Books on the topic 'Ultrasonic non-Destructive evaluation (UNDE)'
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Miller, James G. Quantitative non-destructive evaluation of porous composite materials based on ultrasonic wave propagation. St. Louis, Mo: Washington University, Dept. of Physics, Laboratory for Ultrasonics, 1988.
Find full textMiller, James G. Quantitative non-destructive evaluation of porous composite materials based on ultrasonic wave propagation. St. Louis, Mo: Washington University, Dept. of Physics, Laboratory for Ultrasonics, 1988.
Find full textCenter, Langley Research, ed. Quantitative non-destructive evaluation of porous composite materials based on ultrasonic wave propagation: Semiannual progress report, March 15, 1987 - September 14, 1987. St. Louis, Mo: Washington University, Dept. of Physics, Laboratory for Ultrasonics, 1987.
Find full textCenter, Langley Research, ed. Quantitative non-destructive evaluation of porous composite materials based on ultrasonic wave propagation: Semiannual progress report, March 15, 1987 - September 14, 1987. St. Louis, Mo: Washington University, Dept. of Physics, Laboratory for Ultrasonics, 1987.
Find full textMiller, James G. Quantitative non-destructive evaluation of composite materials based on ultrasonic wave propagation: Semiannual progress report, March 15, 1986 - September 14, 1986. St. Louis, Mo: Washington University, Dept. of Physics, Laboratory for Ultrasonics, 1986.
Find full textCenter, Langley Research, ed. Quantitative non-destructive evaluation of composite materials based on ultrasonic wave propagation: Semiannual progress report, March 15, 1985 - September 15, 1985. St. Louis, Mo: Washington University, Dept. of Physics, Laboratory for Ultrasonics, 1985.
Find full textCenter, Langley Research, ed. Quantitative non-destructive evaluation of composite materials based on ultrasonic wave propagation: Semiannual progress report, March 15, 1985 - September 15, 1985. St. Louis, Mo: Washington University, Dept. of Physics, Laboratory for Ultrasonics, 1985.
Find full textMiller, James G. Quantitative non-destructive evaluation of composite materials based on ultrasonic wave propagation: Semiannual progress report March 15, 1985 - September 15, 1985. St. Louis, Mo: Washington University, Laboratory for Ultrasonics, 1985.
Find full textMiller, James G. Physical principles of ultrasonic non-destructive evaluation of advanced composites: Semiannual progress report, March 15, 1988 - September 14, 1988. St. Louis, Mo: Washington University, Dept. of Physics, Laboratory for Ultrasonics, 1988.
Find full textUnited States. National Aeronautics and Space Administration, ed. Quantitative non-destructive evaluation of composite materials based on ultrasonic parameters: Semiannual progress report, September 15, 1986 - March 15, 1987. St. Louis, Mo: Washington University, Dept. of Physics, Laboratory for Ultrasonics, 1987.
Find full textUnited States. National Aeronautics and Space Administration., ed. Quantitative non-destructive evaluation of composite materials based on ultrasonic parameters: Semiannual progress report, September 15, 1986 - March 15, 1987. St. Louis, Mo: Washington University, Dept. of Physics, Laboratory for Ultrasonics, 1987.
Find full textUnited States. National Aeronautics and Space Administration., ed. Quantitative non-destructive evaluation of composite materials based on ultrasonic parameters: Semiannual progress report, September 15, 1986 - March 15, 1987. St. Louis, Mo: Washington University, Dept. of Physics, Laboratory for Ultrasonics, 1987.
Find full textUnited States. National Aeronautics and Space Administration, ed. Quantitative non-destructive evaluation of composite materials based on ultrasonic wave propagation: Semiannual progress report, March 15, 1986 - September 14, 1986. St. Louis, Mo: Washington University, Dept. of Physics, Laboratory for Ultrasonics, 1986.
Find full textCenter, Langley Research, ed. Quantitative non-destructive evaluation of porous composite materials based on ultrasonic wave propagation: Semiannual progress report, March 15, 1987 - September 14, 1987. St. Louis, Mo: Washington University, Dept. of Physics, Laboratory for Ultrasonics, 1987.
