Books on the topic 'Ultrasonic inspection'

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1

Schramm, Raymond E. Ultrasonic railroad wheel inspection using EMATS. Washington, DC: National Institute of Standards and Technology, 1989.

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2

Rose, Joseph L. Ultrasonic F-scan inspection of composite materials. Lakehurst, N.J: Naval Air Engineering Center, 1985.

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3

T, Kundu, ed. Advanced ultrasonic methods for material and structure inspection. London, UK: ISTE, 2006.

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4

Welding, International Institute of. Automated ultrasonic weld inspection: Guidance on the merits, performance requirements, selection and applications of automated ultrasonic inspection for welds. Northampton: British Institute of Non-Destructive Testing, 1989.

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5

Brook, Mark V. Ultrasonic Inspection Technology Development and Search Unit Design. Hoboken, NJ, USA: John Wiley & Sons, Inc., 2011. http://dx.doi.org/10.1002/9781118104781.

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6

Kundu, Tribikram, ed. Advanced Ultrasonic Methods for Material and Structure Inspection. London, UK: ISTE, 2007. http://dx.doi.org/10.1002/9780470612248.

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7

V, Harris R., U.S. Nuclear Regulatory Commission. Office of Nuclear Regulatory Research. Division of Systems Research., and Pacific Northwest Laboratory, eds. Evaluation of computer-based ultrasonic inservice inspection systems. Washington, DC: Division of Engineering, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 1994.

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8

V, Harris R., U.S. Nuclear Regulatory Commission. Office of Nuclear Regulatory Research. Division of Systems Research., and Pacific Northwest Laboratory, eds. Evaluation of computer-based ultrasonic inservice inspection systems. Washington, DC: Division of Engineering, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 1994.

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9

R, Doctor S., U.S. Nuclear Regulatory Commission. Office of Nuclear Regulatory Research. Division of Engineering Technology., and Pacific Northwest National Laboratory (U.S.), eds. Piping inspection round robin. Washington, DC: Division of Engineering Technology, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 1996.

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10

R, Doctor S., U.S. Nuclear Regulatory Commission. Office of Nuclear Regulatory Research. Division of Engineering Technology., and Pacific Northwest National Laboratory (U.S.), eds. Piping inspection round robin. Washington, DC: Division of Engineering Technology, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 1996.

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11

Hartman, J. K. Early focus development effect, ultrasonic inspection of fixed housing metal-to-adhesive bondline: Final report. [Brigham City, UT]: Thiokol Corporation, Space Operations, 1991.

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12

R, Hoskins Brad, Karner Paul, Thiokol Corporation Space Operations, and George C. Marshall Space Flight Center., eds. Early focus development effect, ultrasonic inspection of fixed housing metal-to-adhesive bondline: Final report. Brigham City, UT: Thiokol Corporation, Space Operations, 1991.

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13

A, Diaz A., U.S. Nuclear Regulatory Commission. Office of Nuclear Regulatory Research. Division of Engineering Technology., and Pacific Northwest National Laboratory (U.S.), eds. Evaluation of ultrasonic inspection techniques for coarse-grained materials. Washington, DC: Division of Engineering Technology, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 1998.

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14

T, Donohoo D., Harris R. V, U.S. Nuclear Regulatory Commission. Office of Nuclear Regulatory Research. Division of Engineering Technology., and Pacific Northwest National Laboratory (U.S.), eds. An evaluation of human factors research for ultrasonic inservice inspection. Washington, DC: Division of Engineering Technology, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 1998.

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15

C, Spanner J., U.S. Nuclear Regulatory Commission. Office of Nuclear Regulatory Research. Division of Engineering., and Pacific Northwest Laboratory, eds. Qualification process for ultrasonic testing in nuclear inservice inspection applications. Washington, DC: Division of Engineering, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 1990.

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16

Seed, Hartley. Reliability of ultrasonic inspection of thicksection welded steel, pressure vessels. Salford: University of Salford, 1986.

