Real-time concrete strength monitoring using piezoelectric sensors and deep learning. [PDF]
Han G +7 more
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Experimental Study on the Fatigue Degradation of Prestressed Concrete Slabs for Composite Bridges. [PDF]
Li W, Ma R, Liu Y, Liang C.
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Thermo-hydro-mechanical response of energy-piled walls under varying wall configurations, pipe layouts, and seepage conditions. [PDF]
Villegas L, Narsilio G, Fuentes R.
europepmc +1 more source
Load-bearing mechanism and engineering application of a heavy-duty transfer steel platform supported by basement columns. [PDF]
Shang M, Li X.
europepmc +1 more source
Ensemble machine learning-based sensitivity and parametric assessment of headed stud shear connectors behavior in composite construction. [PDF]
Habib A +6 more
europepmc +1 more source
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Design of Reinforced Concrete Slabs
1996Reinforced concrete slabs are used in floors, roofs and walls of buildings and as the decks of bridges. The floor system of a structure can take many forms such as in situ solid slabs, ribbed slabs or precast units. Slabs may span in one direction or in two directions and they may be supported on monolithic concrete beams, steel beams, walls or ...
W. H. Mosley, J. H. Bungey, R. Hulse
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Prestressed Concrete Flat Slabs
1977A short review on the analysis and the design of prestressed flat slabs is given. Some new aspects concerning flexural behavior, punching, reinforcement arrangement and detailing are presented. Different possible tendon layouts are compared. A new model for slabs with unbonded tendons and additional reinforcement is described.
Marti, P., Ritz, P., Thürlimann, B.
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Prestressing Optimization of Concrete Slabs
Journal of Structural Engineering, 1991An algorithm to minimize prestressing steel in concrete slabs is presented; it is based on elastic theory and uses the finite element method. The influence‐line method and the equivalent‐load approach are reviewed and the latter is employed to compute the effects of prestressing.
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Bionic Structures for Innovative Concrete Slabs
IABSE Reports, 2015<p>The adaption of natural structures in technical systems leads to highly efficient and sustainable constructions. Especially for concrete slabs, bionic structures can be applied into the inner and to the exterior structure, which leads to improved lightweight bearing systems with a natural flow of forces.
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