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  • Principles of nonlinear ultrasonic mixing impulse spectroscopy (NUMIS) show great potential advantages in comparison with other nonlinear ultrasonic methods. It is first of all from the point of view of sensitivity and possibility of quick, simple and precise localization of a defect. This paper elaborates on the principles and algorithms of calculation of the defect place for this method. The point idealization of ultrasonic transducers and receivers are supposed for this aim. With the successive increase in delay of the second excitation pulse to the first one it can be obtained distribution of image defects on test subjects in a 2D plane within seconds.
  • Principles of nonlinear ultrasonic mixing impulse spectroscopy (NUMIS) show great potential advantages in comparison with other nonlinear ultrasonic methods. It is first of all from the point of view of sensitivity and possibility of quick, simple and precise localization of a defect. This paper elaborates on the principles and algorithms of calculation of the defect place for this method. The point idealization of ultrasonic transducers and receivers are supposed for this aim. With the successive increase in delay of the second excitation pulse to the first one it can be obtained distribution of image defects on test subjects in a 2D plane within seconds. (en)
Title
  • Principles of a Defect Localisation in Nonlinear Ultrasonic Mixing Impulse Spectroscopy
  • Principles of a Defect Localisation in Nonlinear Ultrasonic Mixing Impulse Spectroscopy (en)
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  • Principles of a Defect Localisation in Nonlinear Ultrasonic Mixing Impulse Spectroscopy
  • Principles of a Defect Localisation in Nonlinear Ultrasonic Mixing Impulse Spectroscopy (en)
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  • RIV/60162694:G43__/14:00526192!RIV15-MO0-G43_____
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  • 39381
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  • RIV/60162694:G43__/14:00526192
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  • nonlinear ultrasonic mixing spectroscopy; sensitivity; impulse excitation; localization (en)
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  • CZ - Česká republika
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  • [29B4F8FF704D]
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  • Advances in Military Technology
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  • 9
http://linked.open...iv/tvurceVysledku
  • Hájek, Karel
  • Nenakhova, Valeriya
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  • 1802-2308
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  • G43
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