About

Log in?

DTU users get better search results including licensed content and discounts on order fees.

Anyone can log in and get personalized features such as favorites, tags and feeds.

Log in as DTU user Log in as non-DTU user No thanks

DTU Findit

Journal article

CFRP strengthened openings in two-way concrete slabs: - An experimental and numerical study

From

Section for Structural Engineering, Department of Civil Engineering, Technical University of Denmark1

Department of Civil Engineering, Technical University of Denmark2

Rehabilitation and strengthening of concrete structures with externally bonded fibre reinforced polymers (FRPs) has been a viable technique for at least a decade. An interesting and useful application is strengthening of slabs or walls where openings are introduced. In these situations, FRP sheets are very suitable, not only because of their strength, but also due to that they are easy to apply in comparison to traditional steel girders or other lintel systems.

Even though many benefits have been shown by strengthening openings with FRPs not much research have been presented in the literature. In this paper, laboratory tests on I I slabs with openings, loaded with a distributed load are presented together with analytical and numerical evaluations. Six slabs with openings have been strengthened with carbon fibre reinforced polymers (CFRPs) sheets.

These slabs are compared with traditionally steel reinforced slabs, both with (four slabs) and without openings (one slab). The slabs are quadratic with a side length of 2.6 in and a thickness of 100 mm. Two different sizes of openings are used, 0.85 x 0.85 in and 1.2 x 1.2 m. The results from the tests show that slabs with openings can be strengthened with externally bonded CFRP sheets.

The performance is even better than for traditionally steel reinforced slabs. The numerical and analytical evaluations show good agreement with the experimental results. (c) 2006 Elsevier Ltd. All rights reserved.

Language: English
Year: 2006
Pages: 810-826
ISSN: 18790526 and 09500618
Types: Journal article
DOI: 10.1016/j.conbuildmat.2006.06.009

DTU users get better search results including licensed content and discounts on order fees.

Log in as DTU user

Access

Analysis