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Original Articles

AE source localization and imaging on cylindrical shell structures based on six-AE-sensor monitoring network and VTR focusing imaging

ORCID Icon, ORCID Icon, ORCID Icon, ORCID Icon, ORCID Icon, ORCID Icon & ORCID Icon show all
Pages 35-61 | Received 03 Jun 2019, Accepted 31 Oct 2019, Published online: 19 Nov 2019

References

  • Quarini J, Shire S. A review of fluid-driven pipeline pigs and their applications. Inst Mech Eng Part E: J Process Mech Eng. 2007;221:1–10.
  • Edalati K, Rastkhah N, Kermani A, et al. The use of radiography for thickness measurement and corrosion monitoring in pipes. Int J Press Vessels Pip. 2006;83(10):736–741.
  • Safizadeh S, Hasanian M. Gas pipeline corrosion mapping using pulsed eddy current technique. Int J Adv Des Manuf Technol. 2011;5(1):11–18.
  • Cheng W. Pulsed eddy current testing of carbon steel pipe wall-thinning through insulation and cladding. J Nondestruct Eval. 2012;31(3):215–224.
  • Li Y, Yan B, Li D, et al. Gradient-field pulsed eddy current probes for imaging of hidden corrosion in conductive structures. Sens Actuators A. 2016;238:251–265.
  • De Raad J, Bouma T, Bonisch A. Rapid corrosion screening in up to 30mm wall thickness for plates and pipe. Insight. 2002;44(2):97–103.
  • Jarvis R, Cawley P, Nagy PB. Current deflection NDE for the inspection and monitoring of pipes. NDT E Int. 2016;81:46–59.
  • Larsen KR. Dynamic pulsed eddy current in line inspection technology assesses unpiggable pipelines. Mater Perform. 2015;54(4):14–16.
  • Lowe M, Alleyne D, Cawley P. Defect detection in pipes using guided waves. Ultrasonics. 1998;36(1–5):147–154.
  • Cawley P, Lowe MJS, Alleyne D, et al. Practical long range guided wave testing: applications to pipes and rail. Mater Eval. 2003;61(1):66–74.
  • Alleyne D, Pavlakovic B, Lowe M, et al. Rapid, long range inspection of chemical plant pipe work using guided waves. Key Eng Mater. 2004;270-273:434–441.
  • Leinov E, Lowe MJ, Cawley P. Ultrasonic isolation of buried pipes. J Sound Vib. 2016;363:225–239.
  • Honarvar F, Salehi F, Safavi V, et al. Ultrasonic monitoring of erosion/corrosion thinning rates in industrial piping systems. Ultrasonics. 2013;53(7):1251–1258.
  • Jiles DC. Theory of the magnetomechanical effect. J Phys D: Appl Phys. 1995;28(8):1537–1546.
  • Augustyniak M, Usarek Z. Discussion of derivability of local residual stress level from magnetic stray field measurement. J Nondestruct Eval. 2015;34(3):21.
  • Krivoi GS. NoPig: an above-ground inspection technique for non-piggable pipelines. Oil Gas Eur Magn. 2008;34(3):122–124.
  • Aljets D, Chong A, Wilcox S, et al. Acoustic emission source location on large plate-like structures using a local triangular sensor array. Mech Syst Sig Process. 2012;30(7):91–102.
  • Leone C, Lopresto V, Papa I. Triangulation method as a valid tool to locate the damage in unidirectional CFRP laminates. Compos Struct. 2012;94(8):2418–2423.
  • Dehghan-Niri E, Farhidzadeh A, Salamone S. Determination of the probability zone for acoustic emission source location in cylindrical shell structures. Mech Syst Sig Process. 2015;60-61:971–985.
  • Yang HJ, Shin TJ, Lee S. Source location in plates based on the multiple sensors array method and wavelet analysis. J Mech Sci Technol. 2014;28(1):1–8.
  • Mostafapour A, Davoodi S, Ghareaghaji M. Acoustic emission source location in plates using wavelet analysis and cross time frequency spectrum. Ultrasonics. 2014;54(8):2055–2062.
  • Mori N, Biwa S, Kusaka T. Damage localization method for plates based on the time reversal of the mode-converted lamb waves. Ultrasonics. 2019;91:19–29.
  • Zhang HY, Cao YP, Sun XL, et al. A time reversal damage imaging method for structure health monitoring using lamb waves. Chin Phys B. 2010;19(11):448–455.
  • Ing RK, Fink M. Time‐reversed lamb waves. IEEE Trans Ultrason Ferroelectr Freq Control. 1998;45(4):1032–1043.
  • Mitra M, Gopalakrishnan S. Guided wave based structural health monitoring: a review. Smart Mater Struct. 2016;25(5):053001.
  • Cai J, Shi L, Yuan S, et al. High spatial resolution imaging for structural health monitoring based on virtual time reversal. Smart Mater Struct. 2011;20(5):055018.
  • Du F, Xu C, Wu G, et al. Preload monitoring of bolted L-shaped lap joints using virtual time reversal method. Sensors. 2018;18(6):1928.
  • Du F, Xu C, Wu G, et al. A bolt preload monitoring method based on the refocusing capability of virtual time reversal. Struct Control Health Monit. 2019;26(8):e2370.
  • Sai YZ, Jiang MS, Sui QM, et al. Multi-source acoustic emission localization technology research based on FBG sensing network and time reversal focusing imaging. Optik. 2016;127(1):493–498.
  • Barat P, Kalyanasundaram P, Raj B. Acoustic emission source location on a cylindrical surface. NDTE Int. 1993;26(6):295–297.
  • Mostafapour A, Davoodi S. Continuous leakage location in noisy environment using modal and wavelet analysis with one AE sensor. Ultrasonics. 2015;62:305–311.
  • Davoodi S, Mostafapour A. Gas leak locating in steel pipe using wavelet transform and cross-correlation method. Int J Adv Manuf Tech. 2014;70(5–8):1125–1135.
  • Mostafapour A, Davoodi S. Analysis of leakage in high pressure pipe using acoustic emission method. Appl Acoust. 2013;74(3):335–342.
  • Davoodi S, Mostafapour A. Modeling acoustic emission signals caused by leakage in pressurized gas pipe. J Nondestruct Eval. 2013;32(1):67–80.

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