Integrated experimental-numerical approach to model progressive moisture damage behavior of bituminous paving mixtures

Citations

WEB OF SCIENCE

7
Citations

SCOPUS

7

초록

This paper presents an integrated experimental-numerical approach to model the progressive moisture damage characteristics of bituminous paving mixtures. To this end, a Fickian model is utilized to determine the diffusion coefficient, which is a key property of simulating moisture transport causing moisture damage, and the semicircular bend (SCB) fracture tests are carried out to obtain the elastic stiffness and fracture properties at different levels of moisture conditioning. A sequentially coupled moisture diffusion and mechanical loading is implemented using a finite element method to model the progressive damage behavior due to the moisture transport followed by the mechanical loading. To simulate the fracture process as a gradual separation, a cohesive zone model is incorporated into the model. The integrated approach presented herein results in a degradation function that characterizes the progressive damage due to moisture uptake with two model parameters representing the remaining properties of materials and their degradation trend. These two model parameters can be used to estimate moisture damage mechanisms and damage resistance potential, both of which are material specific.

키워드

bituminous paving mixturesmoisture damagesemicircular bendfracturecohesive zoneADHESIVELY BONDED JOINTSFINITE-ELEMENT MESHESENVIRONMENTAL DEGRADATIONASPHALT MIXTURESFRACTURESUSCEPTIBILITYFRAGMENTATIONDURABILITYCONCRETE
제목
Integrated experimental-numerical approach to model progressive moisture damage behavior of bituminous paving mixtures
저자
Ban, HokiKim, Yong-Rak
DOI
10.1139/L2012-006
발행일
2012-03
유형
Article
저널명
Canadian Journal of Civil Engineering
39
3
페이지
323 ~ 333