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17

Kucharski, William M. Underwater inspection of coastal structures using commercially available sonars. [Vicksburg, Miss: U.S. Army Engineer Waterways Experiment Station, 1990.

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18

Kucharski, William M. Underwater inspection of coastal structures using commercially available sonars. [Vicksburg, Miss: U.S. Army Engineer Waterways Experiment Station, 1990.

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19

Brook, Mark V. Ultrasonic inspection technology development and search unit design: Examples of practical applications. Hoboken, N.J: Wiley, 2011.

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20

Canada, Atomic Energy of. Ultrasonic Inspection of Titanium Diffusion Bonds For Nuclear Fuel Waste Containers. S.l: s.n, 1985.

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21

B, Hunt James, and Construction Engineering Research Laboratories (U.S.), eds. Demonstration of polyscann ultrasonic butt-fusion inspection system for polyethylene pipes. Champaign, IL: U.S. Army Construction Engineering Research Laboratories, 1993.

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22

Brophy, Joseph W. Automated imaging system for bridge inspection. [Washington, DC]: U.S. Dept. of Transportation, Federal Highway Administration, 1988.

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23

W, Nichols R., Crutzen S, Programme for the Inspection of Steel Components., Commission of the European Communities. Joint Research Centre. Ispra Establishment., OECD Nuclear Energy Agency, and PISC Symposium (1986 : Varese, Italy), eds. Ultrasonic inspection of heavy section steel components: The PISC II final report. London: Elsevier Applied Science, 1988.

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24

Lane, Christopher. The Development of a 2D Ultrasonic Array Inspection for Single Crystal Turbine Blades. Cham: Springer International Publishing, 2014. http://dx.doi.org/10.1007/978-3-319-02517-9.

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25

United States. National Aeronautics and Space Administration., ed. Ultrasonic inspection of carbon fiber reinforced plastic by means of sample recognition methods. Washington D.C: National Aeronautics and Space Administration, 1985.

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26

United States. National Aeronautics and Space Administration. and Thiokol Corporation Space Operations, eds. Qualification of the RSRM case membrane case-to-insulation bondline inspection using the Thiokol Corporation ultrasonic RSRM bondline inspection system: Final test report. Brigham City, UT: Thiokol Corporation, Space Operations, 1990.

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27

Cook, M. Qualification of the RSRM field joint CF case-to-insulation bondline inspection using the Thiokol Corporation ultrasonic RSRM bondline inspection system: Final test report. Brigham City, UT: Thiokol Corporation, Space Operations, 1990.

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28

Wu, P. Erosion/corrosion-induced pipe wall thinning in U.S. nuclear power plants. Washington, D.C: Division of Engineering and Systems Technology, Office of Nuclear Reactor Regulation, U.S. Nuclear Regulatory Commission, 1989.

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29

Wu, P. Erosion/corrosion-induced pipe wall thinning in U.S. nuclear power plants. Washington, D.C: Division of Engineering and Systems Technology, Office of Nuclear Reactor Regulation, U.S. Nuclear Regulatory Commission, 1989.

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30

Wu, P. Erosion/corrosion-induced pipe wall thinning in U.S. nuclear power plants. Washington, D.C: Division of Engineering and Systems Technology, Office of Nuclear Reactor Regulation, U.S. Nuclear Regulatory Commission, 1989.

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31

Wu, P. Erosion/corrosion-induced pipe wall thinning in U.S. nuclear power plants. Washington, D.C: Division of Engineering and Systems Technology, Office of Nuclear Reactor Regulation, U.S. Nuclear Regulatory Commission, 1989.

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32

Wu, P. Erosion/corrosion-induced pipe wall thinning in U.S. nuclear power plants. Washington, D.C: Division of Engineering and Systems Technology, Office of Nuclear Reactor Regulation, U.S. Nuclear Regulatory Commission, 1989.

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33

Wu, P. Erosion/corrosion-induced pipe wall thinning in U.S. nuclear power plants. Washington, D.C: Division of Engineering and Systems Technology, Office of Nuclear Reactor Regulation, U.S. Nuclear Regulatory Commission, 1989.

