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Guidelines For Concrete Mixtures Containing Supplementary Cementitious Materials To Enhance Durability Of Bridge Decks Lawler

  • SKU: BELL-4707008
Guidelines For Concrete Mixtures Containing Supplementary Cementitious Materials To Enhance Durability Of Bridge Decks Lawler
$ 31.00 $ 45.00 (-31%)

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Guidelines For Concrete Mixtures Containing Supplementary Cementitious Materials To Enhance Durability Of Bridge Decks Lawler instant download after payment.

Publisher: Transportation Research Board
File Extension: PDF
File size: 1.82 MB
Pages: 124
Author: Lawler, John S.; Connolly, James D.; Krauss, Paul D.; Tracy, Sharon L.; Ankenman, Bruce E.
ISBN: 9780309098977, 9781621982869, 0309098971, 1621982866
Language: English
Year: 2007

Product desciption

Guidelines For Concrete Mixtures Containing Supplementary Cementitious Materials To Enhance Durability Of Bridge Decks Lawler by Lawler, John S.; Connolly, James D.; Krauss, Paul D.; Tracy, Sharon L.; Ankenman, Bruce E. 9780309098977, 9781621982869, 0309098971, 1621982866 instant download after payment.

This report presents guidelines to facilitate highway agencies' use of supplementary cementitious materials to enhance durability of concrete used in highway construction, especially bridge decks. Encompassed in these guidelines is a methodology for selecting optimum concrete mixture proportions. The methodology focuses on durability aspects of concrete and the performance requirements for specific environmental conditions and is presented in a text format and as a computational tool, in the form of a Visual Basic-driven Microsoft® Excel spreadsheet. Background information, a user's guide, and a hypothetical case study are also available. These guidelines should be of interest to state engineers and others involved in the design and construction of concrete bridge decks and other structures incorporating supplementary cementitious materials.
Content:
Front Matter
• Table of Contents
1. Introduction to Methodology
Step 1. Define Concrete Performance Requirements
Step 2. Select Durable Raw Materials
Step 3. Generate the Experimental Design Matrix
Step 4. Perform Testing
Step 5. Analyze Test Results and Predict the Optimum Mixture Proportions
Step 6. Perform Confirmation Testing and Select Best Concrete
• Glossary of Statistical Experimental Design - Related Terms
• References
• Acronyms and Abbreviations

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