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2019 | OriginalPaper | Chapter

16. Anharmonic Interactions of Probing Ultrasonic Waves with Applied Loads Including Applications Suitable for Structural Health Monitoring

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Abstract

The historical background and the theoretical basis of the monitoring of stress and strain by acoustic waves is presented. Discussed are furthermore the results of digital simulations and the experimental developments and instrumental techniques needed to monitor the stress–strain relation present in the observed samples solely with the aid of traveling acoustic waves. The obtained experimental results are compared to conventional detection of the stress–strain relation performed synchronous to the developed ultrasonic monitoring for different metallic samples. Applications related to structural health monitoring of aircraft components by guided ultrasonic waves are exemplified to demonstrate the range of applications of the techniques developed for the presented monitoring scheme.

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Literature
2.
go back to reference M.F. Hamilton, D.T. Blackstock, Nonlinear Acoustics (Acoustical Society of America, Melville, 2008). ISBN 0-12-321860-8 M.F. Hamilton, D.T. Blackstock, Nonlinear Acoustics (Acoustical Society of America, Melville, 2008). ISBN 0-12-321860-8
3.
go back to reference W. Grill, K. Hillmann, K.U. Würz, Joachim Wesner, in Scanning Acoustic Microscopy with Phase Contrast. eds. By A. Briggs, W. Arnold. Advances in Acoustic Microscopy, vol. 2 (Plenum Press, New York. 1996). p. 167 W. Grill, K. Hillmann, K.U. Würz, Joachim Wesner, in Scanning Acoustic Microscopy with Phase Contrast. eds. By A. Briggs, W. Arnold. Advances in Acoustic Microscopy, vol. 2 (Plenum Press, New York. 1996). p. 167
5.
go back to reference T. Schneider, Nonlinear Optics in Telecommunications, in Advanced Texts in Physics. Four-Wave-Mixing (FWM), (Springer, Berlin, 2004), pp. 167–200 T. Schneider, Nonlinear Optics in Telecommunications, in Advanced Texts in Physics. Four-Wave-Mixing (FWM), (Springer, Berlin, 2004), pp. 167–200
6.
go back to reference H.J. Simpson, P.L. Marston, in Parametric Layers, Four-Wave Mixing, and Wave-Front Reversal. eds. By M.F. Hamilton, D.T. Blackstock. Nonlinear Acoustics. (ASA, Austin, 2008); originally published in 1998 H.J. Simpson, P.L. Marston, in Parametric Layers, Four-Wave Mixing, and Wave-Front Reversal. eds. By M.F. Hamilton, D.T. Blackstock. Nonlinear Acoustics. (ASA, Austin, 2008); originally published in 1998
8.
go back to reference T.J. Kim, W. Grill, Determination of the velocity of ultrasound by short pulse switched sinusoidal excitation and phase-sensitive detection by a computer-controlled pulse-echo system. Ultrasonics 36(1–5), 233–238 (1998)CrossRef T.J. Kim, W. Grill, Determination of the velocity of ultrasound by short pulse switched sinusoidal excitation and phase-sensitive detection by a computer-controlled pulse-echo system. Ultrasonics 36(1–5), 233–238 (1998)CrossRef
9.
go back to reference R. Ellwood, T. Stratoudaki, S.D. Sharples, M. Clark, M.G. Somekh, Determination of the acoustoelastic coefficient for surface acoustic waves using dynamic acoustoelastography: an alternative to static strain. J. Acoust. Soc. Am. 135(3), 1064–1070 (2014). https://doi.org/10.1121/1.4864308 CrossRef R. Ellwood, T. Stratoudaki, S.D. Sharples, M. Clark, M.G. Somekh, Determination of the acoustoelastic coefficient for surface acoustic waves using dynamic acoustoelastography: an alternative to static strain. J. Acoust. Soc. Am. 135(3), 1064–1070 (2014). https://​doi.​org/​10.​1121/​1.​4864308 CrossRef
10.
go back to reference W.H. Klever, J.W. Wilhelm, Ultrasonic bolt tension tester, U.S. Patent 3,306,100. Submitted: 25 Feb 1964 W.H. Klever, J.W. Wilhelm, Ultrasonic bolt tension tester, U.S. Patent 3,306,100. Submitted: 25 Feb 1964
11.
go back to reference A.M. Nicolson, Piezo-stress-sensor, US. Patent 2137852. Submitted: 8 Jan 1924 A.M. Nicolson, Piezo-stress-sensor, US. Patent 2137852. Submitted: 8 Jan 1924
12.
go back to reference K.S. Tarar, M. Pluta, U. Amjad, W. Grill, Lattice dynamics approach to determine the dependence of the time-of-flight of transversal polarized acoustic waves on external stress. Proc. SPIE 7984, 79842R (2011)CrossRef K.S. Tarar, M. Pluta, U. Amjad, W. Grill, Lattice dynamics approach to determine the dependence of the time-of-flight of transversal polarized acoustic waves on external stress. Proc. SPIE 7984, 79842R (2011)CrossRef
13.
go back to reference K. Hillmann, W. Grill, J. Bereiter-Hahn, Determination of ultrasonic attenuation in small samples of solid material by scanning acoustic microscopy with phase contrast. J. Alloys Compd. 211/212, 625–627 (1994)CrossRef K. Hillmann, W. Grill, J. Bereiter-Hahn, Determination of ultrasonic attenuation in small samples of solid material by scanning acoustic microscopy with phase contrast. J. Alloys Compd. 211/212, 625–627 (1994)CrossRef
