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Items: 1 to 20 of 180

1.

Lamb wave propagation in a plate with a grooved surface with several spatial periodicities.

Leduc D, Morvan B, Hladky AC, Pareige P, Izbicki JL.

Ultrasonics. 2006 Dec 22;44 Suppl 1:e1359-63. Epub 2006 Jun 5.

PMID:
16793080
2.

Propagation of Lamb waves in an immersed periodically grooved plate: experimental detection of the scattered converted backward waves.

Harhad N, El-Kettani ME, Djelouah H, Izbicki JL, Predoi MV.

Ultrasonics. 2014 Mar;54(3):860-6. doi: 10.1016/j.ultras.2013.10.012. Epub 2013 Oct 29.

PMID:
24262677
3.

Ultrasonic guided wave scattering in a plate overlap.

Song WJ, Rose JL, Galán JM, Abascal R.

IEEE Trans Ultrason Ferroelectr Freq Control. 2005 May;52(5):892-903.

PMID:
16048190
4.

3D analysis of interaction of Lamb waves with defects in loaded steel plates.

Kazys R, Mazeika L, Barauskas R, Raisutis R, Cicenas V, Demcenko A.

Ultrasonics. 2006 Dec 22;44 Suppl 1:e1127-30. Epub 2006 Jun 9.

PMID:
16797639
5.

Experimental study and signal analysis in the Lamb wave conversion at a bevelled edge.

Wilkie-Chancellier N, Duflo H, Tinel A, Duclos J.

Ultrasonics. 2004 Apr;42(1-9):377-81.

PMID:
15047315
6.

Reflection and transmission coefficients for guided waves reflected by defects in viscoelastic material plates.

Hosten B, Moreau L, Castaings M.

J Acoust Soc Am. 2007 Jun;121(6):3409-17.

PMID:
17552692
7.

Scattering of Rayleigh-Lamb waves by a surface breaking crack in an elastic plate.

Flores-López MA, Gregory RD.

J Acoust Soc Am. 2006 Apr;119(4):2041-9.

PMID:
16642817
8.

Guided waves in elastic plates with Gaussian section variation: experimental and numerical results.

Marical P, El-Kettani ME, Predoi MV.

Ultrasonics. 2007 Dec;47(1-4):1-9. Epub 2007 Jun 9.

PMID:
17659314
9.

Fast beating null strip during the reflection of pulsed Gaussian beams incident at the Rayleigh angle.

Declercq NF.

Ultrasonics. 2006 Dec 22;44 Suppl 1:e1447-51. Epub 2006 Jun 12.

PMID:
16815510
10.

Characterization of surface properties of a solid plate using nonlinear Lamb wave approach.

Deng M.

Ultrasonics. 2006 Dec 22;44 Suppl 1:e1157-62. Epub 2006 Jun 8.

PMID:
16797666
11.

Attenuation of Lamb waves in the vicinity of a forbidden band in a phononic crystal.

Bavencoffe M, Hladky-Hennion AC, Morvan B, Izbicki JL.

IEEE Trans Ultrason Ferroelectr Freq Control. 2009 Sep;56(9):1960-7. doi: 10.1109/TUFFC.2009.1272.

PMID:
19811999
12.

Estimation of ultrasonic guided wave mode conversion in a plate with thickness variation.

Cho Y.

IEEE Trans Ultrason Ferroelectr Freq Control. 2000;47(3):591-603. doi: 10.1109/58.842046.

PMID:
18238586
13.

Lamb mode reflections at the end of a plate loaded by a viscoelastic material.

Wilkie-Chancellier N, Martinez L, Serfaty S, Griesmar P, Caplain E, Le Huérou JY, Gindre M.

Ultrasonics. 2006 Dec 22;44 Suppl 1:e863-8. Epub 2006 Jun 9.

PMID:
16815509
14.

On the reflection of coupled Rayleigh-like waves at surface defects in plates.

Masserey B, Fromme P.

J Acoust Soc Am. 2008 Jan;123(1):88-98. doi: 10.1121/1.2805668.

PMID:
18177141
15.

A combined finite element and modal decomposition method to study the interaction of Lamb modes with micro-defects.

Terrien N, Osmont D, Royer D, Lepoutre F, Déom A.

Ultrasonics. 2007 Mar;46(1):74-88. Epub 2006 Dec 14.

PMID:
17208265
16.

Lamb mode conversion at edges. A hybrid boundary element-finite-element solution.

Galán JM, Abascal R.

J Acoust Soc Am. 2005 Apr;117(4 Pt 1):1777-84.

PMID:
15898624
17.

Importance of the near Lamb mode imaging of multilayered composite plates.

Kundu T, Potel C, de Belleval JF.

Ultrasonics. 2001 Jun;39(4):283-90.

PMID:
11432438
18.

Prolonged acousto-optic interaction with Lamb waves in crystalline plates

Parygin VN, Vershoubskiy AV, Mozhaev VG, Weihnacht M.

Ultrasonics. 2000 Mar;38(1-8):594-7.

PMID:
10829733
19.

Scattering from impedance gratings and surface wave formation.

Zhu W, Stinson MR, Daigle GA.

J Acoust Soc Am. 2002 May;111(5 Pt 1):1996-2012.

PMID:
12051419
20.

Prediction and measurement of nonpropagating Lamb modes at the free end of a plate when the fundamental antisymmetric mode A0 is incident.

Diligent O, Lowe MJ, Le Clézio E, Castaings M, Hosten B.

J Acoust Soc Am. 2003 Jun;113(6):3032-42.

PMID:
12822774

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