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34

Hall, T. E. The SAFT-UT real-time inspection system: Operational principles and implementation. Washington, DC: Division of Engineering, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 1988.

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35

Hall, T. E. The SAFT-UT real-time inspection system: Operational principles and implementation. Washington, DC: Division of Engineering, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 1988.

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36

United States. National Aeronautics and Space Administration., ed. Generic system components of the Thiokol ultrasonic RSRM case-to-insulation bondline inspection system: Final test report. Brigham City, Utah: Thiokol Corporation, Space Operations, 1989.

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37

Kenzie, B. W. An appraisal of methods for quantifying the performance of ultrasonic inspection techniques for detecting and sizing weld flaws. Cambridge: TWI, 1996.

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38

Schuster, G. J. Reliability of ultrasonic in-service inspection of welds in reactor internals of boiling water reactors / prepared by G.J. Schuster [and four others]. Washington, D.C: United States Nuclear Regulatory Commission, Office of Nuclear Regulatory Research, 2013.

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39

Miller, James G. Application of linear array imaging techniques to the real-time inspection of airframe structures and substuctures: Annual progress report, March 15, 1995 - October 31, 1995. St. Louis, Mo: Washington University, Dept. of Physics, Laboratory for Ultrasonics, 1995.

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40

United States. National Aeronautics and Space Administration., ed. Application of linear array imaging techniques to the real-time inspection of airframe structures and substuctures: Annual progress report, March 15, 1995 - October 31, 1995. St. Louis, Mo: Washington University, Dept. of Physics, Laboratory for Ultrasonics, 1995.

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41

Heasler, P. G. Ultrasonic inspection reliability for intergranular stress corrosion cracks: A round robin study of the effects of personnel, procedures, equipment and crack characteristics. Washington, DC: Division of Engineering, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 1990.

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42

Smith, Alphonso C. "Development of an ultrasonic and Fabry-Perot interferometer for non-destruction inspection of aging aircraft": Final report for NASA Dryden Flight Research Center grant # NAG4-0012. Hampton, Va: Hampton University, 1998.

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43

United States. National Aeronautics and Space Administration., ed. "Ultrasonic nondestructive evaluation techniques applied to the quantitative characterization of textile composite materials": Semi-annual progress report--June 13, 1997 - December 12, 1997; NASA grant number--NAG1-1848. St. Louis, Mo: Washington University, Dept. of Physics, Laboratory for Ultrasonics, 1997.

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44

Miller, James G. Ultrasonic nondestructive evaluation techniques applied to the quantitative characterization of textile composite materials: Semiannual progress report: December 12, 1996 - June 12, 1997; NASA grant number: NAG 1-1848. St. Louis, Mo: Washington University, Dept. of Physics, Laboratory for Ultrasonics, 1997.

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45

Cartz, Louis. Nondestructive testing: Radiography, ultrasonics, liquid penetrant, magnetic particle, eddy current. Materials Park, OH: ASM International, 1995.

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46

Coffey, J. Automated Ultrasonic Weld Inspection. British Institute of Non-Destructive Testing, 1989.

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47

Charlesworth, J. P., and J. A. G. Temple. Engineering Applications of Ultrasonic Time-of-Flight Diffraction (Ultrasonic Inspection in Engineering Series) (Ultrasonic Inspection in Engineering Series). 2nd ed. Taylor & Francis Group, 2002.

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48

Placko, Dominique, and Tribikram Kundu. Advanced Ultrasonic Methods for Material and Structure Inspection. Wiley & Sons, Incorporated, John, 2013.

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49

Placko, Dominique, and Tribikram Kundu. Advanced Ultrasonic Methods for Material and Structure Inspection. Wiley & Sons, Incorporated, John, 2010.

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50

Placko, Dominique, and Tribikram Kundu. Advanced Ultrasonic Methods for Material and Structure Inspection. Wiley & Sons, Incorporated, John, 2013.

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