Skip to content

Preliminary Mechanical Analysis of Rubber-Cement Composites Suitable for Additive Process Construction (2020-08)

10.3390/jcs4030120

 Sambucci Matteo, Marini Danilo,  Sibai Abbas,  Valente Marco
Journal Article - Journal of Composites Science, Vol. 4, Iss. 3

Abstract

Additive manufacturing for cementitious materials represents the most attractive frontier in the modern context of Construction 4.0. In addition to the technological progress of printing systems, the development of functional and low environmental impact printable mixtures is one of the current challenges of digital fabrication in building and architectural fields. This paper proposes a preliminary physical-mechanical analysis on environmentally friendly mortars, compatible with the extrusion-based printing process, made up of recycling rubber aggregates deriving from end-of-life tires. In this study, two groups of rubber particle samples (0–1 mm rubber powder and 2–4 mm rubber granules) were used to partially/totally replace the mineral fraction of the reference printable mixture. Four tire rubber powder-granules proportions were investigated and control mortar (100% sand) was also prepared to compare its properties with those of the rubber-cement samples in terms of printability properties, mechanical strength, ductility, and structural isotropy. Based on the experimental results, the rubber aggregates increase the mixture fluidity, promoting better inter-layer adhesion than the neat mix. This leads to greater mechanical isotropy. As already investigated in other research works on Rubber-Concrete technology, the addition of rubber particles increases the ductility of the material but reduces its mechanical strength. However, by correctly balancing the fine and coarse rubber fraction, promising physical-mechanical performances were demonstrated.

14 References

  1. Craveiro Flávio, Duarte José, Bártolo Helena, Bartolo Paulo (2019-04)
    Additive Manufacturing as an Enabling Technology for Digital Construction:
    A Perspective on Construction 4.0
  2. Lim Jian, Weng Yiwei, Pham Quang-Cuong (2019-10)
    3D Printing of Curved Concrete Surfaces Using Adaptable Membrane Formwork
  3. Mechtcherine Viktor, Nerella Venkatesh, Will Frank, Näther Mathias et al. (2019-08)
    Large-Scale Digital Concrete Construction:
    CONPrint3D Concept for On-Site, Monolithic 3D Printing
  4. Nematollahi Behzad, Xia Ming, Sanjayan Jay (2017-07)
    Current Progress of 3D Concrete Printing Technologies
  5. Panda Biranchi, Bhagath Singh Gangapatnam, Unluer Cise, Tan Ming (2019-02)
    Synthesis and Characterization of One-Part Geopolymers for Extrusion-Based 3D Concrete Printing
  6. Panda Biranchi, Paul Suvash, Lim Jian, Tay Yi et al. (2017-08)
    Additive Manufacturing of Geopolymer for Sustainable Built Environment
  7. Papachristoforou Michail, Mitsopoulos Vasilios, Stefanidou Maria (2018-10)
    Evaluation of Workability Parameters in 3D Printing Concrete
  8. Salet Theo, Ahmed Zeeshan, Bos Freek (2018-05)
    3D Printed Concrete Bridge
  9. Salet Theo, Ahmed Zeeshan, Bos Freek, Laagland Hans (2018-05)
    Design of a 3D Printed Concrete Bridge by Testing
  10. Sambucci Matteo, Valente Marco, Sibai Abbas, Marini Danilo et al. (2020-07)
    Rubber-Cement Composites for Additive Manufacturing:
    Physical, Mechanical and Thermo-Acoustic Characterization
  11. Sanjayan Jay, Nematollahi Behzad, Xia Ming, Marchment Taylor (2018-04)
    Effect of Surface Moisture on Inter-Layer Strength of 3D Printed Concrete
  12. Valente Marco, Sambucci Matteo, Sibai Abbas, Musacchi Ettore (2020-07)
    Multi-Physics Analysis for Rubber-Cement Applications in Building and Architectural Fields:
    A Preliminary Analysis
  13. Valente Marco, Sibai Abbas, Sambucci Matteo (2019-09)
    Extrusion-Based Additive Manufacturing of Concrete Products:
    Revolutionizing and Remodeling the Construction Industry
  14. Wangler Timothy, Lloret-Fritschi Ena, Reiter Lex, Hack Norman et al. (2016-10)
    Digital Concrete:
    Opportunities and Challenges

