TECHNICAL PAPERS
Oct 1, 2004

Mechanical and Nondestructive Testing to Verify the Effectiveness of Composite Strengthening on Historical Cast Iron Bridge in Venice, Italy

Publication: Journal of Materials in Civil Engineering
Volume 16, Issue 5

Abstract

The oldest cast iron arch bridge built in 1852 in Venice exhibits serious deterioration due to corrosion and cracking of its members. The Municipality accepted a proposal to strengthen it with Aramid fiber reinforced polymers (AFRP) materials. The AFRP materials application aims to arrest cracks and reduce the structure’s vulnerability to impact by boats. Tests have already been performed on structural cast iron beams taken from similar cast iron bridges dismantled. Results from four point bending tests showed an increase in strength and a different fracture mode depending on FRP application. Charpy tests showed an increased fracture energy in specimens strengthened with FRP and primer. Utilization of bidirectional and triaxial fabrics was discussed. However this paper is particularly focused on nondestructive testing following the FRP application. Nondestructive testing has been planned both for laboratory test specimens and for a long term monitoring program. Artificial defects, embedded during manufacturing in some test specimens, have been analyzed using the pulsed echo ultrasonic technique, in order to compare the resolving power of different ultrasonic frequencies and probe arrangements. Furthermore, a long term monitoring program has been planned in order to assess bonding performance using ultrasonic and pulloff tests on the overall strengthening and on some test specimens placed in the same environment.

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References

1.
Bastianini, F., Di Tommaso, A., and Pascale, G. (2001). “Ultrasonic nondestructive assessment of bonding defects in composite structural strengthening.” Compos. Struct. 5(3/4), 463–467.
2.
Ceriolo, L., and Di Tommaso, A. ( 2000). “Problems of restoration of old cast iron bridges using Aramid Fiber Reinforced Polymers.” Proc., 5th Int. Congress on Restoration of Architectural Heritage, CICOP, International Center for the Architectural Heritage Conservation, Firenze, Italy, 1409–1418.
3.
Ceriolo, L., and Di Tommaso, A. ( 2002). “Cast iron bridge failure due to impact: Reduced vulnerability through FRP composite materials strengthening.” Proc., National Conf. on Structure Failures and Reliability of Civil Constructions, Istituto Univ. di Architettura di Venezia, Venezia, Italy, 535–544.
4.
Di Tommaso, A., and Bastianini, F. ( 2000). “Ultrasonic and thermographic non-destructive techniques for bonding evaluation on external FRP structural strengthening.” Proc., 3rd Int. Conf. on Advanced Composite Materials in Bridges and Structures (ACMBS III), Ottawa, 37–44.
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Zaffaroni, G., Ceriolo, L., Bastianini, F., and Di Tommaso, A. ( 2002). “Issues related with the use of reinforced polymers in the reparation/restoration of an historical cast iron bridge.” Proc., 23rd Int. Conf. Sampe Europe, Society for the Advancement of Material & Process Engineering, Paris, 23–32.

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Go to Journal of Materials in Civil Engineering
Journal of Materials in Civil Engineering
Volume 16Issue 5October 2004
Pages: 407 - 413

History

Received: May 29, 2002
Accepted: Sep 3, 2003
Published online: Oct 1, 2004
Published in print: Oct 2004

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Authors

Affiliations

F. Bastianini
PhD Researcher, Dept. of Architectural Construction, Univ. of Architecture of Venice (IUAV), Dorsoduro N. 2206, Italy. E-mail: [email protected]
L. Ceriolo
PhD Researcher, Dept. of Architectural Construction, Univ. of Architecture of Venice (IUAV), Dorsoduro N. 2206, Italy. E-mail: [email protected]
A. Di Tommaso
Full Professor, Director Lab. Scienza delle Costruzioni (ISc), Univ. of Architecture of Venice (IUAV), Dorsoduro N. 2206, Italy. E-mail: [email protected]
G. Zaffaroni
PhD, LOCTITE Henkel-Via Vigevano 27, 28065 Cerano, Italy; formerly, SEAL S.p.A., Legnano, Italy. E-mail: [email protected]

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