Exploring the recovery of fatigue damage in bituminous mixtures: the role of healing

被引:38
|
作者
Moreno-Navarro, Fernando [1 ]
Sol-Sanchez, Miguel [1 ]
Carmen Rubio-Gamez, M. [1 ]
机构
[1] Univ Granada LabIC UGR, Lab Construct Engn, Granada 18071, Spain
关键词
heating; healing; UGR-FACT; bituminous mixtures; rest period; fatigue cracking; CRACKING BEHAVIOR; ASPHALT;
D O I
10.1080/14680629.2015.1029706
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
In recent years, many studies have assessed how the healing phenomenon could recover the stiffness or the strength of bituminous materials. Nevertheless, some factors that appear during these studies have opened up a debate about whether a recovery of the damage actually occurs, and whether this recovery is lasting. This study attempts to provide an approach to these questions. For this purpose, an analysis at both micro- and macro-damage levels has been carried out, taking into account different variables. The main conclusions drawn from this study are that during rest periods without heating induction, the recovery produced in the material is mainly due to reversible phenomena. Furthermore, it has been demonstrated that although healing can recover part of the damage caused by fatigue processes it cannot restore the initial properties of the material. The restored material is still relatively brittle and due to this, the stresses generated in the zone in closer proximity to the healed cracks are higher, and the restored properties fail prematurely.
引用
收藏
页码:75 / 89
页数:15
相关论文
共 50 条
  • [41] Evaluation of Fatigue Damage and Healing Capability of RAP Mixtures Using Time Lag: An ITSM Test Parameter
    Ramya Sri Mullapudi
    Priyadarshini Saha Chowdhury
    Sudhakar Reddy Kusam
    [J]. International Journal of Pavement Research and Technology, 2023, 16 : 1168 - 1180
  • [42] Fatigue and healing properties of bituminous mastics reinforced with nano-sized additives
    Ezio Santagata
    Orazio Baglieri
    Lucia Tsantilis
    Davide Dalmazzo
    Giuseppe Chiappinelli
    [J]. Mechanics of Time-Dependent Materials, 2016, 20 : 367 - 387
  • [43] Experimental Investigation on the Fatigue Damage Behaviour of Modified Bituminous Binders and Mastics
    Santagata, Ezio
    Baglieri, Orazio
    Dalmazzo, Davide
    [J]. 2008 JOURNAL OF THE ASSOCIATION OF ASPHALT PAVING TECHNOLOGISTS, VOL 77, 2008, 77 : 851 - +
  • [44] Fatigue and healing properties of bituminous mastics reinforced with nano-sized additives
    Santagata, Ezio
    Baglieri, Orazio
    Tsantilis, Lucia
    Dalmazzo, Davide
    Chiappinelli, Giuseppe
    [J]. MECHANICS OF TIME-DEPENDENT MATERIALS, 2016, 20 (03) : 367 - 387
  • [45] Mean damage parameter for the characterization of fatigue cracking behavior in bituminous mixes
    Moreno-Navarro, F.
    Rubio-Gamez, M. C.
    [J]. MATERIALS & DESIGN, 2014, 54 : 748 - 754
  • [46] Fatigue Resistance of Bituminous Mixtures and Mortars Containing High Reclaimed Asphalt Content
    Margaritis, Alexandros
    Jacobs, Geert
    Pipintakos, Georgios
    Blom, Johan
    Van den Bergh, Wim
    [J]. MATERIALS, 2020, 13 (24) : 1 - 17
  • [47] Fatigue and Thermal Cracking of Hot and Warm Bituminous Mixtures with Different RAP Contents
    Nguyen Hoang Pham
    Sauzeat, Cedric
    Di Benedetto, Herve
    Gonzalez-Leon, Juan A.
    Barreto, Gilles
    Nicolai, Aurelia
    [J]. SUSTAINABILITY, 2020, 12 (23) : 1 - 21
  • [48] Fatigue Behavior of Bituminous Mixtures under Repeated Loading in Low Strain Level
    Wachi, Takashi
    Saeki, Yoshizumi
    Kogo, Kenichi
    Himeno, Kenji
    [J]. CJWPT 2009: PROCEEDINGS OF THE 5TH CHINA-JAPAN WORKSHOP ON PAVEMENT TECHNOLOGIES, 2009, : 157 - +
  • [49] Evaluation of healing potential of bituminous binders using a viscoelastic continuum damage approach
    Baglieri, Orazio
    Tsantilis, Lucia
    Santagata, Ezio
    [J]. CONSTRUCTION AND BUILDING MATERIALS, 2018, 184 : 344 - 350
  • [50] Multiscale Modeling of Damage Evolution in Viscoelastic Bituminous Mixtures Subjected to Cyclic Loading
    Kim, Yong-Rak
    Souza, Flavio V.
    Park, Taehyo
    [J]. JOURNAL OF ENGINEERING MATERIALS AND TECHNOLOGY-TRANSACTIONS OF THE ASME, 2013, 135 (02):