TAILIEUCHUNG - ADVANCES IN COMPOSITE MATERIALS - ANALYSIS OF NATURAL AND MAN-MADE MATERIALS - P2

The amount of energy that people used in the past two decades is equivalent to the total amount of energy in the past. This huge increase of energy use has been made possible by extending depletion of fossil reserves and is clearly unsustainable. Does it mean that once the reserves are exhausted the amount of energy available to humans would be similar before the era of fossil fuels? Not necessarily. Currently, the total energy used by mankind No. 1/5500 fraction of the total incident solar energy on earth | Part 4 Testing 15 The Synergy of Electrochemistry and Concrete Material Science in Evaluating Corrosion Resistance of Wastes-Containing Reinforced Cement-Based Systems D. A. Koleva and K. van Breugel Delft University of Technology Faculty of Civil Engineering and Geosciences Department Materials Environment Stevinweg 1 2628CN Delft Netherlands 1. Introduction Next to water concrete is the most used material on earth. Reinforced concrete has the potential to be durable and capable of withstanding a variety of adverse environmental conditions. One of the major difficulties in the engineering practice however is the multidimensional nature of reinforcement corrosion related issues. Nevertheless materials and processes involved in the service life of a civil structure and their interaction are independently weighed and are seldom brought together. Very often the design of concrete mix proportions and the design of protective measures such as the application of coatings or electrochemical techniques are made in separate steps and positive or negative interactions among themselves are neglected. The most original aspect of this work is the integration of fundamental electrochemical techniques and concrete material science within monitoring and assessment of the corrosion performance of reinforced cement-based materials. Further hereby discussed is the implementation of an eco-friendly approach of waste utilization for corrosion control and or achieving superior properties and performance. Reinforced cement-based systems . reinforced mortar and concrete are multi-phase composite materials at different levels of aggregation. Hence multi-phase interfaces are involved in their structural performance and material behaviour. The steel reinforcement is embedded on meso-level generally relevant to mm dimension in supposedly homogeneous cement-based bulk matrix. However on a lower structural level micro-level expressed in pm the bulk material consists of cement paste and .

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