Structural Behavior of Asphalt Pavements: Intergrated Analysis and Design of Conventional and Heavy Duty Asphalt Pavement

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(Last Updated On: September 22, 2017)

Structural Behavior of Asphalt Pavements provides engineers and researchers with a detailed guide to the structural behavioral dynamics of asphalt pavement including: pavement temperature distribution, mechanistic response of pavement structure under the application of heavy vehicles, distress mechanism of pavement, and pavement deterioration performance and dynamic equations.

An authoritative guide for understanding the key mechanisms for creating longer lasting pavements, Structural Behavior of Asphalt Pavements describes the intrinsic consistency between macroscopic performance and microscopic response, structure and material, as well as global and local performances, and demonstrates the process of pavement analyses and designs, approaching science from empirical analyses.

  • Analyzes the external and internal factors influencing pavement temperature field, and provide a review of existing pavement temperature prediction models
  • Introduces a “Bridge Principle” through which pavement performance and fatigue properties are consolidated
  • Defines the intrinsic consistency between macroscopic performance and microscopic response, structure and material, as well as global and local performance
  • Summaries the mechanistic response of pavement structure under the application of heavy vehicle, distress mechanism of pavement, pavement deterioration performance and dynamic equations, and life cycle analysis of pavement

Table of contents : 
Content: 

Front Matter,Copyright,PrefaceEntitled to full textChapter 1 - Introduction, Pages 1-59
Chapter 2 - Distribution of the temperature field in a pavement structure, Pages 61-177
Chapter 3 - Analysis of load stress for pavement structure, Pages 179-242
Chapter 4 - General damage characteristics for asphalt pavement, Pages 243-295
Chapter 5 - The mechanism of initial damage for asphalt pavement, Pages 297-388
Chapter 6 - The structural behavior equation for asphalt pavements, Pages 389-499
Chapter 7 - The structural behavior of overlaid asphalt pavements, Pages 501-547
Chapter 8 - LCCA-based design method for asphalt pavement, Pages 549-600
Chapter 9 - Predictions of rutting on asphalt pavements, Pages 601-648
Chapter 10 - The Bridge Principle: Universal pavement behavior equations, Pages 649-714
Chapter 11 - Shear strength measurements for asphalt mixture, Pages 715-795
Chapter 12 - Integrated pavement structural and material design, Pages 797-819
Chapter 13 - Asphalt mix homogeneity, Pages 821-921
Chapter 14 - The precise design of asphalt pavement, Pages 923-940
Appendix I - Development of a static device for the tire-pavement contact pressure test, Pages 941-957
Appendix II - Tests of tire-pavement contact pressure, Pages 959-990
Appendix III - Analysis of the test results of tire-pavement contact pressure, Pages 991-1023
Appendix IV - Climatic data for six regions and monthly average air temperature in 1951–80 for the provincial capitals, Pages 1025-1031

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Structural Behavior of Asphalt Pavements: Intergrated Analysis and Design of Conventional and Heavy Duty Asphalt Pavement
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