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This unique property, together with the similarity between these composites and structural concrete, suggests the possibility of developing distributed strain-sensing systems with substantial improvements in the cost-effectiveness of large-scale concrete structures.
Together with this exceptional property, the similarity and compatibility between these composites and structural concrete suggest the possibility of developing distributed embedded strain-sensing systems with substantial improvements in the cost-effectiveness in applications to large-scale concrete structures.
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The ply pattern of piezoelectric fiber composite and structural damping are taken into account for more accurately predict the dynamic behavior.
The capability of the proposed method in quantifying the variations in these defects is further demonstrated through statistical analysis of the effective elastic properties and a woven textile composite and structural reliability analysis of a textile composite laminate.
This chapter discusses the field applications of FRP composite structures and structural components, from the point of view of any reductions in their mechanical or physical characteristics with time as a result of degradation due to the environment or external loading.
This book surveys some of the major work related to using nanotechnology for improving the performance of cement composites, pavement, and structural coatings.
The current work provides an innovative method to predict the onset of failure in natural fibre composites, which can be applied in composite forming and structural design.
Hence, the length scales modeled include micro-mechanics of fibrous composites, macro-mechanics of fibrous composite laminates, and 2D- and 3D-woven composites, and global structural length scales.
A hierarchical framework for multilevel analysis and design of composite material and structural systems is presented.
This recycled paper was previously tested in composite sheets and structural unit beams and gave the required stiffness and strength required for roof construction.
Weight savings of composite laminates and structural components with various material and orthotropy combinations over aluminum can simply be determined with the current approach.
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