739
Views
33
CrossRef citations to date
0
Altmetric
Original Articles

Mechanical properties and strength criteria of cement-stabilised recycled concrete aggregate

, &
Pages 339-348 | Received 06 Sep 2016, Accepted 27 Jan 2017, Published online: 28 Feb 2017

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

Read on this site (7)

Kondeti Chiranjeevi, Doma Hemanth Kumar, Anil Sagar Srinivasa & A. U. Ravi Shankar. (2023) Optimisation of recycled concrete aggregates for cement-treated bases by response surface method. International Journal of Pavement Engineering 24:1.
Read now
Ram Prasad Neupane, Thanongsak Imjai, Natt Makul, Reyes Garcia, Boksun Kim & Sandeep Chaudhary. (2023) Use of recycled aggregate concrete in structural members: a review focused on Southeast Asia. Journal of Asian Architecture and Building Engineering 0:0, pages 1-24.
Read now
Zhong Han, Wei-lie Zou & Xie-qun Wang. (2021) Predicting water retention curve and resilient modulus of compacted natural and recycled pavement unbound granular materials. International Journal of Pavement Engineering 22:13, pages 1697-1710.
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
Changqing Deng, Yingjun Jiang, Tian Tian & Zhejiang Chen. (2021) Resilient modulus and influencing factors of vertical vibration compacted cement-stabilized macadam. International Journal of Pavement Engineering 22:11, pages 1435-1445.
Read now
Mohsen Aboutalebi Esfahani. (2020) Evaluating the feasibility, usability, and strength of recycled construction and demolition waste in base and subbase courses. Road Materials and Pavement Design 21:1, pages 156-178.
Read now
Beata Gajewska, Cezary Kraszewski & Leszek Rafalski. (2018) Significance of cement-stabilised soil grain size distribution in determining the relationship between strength and resilient modulus. Road Materials and Pavement Design 19:7, pages 1692-1701.
Read now

Articles from other publishers (26)

