Hostname: page-component-78c5997874-v9fdk Total loading time: 0 Render date: 2024-11-17T23:19:55.900Z Has data issue: false hasContentIssue false

Monitoring of Concrete Quality in High Performance Civil Engineering Constructions

Published online by Cambridge University Press:  21 February 2011

Anders Henrichsen
Affiliation:
Dansk Beton Teknik A/S, Helleruplund Alle 21, DK-2900, Denmark
Peter Laugesen
Affiliation:
Dansk Beton Teknik A/S, Helleruplund Alle 21, DK-2900, Denmark
Get access

Abstract

Modern high performance concretes (HPCs) are well characterized by their materials, compositions, and other characteristics, and usually documented by ‘test samples’ from laboratory specimens and trial castings. The characteristics are applied for construction design and estimations of service life time. However, in these young constructions, the internal structure of the HPC often reveals serious differences from that of the ‘test sample concrete’. Accordingly, the characteristics of the constructional concrete may be dramatically different from the expectations, often leading to increased rate of deterioration. A series of examples of such failures in the internal structures from major European HPC civil engineering constructions are presented. A test method is presented for the evaluation of the internal structure of the concrete as it exists in the actual structure. This test method is based on reground vacuum impregnated full sections of concrete core samples, cored from the construction at the moment of stripping the form work. Thus it is made possible to assess the structure during production. The cost of applying the test method approximates 0.1 % of the concrete value.

Type
Research Article
Copyright
Copyright © Materials Research Society 1995

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

References

1. Laugesen, P., “Micro defects in slipformed concrete”, Unpublished report, Dansk Beton Teknik A/S, July 1990.Google Scholar
2. Jensen, A. Damgaard et al. “Petrographic analysis of concrete”, Danish Building Export Council Ltd.Google Scholar
3. TI-BS: “Analysis of the micro structure of hardened concrete”, DTI-Byggeteknik, 1987.Google Scholar
4. ASTM C 457: “Microscopical determination of air void content and parameters of the air void system in the hardened concrete”.Google Scholar
5. DBT-LAB-45: “Impregnated reground plane sections”, Unpublished laboratory test method, Dansk Beton Teknik A/S, 1990.Google Scholar
6. Laugesen, P., Unpublished reports, Dansk Beton Teknik A/S, 1992-1994.Google Scholar