Mathematical Morphology-Based Point-Cloud-Analysis-Techniques for Geometry-Assessment of 3D Printed Concrete Elements (2021-11)¶
, ,
Journal Article - Additive Manufacturing, Vol. 49
Abstract
In 3D printing of cement-based materials, it is imperative to ensure geometrical consistency of the print with the as-designed/modeled system. Time-dependent, deformable systems like concrete present multiple challenges in ensuring appropriate post-print quality. This paper presents a suite of point cloud comparison techniques, which can be used individually or in combination, to quantify the amount of mismatch between the as-designed and as-printed systems, using morphological analysis. A semi-quantitative error distance method is proposed, which can be easily accomplished using direct mapping of the actual and reference point clouds. A print accuracy index (PAI) based on centroidal distances is proposed as a global quantifier of the print quality. Furthermore, a topological set theory (TST)-based approach is used to determine layer-wise overlap, which helps in isolating localized inconsistencies. The methods are tested on a variety of small cuboids, and further verified using a larger mortar print. It is expected that these methodologies can be suitably adapted to indicate the efficiency of the print, after the fact, or during printing. The latter facilitates in-line quality checks, that can in turn lead to real-time alterations in the materials or processes.
¶
28 References
- Afarani Hajar, Carroll William, Garboczi Edward, Biernacki Joseph (2020-11)
Designing 3D Printable Cementitious Materials with Gel-Forming Polymers - Alghamdi Hussam, Nair Sooraj, Neithalath Narayanan (2019-02)
Insights into Material-Design, Extrusion Rheology, and Properties of 3D Printable Alkali-Activated Fly-Ash-Based Binders - Buswell Richard, Silva Wilson, Jones Scott, Dirrenberger Justin (2018-06)
3D Printing Using Concrete-Extrusion:
A Roadmap for Research - Hager Izabela, Golonka Anna, Putanowicz Roman (2016-08)
3D Printing of Buildings and Building Components as the Future of Sustainable Construction? - Kazemian Ali, Yuan Xiao, Davtalab Omid, Khoshnevis Behrokh (2019-01)
Computer-Vision for Real-Time Extrusion-Quality-Monitoring and Control in Robotic Construction - Keita Emmanuel, Bessaies-Bey Hela, Zuo Wenqiang, Belin Patrick et al. (2019-06)
Weak Bond Strength Between Successive Layers in Extrusion-Based Additive Manufacturing:
Measurement and Physical Origin - Ketel Sabrina, Falzone Gabriel, Wang Bu, Washburn Newell et al. (2018-04)
A Printability Index for Linking Slurry Rheology to the Geometrical Attributes of 3D Printed Components - Khoshnevis Behrokh (2003-11)
Automated Construction by Contour Crafting:
Related Robotics and Information Technologies - Khoshnevis Behrokh, Hwang Dooil, Yao Ke, Yeh Zhenghao (2006-05)
Mega-Scale Fabrication by Contour Crafting - Lao Wenxin, Li Mingyang, Wong Teck, Tan Ming et al. (2020-02)
Improving Surface-Finish-Quality in Extrusion-Based 3D Concrete Printing Using Machine-Learning-Based Extrudate-Geometry-Control - Lim Sungwoo, Buswell Richard, Valentine Philip, Piker Daniel et al. (2016-06)
Modelling Curved-Layered Printing Paths for Fabricating Large-Scale Construction Components - Long Wujian, Lin Can, Tao Jie-Lin, Ye Taohua et al. (2021-02)
Printability and Particle-Packing of 3D Printable Limestone-Calcined-Clay-Cement Composites - Ma Guowei, Li Zhijian, Wang Li (2017-12)
Printable Properties of Cementitious Material Containing Copper-Tailings for Extrusion-Based 3D Printing - Ma Guowei, Li Yanfeng, Wang Li, Zhang Junfei et al. (2020-01)
Real-Time Quantification of Fresh and Hardened Mechanical Property for 3D Printing Material by Intellectualization with Piezoelectric Transducers - Nair Sooraj, Alghamdi Hussam, Arora Aashay, Mehdipour Iman et al. (2019-01)
Linking Fresh Paste Microstructure, Rheology and Extrusion-Characteristics of Cementitious Binders for 3D Printing - Nair Sooraj, Neithalath Narayanan (2021-11)
Flow Characterization of Three-Dimensional Printable Cementitious Pastes During Extrusion Using Capillary-Rheometry - Nair Sooraj, Panda Subhashree, Santhanam Manu, Sant Gaurav et al. (2020-05)
A Critical Examination of the Influence of Material-Characteristics and Extruder-Geometry on 3D Printing of Cementitious Binders - Nair Sooraj, Tripathi Avinaya, Neithalath Narayanan (2021-09)
