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Therefore, it is of interest to develop a repair technique for damaged columns with different damage conditions resulting from combined loading effects.
Different damage temperature and time were chosen to simulate the possible damage conditions.
Therefore, it is important to realistically estimate the possible damage conditions due to underwater explosions in the design stage.
To assess the proposed method, finite element models are developed for a case study structure, including health and damage conditions.
Additionally, damage to the shear modulus is related to the initial damage conditions and joint persistence of the samples.
The robustness of the method was examined with respect to the damage severity with various damage conditions.
This proved useful parameter during moderate to severe damage conditions, and in particular near the final failure of the structure.
It is important to note that, since the structural load-carrying capacity strongly depends on the location of the damaged area, the progressive collapse mechanism of a structure could change substantially under different damage conditions.
This paper describes the damage detection study results using a partially instrumented laboratory truss that was tested in several damage conditions.
The healing efficacy is discussed within broad categories of mechanical loading and damage conditions, and includes quasi-static, fatigue, impact, and macroscale material loss.
The calculated radiation damage conditions within the F3 match, in many respects, that of a fusion reactor first wall, making it well suited for testing fusion materials.
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CEO of Professional Science Editing for Scientists @ prosciediting.com