Title :
Fast simulation of ECT signal due to a conductive crack of arbitrary width
Author :
Chen, Zhenmao ; Rebican, Mihai ; Yusa, Noritaka ; Miya, Kenzo
Author_Institution :
Sch. of Aerosp. Eng., Xi´´an Jiaotong Univ.
fDate :
4/1/2006 12:00:00 AM
Abstract :
This paper proposes a strategy for the fast simulation of eddy current testing signals due to a conductive crack of arbitrary width. To cope with a crack of width less than that selected for establishing the database, which is necessary in the fast-forward analysis scheme proposed by authors, a new finite element is introduced to treat the case when the crack boundary is contained in the element. By using such a new element, the fast-forward analysis scheme becomes suitable for the reconstruction of both the shape and width of a planar crack. It is verified that such a multiple material element is efficient for an ECT sensor inducing eddy current parallel with the crack surface. For the case with perpendicular eddy current component, however, the approach is not valid because of a scalar potential jump at the crack surface. Finally, the reason of such a singularity is investigated through numerical simulations
Keywords :
crack detection; eddy current testing; finite element analysis; ECT sensor; ECT signal; arbitrary width; conductive crack; crack boundary; eddy current testing signals; fast simulation method; fast-forward analysis; inverse analysis; multiple material element; numerical simulations; Conductivity; Databases; Eddy current testing; Eddy currents; Electrical capacitance tomography; Inspection; Numerical simulation; Shape; Surface cracks; Welding; Crack width; eddy current testing (ECT); fast simulation method; forward analysis; inverse analysis; new element;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2006.870973