751
Views
64
CrossRef citations to date
0
Altmetric
Original Articles

Laboratory evaluation of recycled waste concrete into asphalt mixtures

, &
Pages 531-539 | Received 07 Apr 2012, Accepted 05 Nov 2012, Published online: 29 Nov 2012

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (10)

Alireza Azarhoosh, Mehdi Koohmishi & Fereidoon Moghadas Nejad. (2022) Evaluation of fatigue cracking of hot-mix asphalts containing recycled concrete aggregates coated with waste plastic bottles using thermodynamic parameters. The Journal of Adhesion 98:8, pages 1076-1096.
Read now
Paulo Paiva Oliveira Leite Dyer, Luis Miguel Gutierrez Klinsky, Silvelene Alessandra Silva & Maryangela Geimba de Lima. (2021) Mechanical and structural assessment of hot mix bituminous mixtures containing waste foundry sand. International Journal of Pavement Engineering 22:14, pages 1801-1812.
Read now
Milad Aghililotf, Massoud Palassi & Amir Mohammad Ramezanianpour. (2021) Mechanical and durability assessment of unconfined recycled concrete aggregates and natural aggregates used in road constructions. International Journal of Pavement Engineering 22:12, pages 1518-1530.
Read now
Fernando C. G. Martinho, Luis G. Picado-Santos & Silvino D. Capitão. (2020) Assessment of warm-mix asphalt concrete containing sub-products as part of aggregate blend. International Journal of Pavement Engineering 21:10, pages 1213-1222.
Read now
Gaby Ruiz, Francisco Chávez, Stephanie Santamaría, William Araujo, Jorge Timaná & Robert Schmitt. (2020) Laboratory evaluation of seashells used as fine aggregate in hot mix asphalt. International Journal of Pavement Engineering 21:5, pages 620-628.
Read now
Sun Daquan, Tian Yang, Sun Guoqiang, Pang Qi, Yu Fan & Zhu Xingyi. (2018) Performance evaluation of asphalt mixtures containing recycled concrete aggregates. International Journal of Pavement Engineering 19:5, pages 422-428.
Read now
Yuanyuan Wang, Lu Sun & Jie Zhou. (2017) Pavement performance evaluation of recycled styrene–butadiene–styrene-modified asphalt mixture. International Journal of Pavement Engineering 18:5, pages 404-413.
Read now
Dina Kamal Kuttah, Kenichi Sato & Chikashi Koga. (2015) Evaluating the dynamic stabilities of asphalt concrete mixtures incorporating plasterboard wastes. International Journal of Pavement Engineering 16:10, pages 929-938.
Read now
M. Arabani, S. Babamohammadi & A.R. Azarhoosh. (2015) Experimental investigation of seashells used as filler in hot mix asphalt. International Journal of Pavement Engineering 16:6, pages 502-509.
Read now
Fereidoon Moghadas Nejad, Alireza Azarhoosh, Gholam Hossein Hamedi & Hossein Roshani. (2014) Rutting performance prediction of warm mix asphalt containing reclaimed asphalt pavements. Road Materials and Pavement Design 15:1, pages 207-219.
Read now

Articles from other publishers (54)

