Title of article
Identification of multiple directional damages in a thin cylindrical shell
Author/Authors
Usik Lee، نويسنده , , Sunghwan Kim، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2006
Pages
21
From page
2723
To page
2743
Abstract
In this paper, a structural damage identification method (SDIM) is developed to identify the line crack-like directional
damages generated within a cylindrical shell. First, the equations of motion for a damaged cylindrical shell are derived.
Based on a theory of continuum damage mechanics, a small material volume containing a directional damage is represented
by the effective orthotropic elastic stiffness, which is dependent of the size and the orientation of the damage with
respect to the global coordinates. The present SDIM is then derived from the frequency response function (FRF) directly
solved from the equations of motion of a damaged shell. In contrast with most existing SDIMs which require the modal
parameters measured in both intact and damaged states, the present SDIM may require only the FRF-data measured at
damaged state. By virtue of utilizing FRF-data, one may choose as many sets of excitation frequency and FRF measurement
point as needed to acquire a sufficient number of equations for damage identification analysis. The numerically
simulated damage identification tests are conducted to study the feasibility of the present SDIM.
Keywords
Frequency response function , Cylindrical shell , Damage identification , Orthotropic damage , Continuum Damage Model , Structural damage
Journal title
International Journal of Solids and Structures
Serial Year
2006
Journal title
International Journal of Solids and Structures
Record number
448512
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