Paste, aggregate, or air? That is the question

Author:

Ossetchkina Ekaterina1ORCID,Chernoloz Oleksiy1ORCID,Bromerchenkel Lucas Herzog2ORCID,Karim Mahzabin1,MacHale Liam1,Montgomery Amy1ORCID,Hu Yuqi1,Peterson Karl1ORCID

Affiliation:

1. Department of Civil & Mineral Engineering University of Toronto Toronto Ontario Canada

2. Concrete Ontario Mississauga Ontario Canada

Abstract

AbstractThe Ambassador Bridge between Detroit, Michigan, and Windsor, Ontario, has served for almost 100 years as North America's busiest international border crossing. But in 2025, the Ambassador will be replaced by the new Gordie Howe International Bridge. The Gordie Howe is a cable‐stayed bridge, with two massive 220 m tall concrete piers on opposite banks of the St. Claire River, a single clear span of 853 m, and 42 m of clearance over this busy waterway. To ensure durability in this harsh freeze‐thaw environment, air‐entrained concrete is specified throughout. And, to ensure the quality of air entrainment, the ASTM C 457 Procedure C, Contrast Enhanced Method is employed. While a similar automated microscopic approach has been in use for well over a decade according to EN 480‐11 Determination of air void characteristics in hardened concrete, this is the first large‐scale application of automated air void assessment in North American infrastructure. According to the ASTM Procedure C, the air void characteristics are determined through digital image processing, while the paste content may be determined by either mix design parameters, manual point count, or ‘other means’. Of these three options, point counting is used for Gordie Howe; but in parallel, during each point count, the digital image coordinates and phase identifications for each evaluated stop are recorded. This allows for training of a neural network, for automated determination of paste content, as demonstrated here.

Funder

Natural Sciences and Engineering Research Council of Canada

Publisher

Wiley

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