MODELING OF ASPHALT CONCRETE

An Expert Guide to Developing More-Durable and Cost-Effective Asphalt Pavements

Written by distinguished experts from countries around the world, Modeling of Asphalt Concrete presents in-depth coverage of the current materials, methods, and models used for asphalt pavements.

Included is state-of-the-art information on fundamental material properties and mechanisms affecting the performance of asphalt concrete, new rheological testing and analysis techniques, constitutive models, and performance prediction methodologies for asphalt concrete and asphalt pavements. Emphasis is placed on the modeling of asphalt mixes for specific geographic/climatic requirements.

In light of America's crumbling infrastructure and our heavy usage of asphalt as a paving material, this timely reference is essential for the development of more-durable and cost-effective asphalt materials for both new construction and rehabilitation.

Harness the Latest Breakthroughs in Asphalt Concrete Technology:

• Asphalt Rheology • Constitutive Models • Stiffness Characterization • Models for Low-Temperature Cracking • Models for Fatigue Cracking and Moisture Damage • Models for Rutting and Aging
1101368642
MODELING OF ASPHALT CONCRETE

An Expert Guide to Developing More-Durable and Cost-Effective Asphalt Pavements

Written by distinguished experts from countries around the world, Modeling of Asphalt Concrete presents in-depth coverage of the current materials, methods, and models used for asphalt pavements.

Included is state-of-the-art information on fundamental material properties and mechanisms affecting the performance of asphalt concrete, new rheological testing and analysis techniques, constitutive models, and performance prediction methodologies for asphalt concrete and asphalt pavements. Emphasis is placed on the modeling of asphalt mixes for specific geographic/climatic requirements.

In light of America's crumbling infrastructure and our heavy usage of asphalt as a paving material, this timely reference is essential for the development of more-durable and cost-effective asphalt materials for both new construction and rehabilitation.

Harness the Latest Breakthroughs in Asphalt Concrete Technology:

• Asphalt Rheology • Constitutive Models • Stiffness Characterization • Models for Low-Temperature Cracking • Models for Fatigue Cracking and Moisture Damage • Models for Rutting and Aging
91.49 In Stock
MODELING OF ASPHALT CONCRETE

MODELING OF ASPHALT CONCRETE

by Y. Richard Kim
MODELING OF ASPHALT CONCRETE

MODELING OF ASPHALT CONCRETE

by Y. Richard Kim

eBook

$91.49  $121.50 Save 25% Current price is $91.49, Original price is $121.5. You Save 25%.

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Overview

An Expert Guide to Developing More-Durable and Cost-Effective Asphalt Pavements

Written by distinguished experts from countries around the world, Modeling of Asphalt Concrete presents in-depth coverage of the current materials, methods, and models used for asphalt pavements.

Included is state-of-the-art information on fundamental material properties and mechanisms affecting the performance of asphalt concrete, new rheological testing and analysis techniques, constitutive models, and performance prediction methodologies for asphalt concrete and asphalt pavements. Emphasis is placed on the modeling of asphalt mixes for specific geographic/climatic requirements.

In light of America's crumbling infrastructure and our heavy usage of asphalt as a paving material, this timely reference is essential for the development of more-durable and cost-effective asphalt materials for both new construction and rehabilitation.

Harness the Latest Breakthroughs in Asphalt Concrete Technology:

• Asphalt Rheology • Constitutive Models • Stiffness Characterization • Models for Low-Temperature Cracking • Models for Fatigue Cracking and Moisture Damage • Models for Rutting and Aging

Product Details

ISBN-13: 9780071596510
Publisher: McGraw Hill LLC
Publication date: 09/22/2007
Sold by: Barnes & Noble
Format: eBook
Pages: 320
File size: 14 MB
Note: This product may take a few minutes to download.

About the Author

Y. Richard Kim, Ph.D., P.E., Department of Civil Engineering, North Carolina State University, Raleigh, North Carolina.

Table of Contents

Part 1: Asphalt Rheology Part 2: Constitutive Materials Part 3: Stiffness Characterizations Part 4: Models for Low Temperature Cracking Part 5: Models for Fatigue Cracking and Moisture Damage Part 6: Models for Rutting.
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