15 Citations

  1. Su Yanli, Wu Chang, Shang Jiaqi, Zhang Pu (2025-06)
    Mechanical Properties of 3D-Printed High-Ductility Cementitious Composite with Sulphoaluminate Cement and Modified Crumb Rubber
  2. Xiong Baocheng, Liu Huanbao, Nie Ping, Li Xiaoxi et al. (2025-04)
    Effect of Different Surface Modification Methods of Small Particle Size Recycled Rubber Powder on Mechanical Properties of 3D Printed Concrete
  3. Sun Junbo, Zhang Yanling, Wu Qi, Wang Yufei et al. (2024-10)
    3D Printed Concrete Incorporating Waste-Rubber:
    Anisotropic Properties and Environmental Impact-Analysis
  4. Zhao Hongyu, Wang Yufei, Liu Xianda, Wang Xiangyu et al. (2024-08)
    Review on Solid Wastes Incorporated Cementitious Material Using 3D Concrete Printing-Technology
  5. González-Fonteboa Belén, Seara-Paz Sindy, Caneda-Martínez Laura (2024-06)
    3D Printing Concrete with Byproducts
  6. Xiong Baocheng, Nie Ping, Liu Huanbao, Li Xiaoxi et al. (2024-03)
    Optimization of Fiber-Reinforced Lightweight Rubber-Concrete Mix-Design for 3D Printing
  7. Wang Xiaonan, Li Wengui, Guo Yipu, Kashani Alireza et al. (2024-02)
    Concrete 3D Printing Technology in Sustainable Construction:
    A Review on Raw Materials, Concrete Types and Performances
  8. Zou Mengtong, Liu Chuanbei, Zhang Keying, Li Wuqian et al. (2023-11)
    Evaluation and Control of Printability and Rheological Properties of 3D Printed Rubberized Concrete
  9. Oosthuizen Jandré, Babafemi Adewumi, Walls Richard (2023-10)
    3D Printed Recycled Plastic Eco-Aggregate (Resin8) Concrete
  10. Valente Marco, Sambucci Matteo, Chougan Mehdi, Ghaffar Seyed (2023-04)
    Composite Alkali-Activated Materials with Waste-Tire-Rubber Designed for Additive Manufacturing:
    An Eco-Sustainable and Energy Saving Approach
  11. Fonseca Mariana, Matos Ana (2023-03)
    3D Construction Printing Standing for Sustainability and Circularity:
    Material-Level Opportunities
  12. Sambucci Matteo, Biblioteca Ilario, Valente Marco (2023-01)
    Life Cycle Assessment (LCA) of 3D Concrete Printing and Casting Processes for Cementitious Materials Incorporating Ground Waste Tire Rubber
  13. Liu Junli, Tran Jonathan (2022-09)
    Experimental Study on 3D-Printed Cementitious Materials Containing Surface-Modified Recycled Crumb-Rubber
  14. Liu Junli, Setunge Sujeeva, Tran Jonathan (2022-07)
    3D Concrete Printing with Cement-Coated Recycled Crumb Rubber:
    Compressive and Microstructural Properties
  15. Sambucci Matteo, Valente Marco (2021-06)
    Influence of Waste-Tire-Rubber-Particles-Size on the Microstructural, Mechanical, and Acoustic Insulation Properties of 3D Printable Cement Mortars

BibTeX
@article{samb_mari_siba_vale.2020.PMAoRCCSfAPC,
  author            = "Matteo Sambucci and Danilo Marini and Abbas Sibai and Marco Valente",
  title             = "Preliminary Mechanical Analysis of Rubber-Cement Composites Suitable for Additive Process Construction",
  doi               = "10.3390/jcs4030120",
  year              = "2020",
  journal           = "Journal of Composites Science",
  volume            = "4",
  number            = "3",
}
Formatted Citation

M. Sambucci, D. Marini, A. Sibai and M. Valente, “Preliminary Mechanical Analysis of Rubber-Cement Composites Suitable for Additive Process Construction”, Journal of Composites Science, vol. 4, no. 3, 2020, doi: 10.3390/jcs4030120.

Sambucci, Matteo, Danilo Marini, Abbas Sibai, and Marco Valente. “Preliminary Mechanical Analysis of Rubber-Cement Composites Suitable for Additive Process Construction”. Journal of Composites Science 4, no. 3 (2020). https://doi.org/10.3390/jcs4030120.