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Axial forces play a fundamental role in the inelastic behavior of concrete elements.
Advances in sensors technology provided an opportunity to monitor structures during different construction stages, as well as the behavior of concrete elements during hydration and strength gain.
The new method was shown to give reasonably accurate results and most importantly, proposes a new way of investigating the cracking behavior of concrete elements.
Previous experimental studies on the seismic behavior of concrete elements reinforced with welded-wire meshes (WWM) have suggested that WWM do not comply with the mechanical properties specified in Mexican material standards.
This paper presents the results of an experimental research on bond and flexural behavior of concrete elements strengthened with carbon fiber reinforced polymer (CFRP) laminate strips under fatigue loading conditions, applied according to the near-surface mounted (NSM) strengthening technique.
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In this paper the mechanical behavior under static and impact loading of concrete elements strengthened with shells of textile reinforced concrete (TRC) made of carbon, alkali-resistant glass and polyethylene fabrics is presented.
Flexural strengthening of concrete elements by adding new concrete layers is a common strengthening technique.
Van Coile will give a seminar titled "Reliability-based post-fire assessment of concrete elements" Concrete structures are generally capable of maintaining stability throughout a fire event.
The present study contributed to the knowledge on the acoustoelastic behavior of the concrete elements and shows the potential of ultrasonic tests to evaluate the stress state in concrete structures.
Recently, SMM was extended to cyclic loading, resulting in the Cyclic Softened Membrane Model (CSMM) [Mansour M, Hsu TTC. Behavior of reinforced concrete elements under cyclic shear: Part 1 — experiments. J Struct Eng, ASCE 2005; 131(1):44–53; Mansour M, Hsu TTC. Behavior of reinforced concrete elements under cyclic shear: Part 2 theoretical model. J Struct Eng, ASCE 2005 131(1):54–65].
Recent tests [Mansour MY, Hsu TTC. Behavior of reinforced concrete elements under cyclic shear. I: Experiments.
More suggestions(16)
behavior of concrete columns
behavior of concrete objects
behavior of nonlinear elements
behavior of excitable elements
behavior of functional elements
behavior of concrete slabs
behavior of individual elements
behavior of concrete mixtures
behavior of various elements
behavior of specific elements
behavior of other elements
behavior of thin elements
behavior of concrete structures
behavior of toxic elements
behavior of radioactive elements
behavior of interacting elements
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