Petrographic Diagnosis of Alkali-Aggregate Reaction in Concrete Based on Quantitative EPMA Analysis

T. Katayama
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引用次数: 9

Abstract

Thin-section petrography, coupled with quantitative electron-probe microanalysis (EPMA), is very useful in identifying reactive constituents and alkali-aggregate reaction in concretes, as well as in characterizing the nature of cement constituents, reaction products and gel products in old deteriorated concretes. EPMA analysis made it possible to detect chemical compositions of the unhydrated cement phases alite, belite, tricalcium aluminate, and the ferrite phase in the original cement used in old structures from Canada and Japan, made even 100 years ago. Coupled with detailed petrography in thin section, this technique also enabled us to estimate the thermal histories and composition of cement clinkers in hardened concretes, variations of CSH gels which reflect the degree of cement hydration, leaching and weathering of concretes, as well as the process of migration and alteration of ASR gels in concretes. The results thus obtained can be used for the assessment of cement properties and the durability of old concretes.
基于定量EPMA分析的混凝土碱-骨料反应岩相诊断
结合定量电子探针微分析(EPMA)的薄层岩相学技术,在识别混凝土中的活性成分和碱骨料反应,以及表征老化混凝土中水泥成分、反应产物和凝胶产物的性质方面非常有用。EPMA分析使得检测未水化水泥相的化学成分成为可能,这些未水化水泥相包括alite、belite、三钙铝酸盐和铁酸盐相,这些水泥用于加拿大和日本甚至100年前的老建筑中。结合薄片的详细岩石学,该技术还使我们能够估计硬化混凝土中水泥熟料的热历史和组成,反映水泥水化程度的CSH凝胶的变化,混凝土的浸出和风化,以及ASR凝胶在混凝土中的迁移和蚀变过程。所得结果可用于评价水泥性能和老混凝土耐久性。
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