Prestressing low clinker structural concrete elements by ultra-high modulus carbon fibre reinforced polymer tendons

Author:

Lämmlein Tobias Dominik,Justs Janis,Terrasi Giovanni Pietro,Lura PietroORCID

Abstract

AbstractThe combination of low clinker high-performance concrete (LCHPC) and ultra-high modulus (UHM) carbon fibre reinforced polymer (CFRP) tendons was recently proposed for prestressed structural elements. The 70% reduction in cement content resulting in limited creep and shrinkage of the LCHPC in comparison to a conventional high-performance concrete (HPC) and the very high UHM-CFRP tendon stiffness (> 509 GPa) were expected to impact the mechanical behaviour of such structures. This study focuses on the behaviour of 3 m-long beam specimens during prestressing, concrete hardening and in 4 point-bending experiments. Fibre optic sensors were implemented inside the CFRP tendons to measure strain during those stages and a digital image correlation system was employed to monitor the 4-point-bending tests. After 28 days, the LCHPC recipe, despite a 70% cement reduction and much smaller environmental footprint, did not show measurable differences in the prestress loss behaviour in comparison to a conventional HPC. The UHM-CFRP prestressing tendons, because of their stiffness, showed both higher prestress losses of around 40% and on average a nearly doubled prestress transfer length. However, they increased the beam`s maximum load-bearing capacity by 21% and showed 47% less deflection at failure in comparison to beams prestressed with the standard modulus (UTS)-CFRP tendons.

Funder

Schweizerischer Nationalfonds zur Förderung der Wissenschaftlichen Forschung

Lib4RI – Library for the Research Institutes within the ETH Domain: Eawag, Empa, PSI & WSL

Publisher

Springer Science and Business Media LLC

Subject

Mechanics of Materials,General Materials Science,Building and Construction,Civil and Structural Engineering

Reference47 articles.

1. Terrasi G, Battig G, Bronnimann R (2002) Pylons made of high-strength spun concrete and prestressed with carbon fibre reinforced plastic for high power transmission lines. Int J Mater Prod Technol 17(1):32–45

2. Terrasi GP (1998) Mit Kohlenstoffasern vorgespannte Schleuderbetonrohre, Diss. Techn. Wiss. ETH Zürich, Nr. 12454, Ref.: H. Bachmann; Korref.: U. Meier

3. Terrasi G, McIntyre E, Bisby L, Lämmlein T, Lura P (2016) Transient Thermal Tensile Behaviour of Novel Pitch-Based Ultra-High Modulus CFRP Tendons. Polymers 8(12):446

4. EN 197–1 (2011) Cement-Part 1: Composition, Specifications and Conformity Criteria for Common Cements, European Committee for Standarization (CEN), Brussels, 2011.

5. SIA 2052:2016 (2016) Ultra-high performance fiber reinforced concrete (UHPFRC) – Materials, design and execution, Schweizerischer Ingenieur und Architektenverein (SIA), Zürich

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