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Theoretical and experimental validation of a simple method to reproduce representative DEF-prone conditions in laboratory

机译:一种简单的方法的理论和实验验证,可在实验室中再现代表性的易发生DEF的条件

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摘要

Delayed Ettringite Formation (DEF) is a possible autogenous expansive reaction of concrete. It can affect materials that have experienced temperatures higher than about 65 ℃ at early age. This temperature increase can be the result of the cement heat of hydration in massive structures where the heat transfers are particularly low. To understand the effects of DEF, it is necessary to be able to reproduce thermal DEF-prone conditions in laboratory. This paper proposes a method developed during an extensive experimental programme that aimed at studying the mechanical effects of DEF on structures built with different concretes. The objective was to design a single heat treatment profile to generate homogeneous and similar temperature fields in specimens of various geometries, concrete constituents and mix proportions. It has been demonstrated that quasi-adiabatic conditions were to be realized at early age, whatever the samples size, to simulate the curing conditions in massive structures. The experimental method developed is described in details: the design of the temperature profile, the experimental device and its operation are presented. Both a numeric and an experimental validation are proposed. They emphasize the good accuracy of the process and demonstrate the possibility to trigger similar DEF potential expansions due to the thermal history for all the specimens of the programme.
机译:延迟钙矾石形成(DEF)是混凝土可能的自发膨胀反应。它可能会影响早期温度超过65℃的材料。这种温度升高可能是由于传热特别低的块状结构中水泥水化热的结果。要了解DEF的影响,必须能够在实验室中重现易于发生DEF的热条件。本文提出了一种在广泛的实验程序中开发的方法,旨在研究DEF对用不同混凝土建造的结构的机械影响。目的是设计一个单一的热处理曲线,以在各种几何形状,混凝土成分和混合比例的试样中产生均匀且相似的温度场。已经证明,无论样品大小如何,都要在早期实现准绝热条件,以模拟大型结构的固化条件。详细介绍了开发的实验方法:介绍了温度曲线的设计,实验装置及其操作。提出了数值和实验验证。他们强调了过程的良好准确性,并证明了由于程序所有标本的热历史而触发相似的DEF潜在扩展的可能性。

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