Pinki Deb & Kh. Lakshman Singh. (2022) Experimental Investigation on the Mechanical Performance of Cold Mix Asphalt Using Construction Demolition Waste as Filler. International Journal of Pavement Research and Technology 16:6, pages 1618-1635.
Crossref
Qiang Cai, Peizhen Li, Jingjing Luo, Jiahui Feng, Kai Wu & Linglin Xu. (2023) Production of green autoclaved bricks from waste quarry sludge: Mechanical and microstructural aspects. Construction and Building Materials 401, pages 132874.
Crossref
Xinjie Wang, Xiaolin Liu, Yongkang Wu, Pinghua Zhu, Hui Liu, Chunhong Chen & Fajing Wang. (2023) Road use and electrothermal performance of graphene-conductive asphalt-recycled pervious concrete under severe cold environment. Construction and Building Materials 400, pages 132829.
Crossref
Menglin Li, Jun Xie, Shaopeng Wu & Junlin Chen. (2023) Study on the influence mechanism of recycled concrete aggregate on strength of asphalt mixtures. Construction and Building Materials 400, pages 132720.
Crossref
Pinki Deb & Kh.Lakshman Singh. (2023) Effect of Curing on Failure Characteristics of Cold Mix Asphalt Containing Different Fillers. Iranian Journal of Science and Technology, Transactions of Civil Engineering 47:4, pages 2467-2483.
Crossref
Mohammed Q. Ismael, Hasan H. Joni & Mohammed Y. Fattah. (2023) Neural network modeling of rutting performance for sustainable asphalt mixtures modified by industrial waste alumina. Ain Shams Engineering Journal 14:5, pages 101972.
Crossref
Lee Leon, Jovanca Smith & Annabella Frank. (2023) Intermediate Temperature Fracture Resistance of Stone Matrix Asphalt Containing Untreated Recycled Concrete Aggregate. The Baltic Journal of Road and Bridge Engineering 18:1, pages 94-121.
Crossref
Erdinç Halis ALAKARA, Melih Naci AĞAOĞLU & Sinan NACAR. (2023) Mermer ve beton atıkları ile üretilen bitümlü sıcak karışımların Marshall parametrelerinin incelenmesi ve YSA ile tahmin edilmesi. Gümüşhane Üniversitesi Fen Bilimleri Enstitüsü Dergisi.
Crossref
Pinki Deb & Kh. Lakshman Singh. (2022) Performance of cement-treated cold mix asphalt with different fillers. Innovative Infrastructure Solutions 8:1.
Crossref
Emiliano Pasquini, Fernando Moreno-Navarro, Augusto Cannone Falchetto, Marco Pasetto, Giovanni Giacomello, Raul Tauste-Martinez, Di Wang, Michel Vaillancourt, Alan Carter, Éric Lachance-Tremblay, Nunzio Viscione, Francesca Russo, Marta Skaf, Marko Orešković, Ana Cristina Freire, David Hernando, Peter Mikhailenko & Lily D. Poulikakos. 2023. Valorisation of Waste and Secondary Materials for Roads. Valorisation of Waste and Secondary Materials for Roads 69 90 .
Mohammad Naser, Mu tasim Abdel-Jaber, Rawan Al-shamayleh, Nawal Louzi & Reem Ibrahim. (2022) Evaluating the effects of using reclaimed asphalt pavement and recycled concrete aggregate on the behavior of hot mix asphalts. Transportation Engineering 10, pages 100140.
Crossref
Juan Gabriel Bastidas-Martínez, Fredy Alberto Reyes-Lizcano & Hugo Alexander Rondón-Quintana. (2022) Use of recycled concrete aggregates in asphalt mixtures for pavements: A review. Journal of Traffic and Transportation Engineering (English Edition) 9:5, pages 725-741.
Crossref
Jing Hu, Zhendong Qian, Qibo Huang & Pengfei Liu. (2022) Investigation on high-temperature stability of recycled aggregate asphalt mixture based on microstructural characteristics. Construction and Building Materials 341, pages 127909.
Crossref
Dongxing Wu, Wenchao Chu, Longlin Wang, Wensheng Wang, Haoyun Wang, Xuanhao Shangguan & Xiang Cui. (2022) Preliminary Feasibility Investigation on Reutilization of Recycled Crushed Clay Bricks from Construction and Demolition Waste for Cement-Stabilized Macadam. Materials 15:9, pages 3171.
Crossref
Deepak Prasad, Bhupendra Singh & Sanjeev Kumar Suman. (2022) Utilization of recycled concrete aggregate in bituminous mixtures: A comprehensive review. Construction and Building Materials 326, pages 126859.
Crossref
Chidozie Maduabuchukwu Nwakaire, Soon Poh Yap, Chiu Chuen Onn, Choon Wah Yuen & Seyed Mohammad Hossein Moosavi. (2022) Utilisation of Recycled Concrete Aggregates for Sustainable Porous Asphalt Pavements. The Baltic Journal of Road and Bridge Engineering 17:1, pages 117-142.
Crossref
