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The damage investigation was performed by using Field Emission Scanning Electron Microscopy (FESEM).
This paper presents a damage investigation on a short glass fiber reinforced polyamide PA66-GF355) under fatigue loading.
In this paper, based on the field damage investigation in the earthquake-hit area, the relationship between different building structures and building waste produced is established and evaluated.
Finally, two case studies, which help the practicing engineer in making the damage investigation and developing recommendations for rehabilitation of structures and prevention of damage in future, are reported.
Damage investigation of small to medium-span highway bridges in Wenchuan earthquake revealed that typical damage of these bridges included: sliding between laminated-rubber bearings and bridge girders, concrete shear keys failure, excessive girder displacements and even span collapse.
However, damage investigation after the 2008 Wenchuan earthquake revealed that sliding between the laminated rubber bearing and the bridge girder was a common phenomenon, which could actually act as fuses and protect the substructures from severe damage.
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Observations from post hurricane damage investigations have found that a wide variety of windborne debris types cause damage to buildings, including roof tiles in residential neighborhoods.
They provide an especially versatile, powerful platform for on-line DNA assays, including DNA quantification, purification, separation, sequencing, hybridization studies and damage investigations.
Non destructive and destructive evaluations for damage investigations were carried out whereas the design and the production of a new, more simple and reliable Compression After Impact (CAI) apparatus, was described and adopted to avoid errors due to misalignment between the applied load and the specimen.
The results obtained for both damage investigations, namely joint damage and mass changes, demonstrate that the proposed SHM technique is accurate and reliable in assessing the condition of the test structure numerically and experimentally based on direct FRF measurements and network ensemble analysis.
ASPA protein activity is a strong biomarker of brain damage and neurological impairment investigation, used regularly in human and veterinary disease diagnostics [ 49].
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