Find full textCenter, Langley Research, ed. Quantitative non-destructive evaluation of porous composite materials based on ultrasonic wave propagation: Semiannual progress report, March 15, 1987 - September 14, 1987. St. Louis, Mo: Washington University, Dept. of Physics, Laboratory for Ultrasonics, 1987.
Find full textUnited States. National Aeronautics and Space Administration., ed. Physical interpretation and development of ultrasonic nondestructive evaluation techniques applied to the quantitative characterization of textile composite materials: Semiannual progress report : March 15, 1992-September 14, 1992. St. Louis, Mo: Washington University, Dept. of Physics, Laboratory for Ultrasonics, 1992.
Find full textUnited States. National Aeronautics and Space Administration., ed. Physical interpretation and development of ultrasonic nondestructive evaluation techniques applied to the quantitative characterization of textile composite materials: Semiannual progress reprt, March 15, 1993 - September 14, 1993. St. Louis, Mo. : Washington University , Dept. of Physics, Laboratory for Ultrasonics: National Aeronautics and Space Administration, 1993.
Find full textMiller, James G. Physical interpretation and development of ultrasonic nondestructive evaluation techniques applied to the quantitative characterization of textile composite materials: Semiannual progress report, September 15, 1994 - March 14, 1995. St. Louis, Mo. : Washington University, Dept. of Physics, Laboratory for Ultrasonics: National Aeronautics and Space Administration, 1995.
Find full textUnited States. National Aeronautics and Space Administration., ed. Physical interpretation and development of ultrasonic nondestructive evaluation techniques applied to the quantitative characterization of textile composite materials: Semiannual progress report, September 15, 1994 - March 14, 1995. St. Louis, Mo. : Washington University, Dept. of Physics, Laboratory for Ultrasonics: National Aeronautics and Space Administration, 1995.
Find full textUnited States. National Aeronautics and Space Administration., ed. Physical interpretation and development of ultrasonic nondestructive evaluation techniques applied to the quantitative characterization of textile composite materials: Semiannual progress reprt, March 15, 1993 - September 14, 1993. St. Louis, Mo. : Washington University , Dept. of Physics, Laboratory for Ultrasonics: National Aeronautics and Space Administration, 1993.
Find full textMiller, James G. Physical interpretation and development of ultrasonic nondestructive evaluation techniques applied to the quantitative characterization of textile composite materials: Semiannual progress report : March 15, 1992-September 14, 1992. St. Louis, Mo: Washington University, Dept. of Physics, Laboratory for Ultrasonics, 1992.
Find full textBlitz, J., and G. Simpson. Ultrasonic Methods of Non-destructive Testing (Non-Destructive Evaluation Series). Springer, 1996.
Find full textKhaira, Ashish. Evaluation and Applications for Ultrasonic Methods of Non-Destructive Testing. IGI Global, 2021.
Find full textNational Aeronautics and Space Administration (NASA) Staff. Quantitative Non-Destructive Evaluation of Porous Composite Materials Based on Ultrasonic Wave Propagation. Independently Published, 2018.
Find full textQuantitative non-destructive evaluation of composite materials based on ultrasonic wave propagation: Semiannual progress report, March 15, 1986 - September 14, 1986. St. Louis, Mo: Washington University, Dept. of Physics, Laboratory for Ultrasonics, 1986.
Find full textQuantitative non-destructive evaluation of composite materials based on ultrasonic parameters: Semiannual progress report, September 15, 1986 - March 15, 1987. St. Louis, Mo: Washington University, Dept. of Physics, Laboratory for Ultrasonics, 1987.
Find full textQuantitative non-destructive evaluation of composite materials based on ultrasonic wave propagation: Semiannual progress report, March 15, 1986 - September 14, 1986. St. Louis, Mo: Washington University, Dept. of Physics, Laboratory for Ultrasonics, 1986.
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