Jing Hu, Pengfei Liu, Qibo Huang, Zhendong Qian & Sang Luo. (2022) Research on interfacial zone failure of asphalt mixture mixed with recycled aggregates. Construction and Building Materials 319, pages 126113.
Crossref
Pinki Deb & Kh. Lakshman Singh. (2021) Mix design, durability and strength enhancement of cold mix asphalt: a state-of-the-art review. Innovative Infrastructure Solutions 7:1.
Crossref
Abbaas I. Kareem, Qais Sahib Banyhussan & Hayder Mohammed Al-Taweel. (2022) Measurement of aggregates breakage of asphalt mixtures with construction and demolition waste. Materials Today: Proceedings 61, pages 420-427.
Crossref
Jie Ji, Pengfei Li, Meng Chen, Ran Zhang, Wenjuan Zhou & Zhanping You. (2021) Review on the fatigue properties of recycled asphalt concrete containing construction and demolition wastes. Journal of Cleaner Production 327, pages 129478.
Crossref
Yang Zhang, Bora Cetin & Tuncer B. Edil. (2021) Seasonal Performance Evaluation of Pavement Base Using Recycled Materials. Sustainability 13:22, pages 12714.
Crossref
Yongsheng Yao, Jue Li, Chenghao Liang & Xin Hu. (2021) Effect of Coarse Recycled Aggregate on Failure Strength for Asphalt Mixture Using Experimental and DEM Method. Coatings 11:10, pages 1234.
Crossref
Francesca Russo, Cristina Oreto & Rosa Veropalumbo. (2021) A Practice for the Application of Waste in Road Asphalt Pavements in an Eco-Friendly Way. Applied Sciences 11:19, pages 9268.
Crossref
Peter Mikhailenko, Zhengyin Piao, Muhammad Rafiq Kakar, Moises Bueno & Lily D. Poulikakos. (2021) Durability and surface properties of low-noise pavements with recycled concrete aggregates. Journal of Cleaner Production 319, pages 128788.
Crossref
Zenggang Zhao, Shaopeng Wu, Quantao Liu, Jun Xie, Chao Yang, Pei Wan, Shuaicheng Guo & Wenbo Ma. (2021) Characteristics of calcareous sand filler and its influence on physical and rheological properties of asphalt mastic. Construction and Building Materials 301, pages 124112.
Crossref
Junhui Zhang, Cheng Li, Le Ding & Jian Li. (2021) Performance evaluation of cement stabilized recycled mixture with recycled concrete aggregate and crushed brick. Construction and Building Materials 296, pages 123596.
Crossref
Wenyuan Xu, Wei Li & Yongcheng Ji. (2021) Mechanical Behavior Investigation of Reclaimed Asphalt Aggregate Concrete in a Cold Region. Materials 14:15, pages 4101.
Crossref
Alireza Azarhoosh, Mehdi Koohmishi & Gholam Hossein Hamedi. (2021) Rutting Resistance of Hot Mix Asphalt Containing Coarse Recycled Concrete Aggregates Coated with Waste Plastic Bottles. Advances in Civil Engineering 2021, pages 1-11.
Crossref
Basha FayissaOluma GudinaBiruk Yigezu. (2020) Application of Sawdust Ash as Filler Material in Asphaltic Concrete Production. Civil and Environmental Engineering 16:2, pages 351-359.
Crossref
Bandana Jethy, Bibhuti Bhusan Mukharjee & Sudhanshu Sekhar Das. (2020) Repercussion of reclaimed concrete fine aggregates over hot mix asphalt design. Innovative Infrastructure Solutions 5:3.
Crossref
Yan Tan, Chenxu Zhou & Jinzhi Zhou. (2020) Influence of the Steel Fiber Content on the Flexural Fatigue Behavior of Recycled Aggregate Concrete. Advances in Civil Engineering 2020, pages 1-12.
Crossref
Edgar H. Sanchez-Cotte, Luis Fuentes, Gilberto Martinez-Arguelles, Hugo Alexander Rondón Quintana, Lubinda F. Walubita & Julio M. Cantero-Durango. (2020) Influence of recycled concrete aggregates from different sources in hot mix asphalt design. Construction and Building Materials 259, pages 120427.
Crossref
Le Ding, Junhui Zhang, Bowen Feng & Cheng Li. (2020) Performance Evaluation of Recycled Asphalt Mixtures Containing Construction and Demolition Waste Applicated as Pavement Base. Advances in Civil Engineering 2020, pages 1-11.
Crossref
Fan Zhang, Yanbing Ju, Peiwu Dong & Ernesto DR Santibanez Gonzalez. (2020) A fuzzy evaluation and selection of construction and demolition waste utilization modes in Xi’an, China. Waste Management & Research: The Journal for a Sustainable Circular Economy 38:7, pages 792-801.
Crossref
Chidozie Maduabuchukwu Nwakaire, Soon Poh Yap, Choon Wah Yuen, Chiu Chuen Onn, Suhana Koting & Ali Mohammed Babalghaith. (2020) Laboratory study on recycled concrete aggregate based asphalt mixtures for sustainable flexible pavement surfacing. Journal of Cleaner Production 262, pages 121462.
Crossref
