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Inter-Layer Adhesion and Strength of Structures in Contour Crafting (2017-06)

Effects of Aggregate-Size, Extrusion-Rate, and Layer-Thickness

10.1016/j.autcon.2017.06.013

 Zareiyan Babak,  Khoshnevis Behrokh
Journal Article - Automation in Construction, Vol. 81, pp. 112-121

Abstract

Contour Crafting (CC) is a method that builds coherent concrete structures in a layer-by-layer fabrication fashion. During fabrication, layers must be bonded together to make a homogenous structure, as there is no vibration or external force during layer deposition. This research investigates the structural integrity of Contour Crafted structures using experimental approaches to analyze the bond strength between layers. Initially, a concrete mixture which the compressive and tensile strength is significantly improved through modifying the aggregate size and aggregate to cement ratio is developed. The mixture is compatible with an existing extrusion system and it is tested to quantify the strength at interface for different extrusion rate and layer thickness. The results show that an improvement of up to 16% at interface is achievable for different fabrication conditions.

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BibTeX
@article{zare_khos.2017.ILAaSoSiCC,
  author            = "Babak Zareiyan and Behrokh Khoshnevis",
  title             = "Inter-Layer Adhesion and Strength of Structures in Contour Crafting: Effects of Aggregate-Size, Extrusion-Rate, and Layer-Thickness",
  doi               = "10.1016/j.autcon.2017.06.013",
  year              = "2017",
  journal           = "Automation in Construction",
  volume            = "81",
  pages             = "112--121",
}
Formatted Citation

B. Zareiyan and B. Khoshnevis, “Inter-Layer Adhesion and Strength of Structures in Contour Crafting: Effects of Aggregate-Size, Extrusion-Rate, and Layer-Thickness”, Automation in Construction, vol. 81, pp. 112–121, 2017, doi: 10.1016/j.autcon.2017.06.013.

Zareiyan, Babak, and Behrokh Khoshnevis. “Inter-Layer Adhesion and Strength of Structures in Contour Crafting: Effects of Aggregate-Size, Extrusion-Rate, and Layer-Thickness”. Automation in Construction 81 (2017): 112–21. https://doi.org/10.1016/j.autcon.2017.06.013.