Masonry Magazine October 1994 Page. 16

Words: Al Isberner
Masonry Magazine October 1994 Page. 16

Masonry Magazine October 1994 Page. 16
Hot & Cold
Weather Masonry
Construction

Both hot and cold weather masonry construction can and should continue during other than normal working conditions. The contractor's decisions will be based on equipment already available, and other options for the production of quality masonry.

By AL ISBERNER
Consulting Materials Engineer

The desire to continue masonry construction throughout the year leads to concerns regarding the performance of the masonry under adverse weather conditions. Cold weather and hot weather masonry construction have received recent interest with several articles stipulating practices, which should be followed. Masonry construction can, and should continue regardless of weather conditions with proper prior planning.

Because weather does affect the performance of masonry materials and the rate of masonry construction, it's important to understand weather effects and prevent or lessen their influence. Weather information, nationwide and locally, has become more accurate during the past decade. Three day forecasts are classed as very accurate: long term predictions are superior to those available in the '70s.

During any discussion of weather effects, terms like "normal," "hot," "cold," and "other" are frequently used to identify the prevailing weather condition or construction boundary conditions. These terms are classed as relative, with no precise assignment of temperature or humidity possible. Throughout this paper, "normal" implies temperature and humidity conditions common to a geograpical area, during a particular season. Other weather conditions are above or below the "normal" conditions.

Sensitivitiy of Materials

Generally all masonry construction materials are influenced by climatic conditions. These materials are sensitive to both temperature and moisture/humidity changes. Portland cement and masonry cement react with water; both temperature and available moisture influence the rate and


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