Investigation of the Self-Healing and Rejuvenating Properties of Aged Asphalt Mixture Containing Multi-Cavity Ca-Alginate Capsules
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[1] P. Osmari,et al. Rheological Indexes for Asphalt Binders Considering Different Aging Conditions: Evaluation and Correlations with Performance , 2022, SSRN Electronic Journal.
[2] Shaopeng Wu,et al. Review of ultraviolet ageing mechanisms and anti-ageing methods for asphalt binders , 2022, Journal of Road Engineering.
[3] Anjan Kumar Siddagangaiah,et al. Identification of parameter to assess cracking resistance of asphalt mixtures subjected to aging and moisture conditioning , 2022, Journal of Traffic and Transportation Engineering (English Edition).
[4] J. Norambuena-Contreras,et al. Recent advances on self-healing of bituminous materials by the action of encapsulated rejuvenators , 2020 .
[5] Tao Xu,et al. Thermal-oxidative aging mechanism of asphalt binder based on isothermal thermal analysis at the SARA level , 2020 .
[6] A. Sha,et al. Effect of metallic-waste aggregates on microwave self-healing performances of asphalt mixtures , 2020 .
[7] Shaopeng Wu,et al. Investigation of physicochemical and rheological properties of SARA components separated from bitumen , 2020 .
[8] Shaopeng Wu,et al. Diffusion Mechanism of Rejuvenator and Its Effects on the Physical and Rheological Performance of Aged Asphalt Binder , 2019, Materials.
[9] Shaopeng Wu,et al. Microfluidic synthesis of polymeric fibers containing rejuvenating agent for asphalt self-healing , 2019, Construction and Building Materials.
[10] Shaopeng Wu,et al. Influence of encapsulated sunflower oil on the mechanical and self-healing properties of dense-graded asphalt mixtures , 2019, Materials and Structures.
[11] Shaopeng Wu,et al. Synthesis and characterization of multi-cavity Ca-alginate capsules used for self-healing in asphalt mixtures , 2019, Construction and Building Materials.
[12] Erkut Yalçın,et al. Mechanical and Self-Healing Properties of Stone Mastic Asphalt Containing Encapsulated Rejuvenators , 2019, Journal of Materials in Civil Engineering.
[13] Chao Li,et al. Synthesis and Effect of Encapsulating Rejuvenator Fiber on the Performance of Asphalt Mixture , 2019, Materials.
[14] Yang Tian,et al. Aided regeneration system of aged asphalt binder based on microcapsule technology , 2019, Construction and Building Materials.
[15] Xueyan Liu,et al. Investigation of the Potential Use of Calcium Alginate Capsules for Self-Healing in Porous Asphalt Concrete , 2019, Materials.
[16] Shaopeng Wu,et al. Synthesis and characterization of compartmented Ca-alginate/silica self-healing fibers containing bituminous rejuvenator , 2018, Construction and Building Materials.
[17] J. Su,et al. Self‐Healing Asphalt Review: From Idea to Practice , 2018, Advanced Materials Interfaces.
[18] Shaopeng Wu,et al. Investigation of the flow and self-healing properties of UV aged asphalt binders , 2018, Construction and Building Materials.
[19] M. Yılmaz,et al. Effect of mixing and ageing on the mechanical and self-healing properties of asphalt mixtures containing polymeric capsules , 2018, Construction and Building Materials.
[20] Xiaoming Liu,et al. Calcium alginate capsules encapsulating rejuvenator as healing system for asphalt mastic , 2018 .
[21] Yuanyuan Pan,et al. Research on the aging and rejuvenation mechanisms of asphalt using atomic force microscopy , 2018 .
[22] Martin M. Riara,et al. Investigation into crack healing of asphalt mixtures using healing agents , 2018 .
[23] Wenbo Zeng,et al. Research on Ultra Violet (UV) Aging Depth of Asphalts , 2018 .
[24] Shaopeng Wu,et al. Evaluation of mechanical properties and aging index of 10-year field aged asphalt materials , 2017 .
[25] J. Norambuena-Contreras,et al. Microcapsules for self-healing of asphalt mixture without compromising mechanical performance , 2017 .
[26] Marwa M. Hassan,et al. Laboratory Testing of Self-Healing Microcapsules in Asphalt Mixtures Prepared with Recycled Asphalt Shingles , 2017 .
[27] Hassan A. Tabatabaee,et al. Analytical investigation of the impact of a novel bio-based recycling agent on the colloidal stability of aged bitumen , 2017 .
[28] Shifa Xu,et al. Effectiveness of Vegetable Oils as Rejuvenators for Aged Asphalt Binders , 2017 .
[29] Alvaro Garcia,et al. Study of the mechanical properties and self-healing ability of asphalt mixture containing calcium-alginate capsules , 2016 .
[30] A. Braham,et al. Influence of aging and moisture on laboratory performance of asphalt concrete , 2016 .
[31] Daniel Cantero,et al. The reinforcement and healing of asphalt mastic mixtures by rejuvenator encapsulation in alginate compartmented fibres , 2016 .
[32] Pooyan Ayar,et al. The healing capability of asphalt pavements: a state of the art review , 2016 .
[33] Alvaro Garcia,et al. Internal asphalt mixture rejuvenation using capsules , 2015 .
[34] Erik Schlangen,et al. Investigation the self-healing mechanism of aged bitumen using microcapsules containing rejuvenator , 2015 .
[35] Erik Schlangen,et al. Design and construction of microcapsules containing rejuvenator for asphalt , 2013 .
[36] Shaopeng Wu,et al. Investigation of self healing behaviour of asphalt mixes using beam on elastic foundation setup , 2012 .
[37] Erik Schlangen,et al. Synthesis and physicochemical properties of high compact microcapsules containing rejuvenator applied in asphalt , 2012 .
[38] Alvaro Garcia. Self-healing of open cracks in asphalt mastic , 2012 .
[39] Martin van de Ven,et al. Properties of capsules containing rejuvenators for their use in asphalt concrete , 2011 .
[40] Nathan E. Morian,et al. Oxidative Aging of Asphalt Binders in Hot-Mix Asphalt Mixtures , 2011 .
[41] Erik Schlangen,et al. Preparation of capsules containing rejuvenators for their use in asphalt concrete. , 2010, Journal of hazardous materials.
[42] Martin van de Ven,et al. Induction heating of electrically conductive porous asphalt concrete , 2010 .
[43] J. C. Petersen,et al. A Review of the Fundamentals of Asphalt Oxidation: Chemical, Physicochemical, Physical Property, and Durability Relationships , 2009 .
[44] Kit-Lun Yick,et al. Structure and thermal stability of microencapsulated phase-change materials , 2004 .
[45] Richard P. Wool,et al. A theory of healing at a polymer-polymer interface , 1983 .
[46] J. Su. Self-healing pavements using microcapsules containing rejuvenator: from idea to real application , 2020 .
[47] P. Visscher,et al. Viscoelasticity and near-newtonian behaviour of concentrated dispersions by Brownian dynamics simulations , 1994 .