14.
go back to reference D.K. Ferry, in Lattice Dynamics. Semiconductors Bonds and Bands (IOP Publishing Ltd, Bristol, 2013). pp. 3-1–3-32 D.K. Ferry, in Lattice Dynamics. Semiconductors Bonds and Bands (IOP Publishing Ltd, Bristol, 2013). pp. 3-1–3-32
16.
go back to reference P. Morse, H. Feshbach, Methods of Theoretical Physics, vol. 1, in International Series in Pure and Applied Physics, (McGraw-Hill, Boston, 1953) P. Morse, H. Feshbach, Methods of Theoretical Physics, vol. 1, in International Series in Pure and Applied Physics, (McGraw-Hill, Boston, 1953)
17.
go back to reference Z. Caamaño-Withall, P. Krysl, Taut string model: getting the right energy versus getting the energy the right way. World J. Mech. 6(2), 24–33 (2016)CrossRef Z. Caamaño-Withall, P. Krysl, Taut string model: getting the right energy versus getting the energy the right way. World J. Mech. 6(2), 24–33 (2016)CrossRef
18.
go back to reference K.S. Tarar, R. Meier, U. Amjad, W. Grill, Stress detection with guided acoustic ultrasonic waves by non-linear elastic and geometric effects. Proc. SPIE 2009, 729518 (2009)CrossRef K.S. Tarar, R. Meier, U. Amjad, W. Grill, Stress detection with guided acoustic ultrasonic waves by non-linear elastic and geometric effects. Proc. SPIE 2009, 729518 (2009)CrossRef
19.
go back to reference T.C.A. Molteno, N.B. Tufillaro, An experimental investigation into the dynamics of a string. Am. J. Phys. 72(9), 1157–1169 (2004)CrossRef T.C.A. Molteno, N.B. Tufillaro, An experimental investigation into the dynamics of a string. Am. J. Phys. 72(9), 1157–1169 (2004)CrossRef
21.
go back to reference J.Y. Grill, Ultrasonic detection of stress and strain in materials under load. Diploma Thesis, RWTH-Aachen, 2014 J.Y. Grill, Ultrasonic detection of stress and strain in materials under load. Diploma Thesis, RWTH-Aachen, 2014
22.
23.
go back to reference G. Adlhoch, W. Grill, R. Kociorski. A method for determining the clamping force of linking units by means of ultrasonic agitation. Patent DE102004038638B3, 9 Aug 2004 G. Adlhoch, W. Grill, R. Kociorski. A method for determining the clamping force of linking units by means of ultrasonic agitation. Patent DE102004038638B3, 9 Aug 2004
24.
go back to reference W. Grill, R. Kociorski, Method for correcting the influence of signal transmission lines on changes of signal transit times when conducting ultrasonic measurements. Patent WO2005121773A1 (CA2569839A1, DE102004027919B3, EP1754051A1, EP1754051B1), 9 June 2004 W. Grill, R. Kociorski, Method for correcting the influence of signal transmission lines on changes of signal transit times when conducting ultrasonic measurements. Patent WO2005121773A1 (CA2569839A1, DE102004027919B3, EP1754051A1, EP1754051B1), 9 June 2004
25.
go back to reference M. Niksch, W. Grill, Numerical calculations of ultrasonic echo patterns and implications on the determination of the velocity of sound. Acoustica 64, 26 (1987) M. Niksch, W. Grill, Numerical calculations of ultrasonic echo patterns and implications on the determination of the velocity of sound. Acoustica 64, 26 (1987)
26.
go back to reference G. Birkelbach, W. Grill, S. Kuznetsov, V. Pavelko, Integral structural health and load monitoring of a helicopter tail boom manufactured from aluminum sheet metal with support from frames and stringers by guided ultrasonic waves. Proc. SPIE 2012, 8348 (2012) G. Birkelbach, W. Grill, S. Kuznetsov, V. Pavelko, Integral structural health and load monitoring of a helicopter tail boom manufactured from aluminum sheet metal with support from frames and stringers by guided ultrasonic waves. Proc. SPIE 2012, 8348 (2012)
27.
28.
go back to reference K. Fossheim, in Nonequilibrium Phonon Dynamics, ed. By W.E. Bron. Phonon Echoes, Polarization Echoes, and Acoustic Phase Conjugation in Solids, vol. 124. NATO ASI Series (Springer, Boston, 1985). pp. 277–312 K. Fossheim, in Nonequilibrium Phonon Dynamics, ed. By W.E. Bron. Phonon Echoes, Polarization Echoes, and Acoustic Phase Conjugation in Solids, vol. 124. NATO ASI Series (Springer, Boston, 1985). pp. 277–312
29.
go back to reference V. Jeanclaude, C. Fressengeas, Le Chatelier effect. Propagating pattern selection in the Portevin. Scr. Metall. Mater. 29, 9 (1993)CrossRef V. Jeanclaude, C. Fressengeas, Le Chatelier effect. Propagating pattern selection in the Portevin. Scr. Metall. Mater. 29, 9 (1993)CrossRef
Metadata
Title
Anharmonic Interactions of Probing Ultrasonic Waves with Applied Loads Including Applications Suitable for Structural Health Monitoring
Authors
Julian Grill
Wolfgang Grill
Copyright Year
2019
DOI
https://doi.org/10.1007/978-3-319-94476-0_16

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