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The impact damaged plates were tested under four point bend (4 PB) loading conditions.
The proposed algorithm is a response-based damage detection technique which only requires the mode shapes of the damaged plates.
After each test, the damaged plates are sectioned to visualize the extent of delamination and material damage.
Despite the extensive studies on vibration analysis of damaged plates, only few effective and practical techniques are found for very small damage identification.
This paper presents an analytical method for the analysis of the dynamic behavior of damaged plates.
Results for natural frequencies, mode shapes and critical buckling loads for intact and damaged plates are compared.
Similar(49)
Case studies were carried out for Lamb wave propagation in a pristine plate and a damaged plate.
The analysis of the stresses distribution in the adhesive layer allows us to estimate the durability of the adhesion between the damaged plate and the composite patch.
Next, a new damage identification theory is developed to identify the orientations of local damages, in addition to their locations and severities, by using the frequency response functions measured from the damaged plate.
The experimental damage identification results were numerically verified by applying the proposed method to the mode shape associated with the same mode as that of the measured one from a finite element model of the damaged plate.
Open image in new window Figure 1 Rotation mode shape of the damaged plate.
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