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Bond durability of FRP bars and concrete is an important issue to the overall integrity and long-term performance of a strengthening structure.
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Carbon Fiber Reinforced Polymer (CFRP) is one of the advanced materials for strengthening structures.
However, this effect has not been properly addressed in existing design guidelines for fiber-reinforced polymer (FRP) strengthening structures.
Ultra-high molecular weight polyethylene (UHMWPE) fibre has great potential for strengthening structures against impact or blast loads.
However, despite its lower weight/strength ratio, stainless steel has ductile behaviour, and good corrosion resistance which are important and decisive factors in choosing it for strengthening structures instead of FRP composites.
We sit on tree stumps and old car seats just inside the front gate, watching sympathetic non-Gypsy activists climb scaffolding like monkeys, extending and strengthening structures.
Strengthening structures, bolstering urban fire services, treating WUI areas as built environment – this is where we will get the greatest paybacks.
Since the strengthened structure is statically indetermined, the unknown force in the truss column is calculated from a deflection equation.
You'd strengthen structures around the schools.
Some suggestions are provided for the optimal design of FRP strengthened structures.
Up to now most studies concentrate on blast-resistance of FRP strengthened structures.
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