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The proposed formulation employs the continuum mechanics based beam element with the warping displacement to model complex modes of deformation.
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Direct and inverse problems of a fracture mechanics based RC beam model are solved.
The analytical and experimental results are also used for a preliminary quantitative evaluation of a fracture mechanics based failure criterion for the strengthened beam.
Fracture mechanics based flexural model for layered engineered cementitious composite (ECC -concrete bECC -concreteed.
To address this need, in this paper a recently developed mechanics based segmental approach for predicting the shear capacity of reinforced concrete (RC) beams is extended and applied to reinforced geopolymer concrete beams without stirrups.
The debonding of FRP plates from concrete beams is not amenable to finite-element analysis; fracture mechanics, based on a global energy balance, offers a better alternative.
A fracture mechanics based approach is employed to evaluate the crack induced stiffness loss on a single beam.
A fracture mechanics based model is proposed in order to estimate the required prestressing level needed to arrest the crack propagation in the notched beams.
In this paper, an alternative mechanics based discrete rotation approach for the non-time dependent deflection is developed for FRP reinforced flexural members and which is validated by FRP RC beam tests.
As a relatively new branch of mechanics, rock mechanics is developed by adopting traditional analytical methods of mechanics based on continuum mechanics.
This use of interesting mechanics based around collection and environmental interaction also underpins Wattam.
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