Ganggui Liu, Xue Luo, Yuqing Zhang & Hui Li. (2023) Predicting fatigue damage growth in cement-treated base layer built with construction and demolition waste. Construction and Building Materials 406, pages 133371.
Crossref
Sarella Chakravarthi, Matta Devendra Vara Prasad & S. Shankar. 2023. Recent Advances in Transportation Systems Engineering and Management. Recent Advances in Transportation Systems Engineering and Management 489 502 .
Xuejiang Lan, Xiao Zhang, Zhongqing Hao & Yongbao Wang. (2022) Strength and shrinkage properties of cement stabilized macadam bases incorporating 0–2.36 millimetre recycled fine aggregate. Case Studies in Construction Materials 16, pages e00984.
Crossref
Jiaolong Ren, Lin Zhang, Hongbo Zhao, Zedong Zhao & Siyuan Wang. (2022) Determination of the fatigue equation for the cement-stabilized cold recycled mixtures with road construction waste materials based on data-driven. International Journal of Fatigue 158, pages 106765.
Crossref
Zhihao Jiao, Aiqin Shen, Zhenghua Lyu, Yinchuan Guo, Lusheng Wang & Shengnan Wang. (2021) Research on a Treatment Measure for Base Regeneration by Preset Cracking and Grouting for Severe Reflective Cracks. Arabian Journal for Science and Engineering 47:4, pages 4695-4712.
Crossref
Jun Zhang, Jinxiao Bai & Shouxin Wang. (2022) Fatigue damage evolution rule of cement stabilized macadam used in pavement’s base course at different curing time. Construction and Building Materials 325, pages 126827.
Crossref
Cezary Kraszewski, Leszek Rafalski & Beata Gajewska. (2022) Effect of Compaction Ratio on Mechanical Properties of Low-Strength Hydraulically Bound Mixtures for Road Engineering. Materials 15:4, pages 1561.
Crossref
Sarella Chakravarthi & S. Shankar. (2021) Utilization of recycled aggregates in cement-treated bases: a state-of-the-art review. Innovative Infrastructure Solutions 6:4.
Crossref
Penghui Wen, Chaohui Wang, Liang Song, Liangliang Niu & Haoyu Chen. (2021) Durability and Sustainability of Cement-Stabilized Materials Based on Utilization of Waste Materials: A Literature Review. Sustainability 13:21, pages 11610.
Crossref
Zedong Zhao, Siyuan Wang, Jiaolong Ren, Yi Wang & Chunguang Wang. (2021) Fatigue characteristics and prediction of cement-stabilized cold recycled mixture with road-milling materials considering recycled aggregate composition. Construction and Building Materials 301, pages 124122.
Crossref
Tao Meng, Songsong Lian, Kanjun Ying & Hongming Yu. (2021) Feasibility study of cement-stabilized materials using 100% mixed recycled aggregates from perspectives of mechanical properties and microstructure. REVIEWS ON ADVANCED MATERIALS SCIENCE 60:1, pages 490-502.
Crossref
Natt Makul, Roman Fediuk, Mugahed Amran, Abdullah M. Zeyad, Sergey Klyuev, Irina Chulkova, Togay Ozbakkaloglu, Nikolai Vatin, Maria Karelina & Afonso Azevedo. (2021) Design Strategy for Recycled Aggregate Concrete: A Review of Status and Future Perspectives. Crystals 11:6, pages 695.
Crossref
Natt MakulNatt Makul. 2021. Principles of Cement and Concrete Composites. Principles of Cement and Concrete Composites 115 148 .
Yingjun JiangKejia YuanChangqing DengTian Tian. (2020) Fatigue Performance of Cement-Stabilized Crushed Gravel Produced Using Vertical Vibration Compaction Method. Journal of Materials in Civil Engineering 32:11.
Crossref
Yingjun Jiang, Kejia Yuan, Qilong Li, Changqing Deng, Yong Yi, Yu Zhang & Jinshun Xue. (2020) Comparison of Mechanical Properties of Cement-Stabilized Loess Produced Using Different Compaction Methods. Advances in Materials Science and Engineering 2020, pages 1-20.
Crossref
Yancong Zhang, Lingling Gao & Wei Bian. (2020) Mechanical Performance of Concrete Made with Recycled Aggregates from Concrete Pavements. Advances in Materials Science and Engineering 2020, pages 1-8.
Crossref
Natt Makul. (2020) Cost-benefit analysis of the production of ready-mixed high-performance concrete made with recycled concrete aggregate: A case study in Thailand. Heliyon 6:6, pages e04135.
Crossref
Jiaolong Ren, Siyuan Wang & Guangyuan Zang. (2020) Effects of recycled aggregate composition on the mechanical characteristics and material design of cement stabilized cold recycling mixtures using road milling materials. Construction and Building Materials 244, pages 118329.
Crossref
Yingjun JiangZhanchuang HanJinshun XueChangqing DengXiaoping Ji. (2019) Laboratory Fatigue Performance of Vertical Vibration Compacted SRX-Stabilized Crushed Rock Material. Journal of Materials in Civil Engineering 31:12.
Crossref
Chaochao Liu, Songtao Lv, Xinghai Peng & Jianlong Zheng. (2019) Normalized characterization method for fatigue behavior of cement-treated aggregates based on the yield criterion. Construction and Building Materials 228, pages 117099.
Crossref
Guolin YangChaohui WangHao FuZhaobai YanWeiyong Yin. (2019) Waterborne Epoxy Resin–Polyurethane–Emulsified Asphalt: Preparation and Properties. Journal of Materials in Civil Engineering 31:11.
Crossref
Changqing Deng, Yingjun Jiang, Hongwei Lin & Xiaoping Ji. (2019) Mechanical-strength-growth law and predictive model for cement-stabilized macadam. Construction and Building Materials 215, pages 582-594.
Crossref
Zhang, Zou, Jia, Wang, Li & Shi. (2019) Effect of Thermo-Oxidative Ageing on Nano-Morphology of Bitumen. Applied Sciences 9:15, pages 3027.
Crossref
Wengang Zhang, Fang Wang, Jun Shi, Zhongmei Li & Xiaofei Liang. (2019) Experimental Study on Nano-Parameters of Styrene-Butadiene-Styrene Block Copolymer Modified Bitumen Based on Atomic Force Microscopy. Polymers 11:6, pages 989.
Crossref
Ravindra K. Dhir, Jorge de Brito, Rui V. Silva & Chao Qun Lye. 2019. Sustainable Construction Materials. Sustainable Construction Materials 451 494 .
Alaitz Linares-Unamunzaga, Hernán Gonzalo-Orden, Jesús Minguela & Heriberto Pérez-Acebo. (2018) New Procedure for Compacting Prismatic Specimens of Cement-Treated Base Materials. Applied Sciences 8:6, pages 970.
Crossref

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.