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Performance of Polymer-Encased Concrete Walls Subjected to Blast Loads
This paper discusses recent testing and finite element simulation of stay-in-place polymer concrete forms. Static tests provided a definition of resistance mechanisms. Dynamic tests demonstrated improved blast resistance effectiveness over other standard concrete wall forms. The finite element simulations provide a high level of understanding of resistance mechanisms, fracture propagation, influence of support conditions, etc., over the duration of the flexural response. The knowledge gained from the testing and simulation work was used to develop a single-degree-of-freedom approach that can be used for design and analysis.
Performance of Polymer-Encased Concrete Walls Subjected to Blast Loads
This paper discusses recent testing and finite element simulation of stay-in-place polymer concrete forms. Static tests provided a definition of resistance mechanisms. Dynamic tests demonstrated improved blast resistance effectiveness over other standard concrete wall forms. The finite element simulations provide a high level of understanding of resistance mechanisms, fracture propagation, influence of support conditions, etc., over the duration of the flexural response. The knowledge gained from the testing and simulation work was used to develop a single-degree-of-freedom approach that can be used for design and analysis.
Performance of Polymer-Encased Concrete Walls Subjected to Blast Loads
J. S. Davidson (author) / J. W. Fisher (author) / R. J. Dinan (author)
2006
12 pages
Report
No indication
English
Laboratory & Test Facility Design & Operation , Detonations, Explosion Effects, & Ballistics , Structural Mechanics , Fracture(Mechanics) , Blast loads , Dynamic tests , Rigid rod polymers , Simulation , Propagation , Flexural properties , Static tests , Degrees of freedom , Resistance , Finite element analysis , Blast protection , Structures , Polyvinyl chloride , Concrete , Blast resistance , Bomb attacks
Performance of Polymer-Encased Concrete Walls Subjected to Blast Loads
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