Aleksandar Radević, Ivan Isailović, Michael P. Wistuba, Dimitrije Zakić, Marko Orešković & Goran Mladenović. (2020) The Impact of Recycled Concrete Aggregate on the Stiffness, Fatigue, and Low-Temperature Performance of Asphalt Mixtures for Road Construction. Sustainability 12:10, pages 3949.
Crossref
Chidozie Maduabuchukwu Nwakaire, Soon Poh Yap, Chiu Chuen Onn, Choon Wah Yuen & Hussein Adebayo Ibrahim. (2020) Utilisation of recycled concrete aggregates for sustainable highway pavement applications; a review. Construction and Building Materials 235, pages 117444.
Crossref
Jayvant Choudhary, Brind Kumar & Ankit Gupta. (2020) Utilization of solid waste materials as alternative fillers in asphalt mixes: A review. Construction and Building Materials 234, pages 117271.
Crossref
B. Cantero, I. F. Sáez del Bosque, A. Matías, M. I. Sánchez de Rojas & C. Medina. (2020) Effect of Recycled Aggregate on Performance of Granular Skeleton. ACI Materials Journal.
Crossref
Abbaas I. Kareem & Hamid Nikraz. 2020. Advances in Construction and Demolition Waste Recycling. Advances in Construction and Demolition Waste Recycling 199 227 .
Emiliano Pasquini, Giovanni Giacomello, Marta Skaf, Vanesa Ortega-Lopez, Juan Manuel Manso & Marco Pasetto. 2020. Proceedings of the 5th International Symposium on Asphalt Pavements & Environment (APE). Proceedings of the 5th International Symposium on Asphalt Pavements & Environment (APE) 214 223 .
Hanaa Khaleel Alwan Al-BayatiSusan L. Tighe. (2019) Effect of Recycled Concrete Aggregate on Rutting and Stiffness Characteristics of Asphalt Mixtures. Journal of Materials in Civil Engineering 31:10.
Crossref
Israel Rodríguez-Fernández, Pedro Lastra-González, Irune Indacoechea-Vega & Daniel Castro-Fresno. (2019) Recyclability potential of asphalt mixes containing reclaimed asphalt pavement and industrial by-products. Construction and Building Materials 195, pages 148-155.
Crossref
Ravindra K. Dhir, Jorge de Brito, Rui V. Silva & Chao Qun Lye. 2019. Sustainable Construction Materials. Sustainable Construction Materials 451 494 .
D. El-Tahan, A. Gabr, S. El-Badawy & M. Shetawy. (2018) Evaluation of recycled concrete aggregate in asphalt mixes. Innovative Infrastructure Solutions 3:1.
Crossref
Kiranbala Tanty, Bibhuti Bhusan Mukharjee & Sudhanshu Shekhar Das. (2018) A Factorial Design Approach to Analyse the Effect of Coarse Recycled Concrete Aggregates on the Properties of Hot Mix Asphalt. Journal of The Institution of Engineers (India): Series A 99:2, pages 165-181.
Crossref
Mahyar Arabani & Seyed Amid Tahami. (2017) Assessment of mechanical properties of rice husk ash modified asphalt mixture. Construction and Building Materials 149, pages 350-358.
Crossref
Aleksandar Radević, Aleksandar Đureković, Dimitrije Zakić & Goran Mladenović. (2017) Effects of recycled concrete aggregate on stiffness and rutting resistance of asphalt concrete. Construction and Building Materials 136, pages 386-393.
Crossref
L.D. Poulikakos, C. Papadaskalopoulou, B. Hofko, F. Gschösser, A. Cannone Falchetto, M. Bueno, M. Arraigada, J. Sousa, R. Ruiz, C. Petit, M. Loizidou & M.N. Partl. (2017) Harvesting the unexplored potential of European waste materials for road construction. Resources, Conservation and Recycling 116, pages 32-44.
Crossref
S.N. Moghaddas Tafreshi & A.H. Norouzi. (2015) Application of waste rubber to reduce the settlement of road embankment. Geomechanics and Engineering 9:2, pages 219-241.
Crossref
Mohammad Saeed Pourtahmasb, Mohamed Rehan Karim & Shahaboddin Shamshirband. (2015) Resilient modulus prediction of asphalt mixtures containing Recycled Concrete Aggregate using an adaptive neuro-fuzzy methodology. Construction and Building Materials 82, pages 257-263.
Crossref
A.R. Pasand?n & I. P?rez. (2015) Overview of bituminous mixtures made with recycled concrete aggregates. Construction and Building Materials 74, pages 151-161.
Crossref
Mohammad Saeed Pourtahmasb & Mohamed Rehan Karim. (2014) Utilization of Recycled Concrete Aggregates in Stone Mastic Asphalt Mixtures. Advances in Materials Science and Engineering 2014, pages 1-9.
Crossref
Animesh Das & Aravind Krishna Swamy. 2014. Climate Change, Energy, Sustainability and Pavements. Climate Change, Energy, Sustainability and Pavements 419 438 .

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.