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Keywords
(7)
Boundary Condition
Contact Stress
Defect Detection
Dispersion Curve
Guided Wave
Structure Analysis
Wave Propagation
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A guided wave approach to defect detection under shelling in rail
A guided wave approach to defect detection under shelling in rail,10.1016/j.ndteint.2008.09.013,Ndt & E International,Chong myoung lee,Joseph L. Rose,
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A guided wave approach to defect detection under shelling in rail
(
Citations: 4
)
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Chong myoung lee
,
Joseph L. Rose
,
Younho Cho
Rail defects are responsible for many railroad accidents. Trains are derailed and serious consequences often occur. Traditional bulk wave testing wheel probes are often inadequate for finding all defects in a rail, especially under shelling. Shelling takes place as a result of wheel to rail Hertzian contact stresses that lead to surface and subsurface defects, as a result of high stresses below the surface of the rail. Guided waves can detect shelling, if so desired, by employing the proper mode and frequency. Guided waves can also detect transverse cracking under shelling by selecting a mode and frequency insensitive to the shelling, but sensitive to transverse cracking under the shelling. Special modes and frequencies can also be used to detect defects in the web or base of a rail. The
guided wave
methodology of using a hybrid analytical-FEM technique to accomplish the sensor design and subsequent scattering analysis is presented in this paper. Sensor design to generate rail boundary conditions via
dispersion curve
and wave
structure analysis
is illustrated along with a few static shots of animations of
wave propagation
and reflection from defects in a rail.
Journal:
Ndt & E International - NDT E INT
, vol. 42, no. 3, pp. 174-180, 2009
DOI:
10.1016/j.ndteint.2008.09.013
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References
(7)
Guided wave dispersion curves for a bar with an arbitrary cross-section, a rod and rail example
(
Citations: 73
)
Takahiro Hayashi
,
Won-Joon Song
,
Joseph L Rose
Journal:
Ultrasonics
, vol. 41, no. 3, pp. 175-183, 2003
Guided waves in laminated isotropic circular cylinder
(
Citations: 4
)
N. Rattanawangcharoen
,
A. H. Shah
Journal:
Computational Mechanics - COMPUTATION MECH
, vol. 10, no. 2, pp. 97-105, 1992
Reflection of Waves at the Free Edge of a Laminated Circular Cylinder
(
Citations: 17
)
N. Rattanawangcharoen
,
A. H. Shah
,
S. K. Datta
Journal:
Journal of Applied Mechanics-transactions of The Asme - J APPL MECH
, vol. 61, no. 2, 1994
The Reflection of Guided Waves From Circumferential Notches in Pipes
(
Citations: 61
)
D. N. Alleyne
,
M. J. S. Lowe
,
P. Cawley
Journal:
Journal of Applied Mechanics-transactions of The Asme - J APPL MECH
, vol. 65, no. 3, 1998
An elastodynami`c hybrid boundary element study for elastic guided wave interactions with a surface breaking defect
(
Citations: 22
)
Younho Cho
,
Joseph L. Rose
Journal:
International Journal of Solids and Structures - INT J SOLIDS STRUCT
, vol. 37, no. 30, pp. 4103-4124, 2000
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Citations
(4)
Experimental and numerical study on damage detection in an L-joint using guided wave propagation
(
Citations: 2
)
Magdalena Rucka
Journal:
Journal of Sound and Vibration - J SOUND VIB
, vol. 329, no. 10, pp. 1760-1779, 2010
Rail flaw detection system based on electromagnetic acoustic technique
(
Citations: 1
)
Zhu Yi
,
Wang Kaican
,
Kang Lei
,
Zhai Guofu
,
Wang Shujuan
Conference:
IEEE Conference on Industrial Electronics and Applications - ICIEA
, 2010
A Modular Approach to Low Cost Networked Multimedia
D. Greaves
,
A. Hopper
Conference:
IEEE Symposium on High Performance Interconnects - HOTI
, 1994
Flip chip attack and RF-eviduation of GaAs-assemblies
H. Richter
,
P. Koelzer
,
A. Baumgartner
Conference:
Workshop on MCM and VLSI Packaging Techniques and Manufacturing Technologies - WPTMT
, 1994