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Content Description

Sustainable Waterproofing Solutions, 2024
CEU: 0.1 | CEU Code: HY-EN-1307010-0525

Concrete is a very versatile and fundamental building material; however, because it is porous and wicks water through its matrix, concrete has water-related design challenges. This program examines the sustainable benefits of integral concrete waterproofing and analyzes traditional waterproofing methods as compared to integral methods in terms of performance, durability, risk, cost, and construction timeline.

Learning Objectives

  • Outline the water-related design challenges applicable to concrete structures, including capillary absorption, durability and maintenance, aesthetics, leaks, environmental considerations, and compatibility and adhesion.
  • Describe two classes of integral waterproofing products, explaining how they function to seal cracks and protect rebar from corrosion, ensuring occupants have a structurally sound and leak-free, mold-free building.
  • Compare and contrast waterproofing systems in terms of durability, risk, cost, and construction timeline, and how these directly relate to the overall environmental impact of each system.
  • Discuss applications where hydrophobic admixtures can maximize concrete durability, reduce risk of failure, and save money and time.

Faculty BIO

Randall joined Hycrete in 2005 after an 18 year career with Cal'Portland (a wholly owned subsidiary of Taiheiyo Corporation, Tokyo, Japan). Randall is an internationally recognized expert on integral permeability reducing admixtures for use in concrete and cement-based products. He has lectured globally on the attributes of this class of products and their proper application in the construction environment. As a pioneer in the use of hydrophobic concrete technology in North America, Randall has been a key influencer in the ubiquitous paradigm shift and adoption of hydrophobic concrete protection systems for concrete structures.
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