Influence of air cooled and granulated blast furnace slag on the thermal resistance of cyclic high‐temperature concrete

Author:

Feldrappe Volkert1,Ehrenberg Andreas1,Iravani Ahmad2,Anders Steffen3

Affiliation:

1. FEhS–Institut für Baustoff‐Forschung e.V. Duisburg Germany

2. Bundesverband Leichtbeton e.V. Neuwied Germany

3. Institut für Konstruktiven Ingenieurbau, Lehrstuhl für Werkstoffe im Bauwesen, Bergische Universität Wuppertal Germany

Abstract

AbstractConcrete is the most widely used building material. Particularly in industrial floors or air ducts in steel and foundry industries, it is often exposed to high continuous or cyclical temperatures. In these applications, high temperature resistance of the concrete is essential to ensure high bearing capacity and durability. In addition to the temperature level, the composition of the concrete is also important regarding long‐term stability of the exposed concrete members.This study investigates the effect of slag cements as well as granulated and air‐cooled blast furnace slag as industrial aggregates on the hot and residual strength of concretes exposed to temperatures up to 700 °C. In addition, the material parameters determined were transferred to the component level to calculate the bearing capacity of model walls. It was shown that the hot and residual strength, as well as the bearing capacity at the component level, are high when concretes are made from these materials. The characteristics are comparable to those of concrete made with thermally stable but relatively expensive basalt and even significantly better when quartzitic aggregates were used. The results allow suggestions to be made for additions to current fire resistance design codes.

Publisher

Wiley

Subject

General Earth and Planetary Sciences,General Environmental Science

Reference21 articles.

1. Beständigkeit von Betonen bei höheren Temperaturen;TFB;Cementbulletin,1979

2. Timms A.G.(1963)Noted concrete consultant evaluates blast furnace slag as concrete aggregate. National Slag Association MF 193-8 Reprint from Modern Concrete October and November.

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