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Article detail · 2024

The impact of nozzle diameter and printing speed on geopolymer-based 3D-Printed concrete structures: Numerical modeling and experimental validation

Journal

Results in Engineering

ISSN 2590-1230

YÖKSİS OpenAlex Open access · gold SJR Q1 JCR Q1 Citations 53 Top 10% Percentile 98.9% FWCI 8.78
Year
2024
Type
article

Data source split

  • YÖKSİS YÖKSİS article record
  • YÖKSİS venue Results in Engineering
  • Catalog match (ISSN) Results in Engineering
  • OpenAlex OpenAlex enrichment (abstract, citations, topics)

Abstract

OpenAlex · English

3D Concrete Printing (3DCP) is a promising technology with significant advantages for the construction industry, encompassing reduced labor costs, diminished carbon dioxide emissions, enhanced time efficiency, improved user convenience, and design flexibility. To ensure optimal structural outcomes and resource efficiency, integrating numerical modeling and simulation is imperative for predicting structural behavior and identifying potential premature failures in 3DCP. Despite the recognized importance of this integration, the impact of different printing parameters on numerical models, particularly with variations in printing speed and printing layer, remains an unexplored area. This research delves into the influence of crucial printing parameters, specifically printing speed and nozzle diameter, on the buildability of 3D-printed structures within the built environment. A comprehensive experimental analysis is conducted on geopolymer-based 3D-printed structures, encompassing diverse process parameters associated with 3D printing (3DP) technology. A numerical model is deployed to predict the buildability of these structures, and its results are compared with experimental findings, assessing the efficacy of numerical modeling under varying printing parameter conditions. Rigorous characterization of input material properties is undertaken to ensure the accuracy of numerical simulations. Experimental results showcase favorable processability and buildability of geopolymer materials derived from novel Construction and Demolition Waste (CDW). Findings indicate that an increased nozzle size, reflected in greater layer height and width, positively influences buildability, whereas higher printing speeds correlate with reduced buildability. The numerical model successfully captures these buildability trends, though with an error ranging from 32 % to 45 % in predicting failure in 3D-printed structures. Nevertheless, the overall performance of the numerical model remains reliable in predicting the influence of printing parameters on buildability.

Topics

Citations

OpenAlex cited_by_count. Not a WoS or Scopus citation count; those sources have no separate column here.

53 citations

OpenAlex cited_by_count (cache / database)

16 publications in the local catalog that cite this work (OpenAlex reference match; not the full global list).

  1. Applicability of 3D concrete printing technology in building construction with different architectural design decisions in housing 2024 Citations 22 · OpenAlex
  2. Applicability of 3D concrete printing technology in building construction with different architectural design decisions in housing 2024 Citations 22 · OpenAlex
  3. Applicability of 3D concrete printing technology in building construction with different architectural design decisions in housing 2024 Citations 22 · OpenAlex
  4. Recent advances in CDW-based geopolymers: A review of mechanical performance, structural application, 3D printing, durability and sustainability 2025 Citations 8 · OpenAlex
  5. The effectiveness of 3D concrete printing technology in architectural design: different corner-wall combinations in 3D printed elements and geometric form configurations in residential buildings 2026 Citations 7 · OpenAlex
  6. The effectiveness of 3D concrete printing technology in architectural design: different corner-wall combinations in 3D printed elements and geometric form configurations in residential buildings 2026 Citations 7 · OpenAlex
  7. The effectiveness of 3D concrete printing technology in architectural design: different corner-wall combinations in 3D printed elements and geometric form configurations in residential buildings 2025 Citations 7 · OpenAlex
  8. The effectiveness of 3D concrete printing technology in architectural design: different corner-wall combinations in 3D printed elements and geometric form configurations in residential buildings 2025 Citations 7 · OpenAlex
  9. The effectiveness of 3D concrete printing technology in architectural design: different corner-wall combinations in 3D printed elements and geometric form configurations in residential buildings 2025 Citations 7 · OpenAlex
  10. Reinforcement and modular system for 3DCP geopolymer structures using construction and demolition waste 2025 Citations 6 · OpenAlex

Authors

  1. Shoukat Alim Khan
  2. HÜSEYİN İLCAN HACETTEPE ÜNİVERSİTESİ
  3. Ramsha Imran
  4. ehsan aminipour
  5. OĞUZHAN ŞAHİN
  6. Al rashid Ans
  7. MUSTAFA ŞAHMARAN
  8. MUAMMER KOÇ