Society for Nondestructive Testing, Columbus, OH, Vol. 40, No. 11, p. 1138–1144. Jackson, L.R., H.M. Banta, R.C. McMaster, and T.P. Nordin, 1948, “A Survey of Patents, Publications on Non Destructive Tests,” The Drilling Contractor, International Association of Drilling Contractors, Houston, TX. Krüger, G. and H. Weeber, 1983, “Die Entwicklung der Technischen Durchstrahlungsprüfung in Deutschland,” Streiflichter aus der Geschichte der DGZfP, Deutsche Gesellschaft für Zerstörungsfreie Prüfung, Berlin, Germany. Lambert, R.H., 1976, “In Memoriam: Robert F. Mehl,” Materials Evaluation, American Society for Nondestructive Testing, Columbus, OH, Vol. 34, No. 7, p. 37A. Lenard, P., 1894, “On Cathode-Rays in Gases under Atmospheric Pressure and in the Extreme Vacuum,” Annalen der Physik, Berlin, Vol. 51, 225–267. Lester, H.H., 1922, “Radiography of Metals,” Army Ordnance, Vol. 3, pp. 210–215. Lester, H.H., 1923, “X-Ray Examination of Steel Castings,” Chemical and Metallurgical Engineering, McGraw Hill, New York, NY, Vol. 28, No. 6. Reprint in Wenk, S.A., 1969, “The Past Perfect,” Materials Evaluation, American Society for Nondestructive Testing, Columbus, OH, Vol. 27, No. 1, pp. 1–10. Lutts, C.G., 1954, “Ten Years’ Cooperation between the Society for Nondestructive Testing and the American Society for Metals,” Nondestructive Testing, American Society for Nondestructive Testing, Columbus, OH, Vol. 12, No. 1, pp. 31–36. McMaster, R.C. and S.A. Wenk, 1951, “A Basic Guide for Management’s Choice of Nondestructive Tests,” Symposium on the Role of Non Destructive Testing in the Economics of Production, Special Technical Publication 112, ASTM International, West Conshohocken, PA. Mohr, P. J., and B.N. Taylor, 2000, “CODATA Recommended Values of the Fundamental Physical Constants: 1998,” Reviews of Modern Physics, American Institute of Physics, Melville, NY, Vol. 72, No. 2., p 351. Moore, P.O., 1985, “A Gamma Radiographer of Pipeline Welds,” Materials Evaluation, American Society for Nondestructive Testing, Columbus, OH, Vol. 43, No. 9, pp. 1084–1086. Morgan, K.Z., 1971, “History of Radiation Protection,” Materials Evaluation, American Society for Nondestructive Testing, Columbus, OH, Vol. 29, No. 3, pp. 19A–20A, 22A, 24A–27A, 32A. NFPA, National Electric Code, National Fire Prevention Association, Quincy, MA. NIST SP 811, 2008, Guide for the Use of the International System of Units (SI),Washington, DC: US Government Printing Office, Washington, DC. Norton, M.R., 1986, “The Founder of Industrial Radiography: Personal Notes on Horace H. Lester,” Materials Evaluation, Columbus, OH: American Society for Nondestructive Testing, Columbus, OH, Vol. 44, No. 3, pp. 408–410. O’Connor, D.T. and B.G. Cunningham, 1949, “Installation of the Flexible 10 MeV Betatron,” Non Destructive Testing, Columbus, OH: American Society for Nondestructive Testing, Columbus, OH, Vol. 7, No. 4, pp. 20-23. Papadakis, E.P., 2006, Financial Justification of Nondestructive Testing: Cost of Quality in Manufacturing, CRC Press, Baton Rouge, LA. Prout, H.G., 1921, A Life of George Westinghouse, American Society of Mechanical Engineers, New York, NY. Röntgen, W.C., 1895, “Eine Neue Art von Strahlen” [“A New Kind of Rays”], Verhandlungen und Sitzungsberichte der Physikalisch- Medizinische Gesellschaft zu Würzburg, Physikalisch-Medizinische Gesellschaft zu Würzburg, Würzburg, Germany, p. 132. Continued (March 1986), pp. 11–17. Röntgen, W.C. 1897, [“Further Observations on the Properties of X-Rays.”] Berichte der Prussische Akademie der Wissenschaft, Berlin Brandenburgische Akademie der Wissenschaften [formerly the Preussische Akademie der Wissenschaften], Berlin, Germany. St. John, A., and H.R. Isenburger, 1934, “Industrial Radiography,” John Wiley and Sons, New York, NY. Straw, R., 1984, “Voices in the Air — The Early Days of Aircraft NDT,” Materials Evaluation, Vol. 42, No. 2, American Society for Nondestructive Testing, Columbus, OH, pp. 152–160. Straw, R., 1984, “‘If I Had a Million!’ The Early Years of High- Energy Radiography,” Materials Evaluation, American Society for Nondestructive Testing, Columbus, OH, Vol. 42, No. 3, pp. 264–268. Straw, R., 1984, “‘If I Had Ten Million!’ A Man and His Laboratory,” Materials Evaluation, American Society for Nondestructive Testing, Columbus, OH, Vol. 42, No. 4, pp. 374–375. Taylor, B.N., 1995, Guide for the Use of the International System of Units (SI), National Institute of Standards and Technology Special Publication 811, 1995 edition, Washington, DC: United States Government Printing Office, Washington, DC. Taylor, B.N., 1998, ed. Interpretation of the SI for the United States and Federal Government and Metric Conversion Policy, NIST Special Publication 814, 1998 Edition, United States Government Printing Office, Washington, DC. Taylor, B.N., 2001, ed. The International System of Units (SI), 2001 edition, NIST Special Publication 330, United States Government Printing Office, Washington DC. TM 55-1500-335-23 (T033B-1-1 NAVAIR 01-1A-16), Nondestructive Inspection Method, US Department of Defense, Washington, DC. TO33B-1-1 (NAVAIR 01-1A-16) TM43-0103, Technical Manual: Nondestructive Inspection Methods, Basic Theory, U.S. Air Force, Washington, DC. Turner, R. and D.D. Dewey, 1991, “Pictures and Passages: ASNT 1941- 1991,” American Society for Nondestructive Testing, Columbus, OH. Wenk, S.A., 1969, “The Past Perfect,” Materials Evaluation, American Society for Nondestructive Testing, Columbus, OH, Vol. 27, No. 1, pp. 1–10. Wenk, S.A. and R.C. McMaster, 1987, Choosing NDT: Applications, Costs and Benefits of Nondestructive Testing in Your Quality Assurance Program, American Society for Nondestructive Testing, Columbus, OH.
707 CHAPTER 2 Behling, R., 2016, Modern Diagnostic X-ray Sources Technology, Manufacturing, Reliability, Boca Raton, LA: CRC Press. Berger, M.J., J.H Hubbell, S.M. Seltzer, J. Chang, J.S. Coursey, R. Sukumar, D.S. Zucker, and K. Olsen, 2010, “XCOM: Photon Cross Sections Database.” NIST Standard Reference Database 8 (XGAM). Gaithersburg, MD: National Institute of Standards and Technology. Casino, 2007, v2.48, Université de Sherbrooke, Quebec, Canada Chadwick, J., 1932a, “Possible Existence of a Neutron,” Nature, 129(3252): pp. 312. Chadwick, J., 1932b, “The Existence of a Neutron,” Proceedings of the Royal Society, A 136: pp. 692–708. Hubbell, J. H., and S. M. Seltzer, July 2004, Radiation Physics Division, PML, NIST, NIST Standard Reference Database 126. Jackson, J. D., 1975, Classical Electrodynamics, 2nd edition, New York, NY: John Wiley and Sons. Kallmann, H., 1948, Neutron Radiography, Research, 1(6): p. 254–60. Kaplan, Irving, 1955, Nuclear Physics, Reading, MA: Addison-Wesley Publishing Company, Inc. National Research Council of the National Academies, 2008, Radiation Source Use and Replacement Abbreviated Version, Committee on Radiation Source Use and Replacement, Washington, D.C.: The National Academies Press. Reimer, L., 1998, Scanning Electron Microscopy—Physics of Image Formation, 2nd edition, Heidelberg, Germany: Springer-Verlag. Referenced in Behling. CHAPTER 3 ANSI/HPS N43.9-2015, Gamma Radiography: Specifications for the Design, Testing, and Performance Requirements for Industrial Gamma Radiography System Equipment Using Radiation Emitted by a Sealed Radioactive Source, Health Physics Society, McLean, VA. ANSI N432-1980, Radiological Safety for the Design and Construction of Apparatus for Gamma Radiography, National Bureau of Standards, Washington, DC. Anderson, M. E., and M.R. Hertz, 1971, “Thick Target Yields for Be-9 (Alpha, N) Reaction,” Nuclear Science and Engineering, 44(3): p. 437–439. Ballaux, C., 2000, “Gamma Radiography with 75Se Sources: Consequences of a Violent Fire,” Journal of the Health Physics Society, Vol. 78, No. 3, March. de Beer, F. C., 2005, “Characteristics of the Neutron/X-ray Tomography System at the SANRAD Facility in South Africa,” Nuclear Instruments & Methods in Physics Research Section A–Accelerators Spectrometers Detectors and Associated Equipment, 542(1-3): p. 1–8. Bethe, H., W. Heitler, and P.A.M. Dirac, 1934, “On the Stopping of Fast Particles and on the Creation of Positive Electrons,” Proceedings of the Royal Society if London, Series A, 146:83, Royal Society, London. Browne, E. and R.B. Firestone, 1986, Table of Radioactive Isotopes, John Wiley & Sons, Inc., New York, NY. Calzada, E., F. Gruenauer, and M. Mühlbauer, 2009, “New Design for the ANTARES-II Facility for Neutron Imaging at FRM II,” Nuclear Instruments & Methods in Physics Research Section A–Accelerators Spectrometers Detectors and Associated Equipment, 605(1-2): p. 50–53. Canadian Nuclear Safety Commission, 2017, “Radionuclide Information Booklet,” Canadian Nuclear Safety Commission, Carpenter, J. M., 1977, “Pulsed Spallation Neutron Sources for Slow- Neutron Scattering,” Nuclear Instruments & Methods, 145(1): p. 91–113. Carpenter, J.M., Yelon, W. B., 1986, Chapter 2: Neutron Sources, Methods in Experimental Physics, 23(A): p. 99–196. Eckerman, K., J. Harrison, H-G. Menzel, and C.H. Clement, 2012, “Compendium of Dose Coefficients Based on ICRP Publication 60,” Annals of the ICRP, Elsevier, Vol. 41, Supplement 1. Element Collection, Inc., n.d., “Periodic Table: Elements.” Accessed 14 December 2018. www.periodictable.com Firestone, R.B., and V.S. Shirley, 1996, Table of Isotopes, eighth edition, Vols. 1 and 2, John Wiley & Sons, Inc., New York, NY. Gamma Industry Processing Alliance (GIPA), n.d., “Production of Cobalt 60 Sources: GIPA Fact Sheet.” Garbe, U., T. Randall, C. Hughes, G. Davidson, S. Pangelis, and S. J.Kennedy, 2015, “A New Neutron Radiography/Tomography/Imaging Station DINGO at OPAL,” Proceedings of the 10th World Conference on Neutron Radiography (Wcnr-10), 69: p. 27–32. Goldstein, J.I., D.E.Newbury, J.R. Michael, N.W.M. Ritchie, j. Henry, J. Scott, and D.C. Joy, 1992, Scanning Electron Microscopy and X-ray Microanalysis, 2nd ed., New York: Plenum Press. Grimm, R., and T. Kaftal, 1996, “Gamma Radiography Utilising Selenium-75,” Insight, British Journal of Non-Destructive Testing, Vol. 38, No. 9, pp. 636–638. Hawkesworth, M. R., 1977, “Neutron Radiography: Equipment and Methods,” Atomic Energy Review, 15(2): p. 169–220. Hubble, J.H and S.M. Seltzer, 2004, “Tables of X-Ray Mass Attenuation Coefficients and Mass Energy-Absorption Coefficients from 1 keV to 20 MeV for Elements Z = 1 to 92 and 48 Additional Substances of Dosimetric Interest,” NIST Mass Attenuation Coefficients, Gaithersburg, MD: National Institute of Standards and Technology. Hussey, D. S., D. L. Jacobson, Muhammad Arif Arif, and K. J. Coackley, 2010, “In Situ Fuel Cell Water Metrology at the NIST Neutron Imaging Facility,” Journal of Fuel Cell Science and Technology, 7(2). IAEA TS-R-1/SSR-6, 2012, Regulations for the Safe Transport of Radioactive Material, International Atomic Energy Agency, pp. 92–93. Ikeda, S., 2002, “Japanese Spallation Neutron Source,” Applied Physics A– Materials Science & Processing, 74: p. S15–S17. JME Ltd., n.d., Pipeline Crawler Product Range, JME Advanced Inspection Systems. Jelfs, S., 2009, “Optimized Digital Radiography Using Co-60, Ir-192, and Se-75 Sources to Achieve Weld Quality Images,” Proceedings of the National Seminar & Exhibition on Non-Destructive Evaluation, Tiruchirapalli, India. Kaestner, A.P., S. Hartmann, G. Kühne, and G. Frei, 2011, “The ICON Beamline—A Facility for Cold Neutron Imaging at SINQ,” Nuclear Instruments & Methods in Physics Research Section A–Accelerators Spectrometers Detectors and Associated Equipment, 659(1): p. 387–93. Kardjilov, N., A. Hilger, I. Manke, R. Woracek, and J. Banharta, 2016, “CONRAD-2: The New Neutron Imaging Instrument at the Helmholtz- Zentrum Berlin,” Journal of Applied Crystallography, 49: p. 195–202. Knoll, G. F., 2010, Radiation Detection and Measurement, 4th Edition. Kopecky, J., J.C. Sublet, J.A. Simpson, R.A. Forrest, and D. Nierop, 1997, “Atlas of Neutron Capture Cross Sections,” International Nuclear Data Committee, International Atomic Energy Authority, Vol. 28, No. 20, Report No. INDC (NDS) 362. Laboratoire National Henri Becquerel, “Table de Radionucleides.” Cedex, France. Laboratoire National Henri Becquerel, n.d., “Table de Radionucleides.” Cedex, France. Lehmann, E. H., A. Kaestner, C. Grünzweig, D. Mannes, P. Vontobel, and Steven Peetermans, 2014, “Materials Research and Non-Destructive Testing Using Neutron Tomography Methods,” International Journal of Materials Research, 105(7): p. 664–70. Lerche, M., A. S. Tremsin, and B. Schillinger, 2015, “Bright Flash Neutron Radiography at the McClellan Nuclear Research Reactor,” Proceedings of the 10th World Conference on Neutron Radiography (Wcnr-10), 69: p. 299–303. REFERENCES
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