Examining Layer-Height Effects on the Flexural and Fracture Response of Plain and Fiber-Reinforced 3D Printed Beams - Nerella Venkatesh, Näther Mathias, Iqbal Arsalan, Butler Marko et al. (2018-09)
In-Line Quantification of Extrudability of Cementitious Materials for Digital Construction - Panda Biranchi, Paul Suvash, Tan Ming (2017-07)
Anisotropic Mechanical Performance of 3D Printed Fiber-Reinforced Sustainable Construction-Material - Panda Biranchi, Unluer Cise, Tan Ming (2018-10)
Investigation of the Rheology and Strength of Geopolymer Mixtures for Extrusion-Based 3D Printing - Rahul Attupurathu, Santhanam Manu (2020-02)
Evaluating the Printability of Concretes Containing Lightweight Coarse Aggregates - Tay Yi, Li Mingyang, Tan Ming (2019-04)
Effect of Printing Parameters in 3D Concrete Printing:
Printing Region and Support Structures - Wi Kwangwoo, Suresh Vignesh, Wang Kejin, Li Beiwen et al. (2019-12)
Quantifying Quality of 3D Printed Clay Objects Using a 3D Structured Light Scanning System - Wolfs Robert, Bos Freek, Salet Theo (2019-03)
Hardened Properties of 3D Printed Concrete:
The Influence of Process Parameters on Inter-Layer Adhesion - Xu Jie, Buswell Richard, Kinnell Peter, Biro Istvan et al. (2020-06)
Inspecting Manufacturing Precision of 3D Printed Concrete Parts Based on Geometric Dimensioning and Tolerancing - Xu Jie, Ding Lieyun, Love Peter (2017-01)
Digital Reproduction of Historical Building Ornamental Components:
From 3D Scanning to 3D Printing - Yuan Qiang, Li Zemin, Zhou Dajun, Huang Tingjie et al. (2019-08)
A Feasible Method for Measuring the Buildability of Fresh 3D Printing Mortar
24 Citations
- Ding Yao, Liu Yifan, Yang Bo, Liu Jiepeng et al. (2026-01)
Application of Artificial Intelligence Technology in 3D Concrete Printing Quality Inspection and Control:
A State-of-the-Art Review - Haripan Vislavath, Senthilnathan Shanmugaraj, Santhanam Manu, Raphael Benny (2025-10)
Printability Assessment of Concrete 3D Printed Elements with Recycled Fine Aggregate - Kim Yoon-Chul, Han Tong-Seok (2025-10)
Buildability Analysis in 3D Concrete Printing Using Computer Vision and Automated Annotation - Mawas Karam, Maboudi Mehdi, Gerke Markus (2025-09)
A Review on Geometry and Surface Inspection in 3D Concrete Printing - Peralta Patricia, Al-Zuriqat Thamer, Noufal Mahmoud, Smarsly Kay (2025-07)
Automated Defect Detection in Clay Printing - Versteege Jelle, Wolfs Robert, Salet Theo (2025-06)
Data-Driven Additive Manufacturing with Concrete - Enhancing In-Line Sensory Data with Domain Knowledge:
Part II: Moisture and Heat - Versteege Jelle, Wolfs Robert, Salet Theo (2025-02)
Data-Driven Additive Manufacturing with Concrete - Enhancing In-Line Sensory Data with Domain Knowledge:
Part I: Geometry - Senthilnathan Shanmugaraj, Raphael Benny (2025-02)
Predicting Buildability Using the Surface Texture of 3D Printed Concrete Elements - Zhao Hongyu, Sun Junbo, Wang Xiangyu, Wang Yufei et al. (2024-12)
Real-Time and High-Accuracy Defect Monitoring for 3D Concrete Printing Using Transformer Networks - Wang Li, Lin Wenyu, Wan Qian, Li Zhijian et al. (2024-11)
Manufacturing Accuracy Improvement of Concrete Product by Hybrid Additive-Subtractive Method Based on the Time-Dependent Characteristics of Cementitious Materials - An Ning, Wang Huai, Le Liu, Li Shuo et al. (2024-10)
Real-Time Monitoring of Extrudability and Buildability in 3D Concrete Printing Based on Target Detection Method - Martin Michael, Banijamali Kasra, Gilbert Hunter, Mascarenas David et al. (2024-09)
LiDAR-Based Real-Time Geometrical Inspection for Large-Scale Additive Manufacturing - Prihar Arjun, Gupta Shashank, Esmaeeli Hadi, Moini Mohamadreza (2024-08)
Tough Double-Bouligand Architected Concrete Enabled by Robotic Additive Manufacturing - Wolfs Robert, Bos Derk, Caron Jean-François, Gerke Markus et al. (2024-08)
On-Line and In-Line Quality-Assessment Across All Scale Levels of 3D Concrete Printing - Farrokhsiar Paniz, Gürsoy Benay, Duarte José (2024-08)
A Comprehensive Review on Integrating Vision-Based Sensing in Extrusion-Based 3D Printing Processes:
Toward Geometric Monitoring of Extrusion-Based 3D Concrete Printing - Zhao Hongyu, Wang Xiangyu, Sun Junbo, Wang Yufei et al. (2024-04)
Artificial Intelligence Powered Real-Time Quality Monitoring for Additive Manufacturing in Construction - Zhang Hanghua, Tan Yanke, Hao Lucen, Zheng Shipeng et al. (2024-02)
Intelligent Real-Time Quality-Control for 3D Printed Concrete with Near-Nozzle Secondary-Mixing - Sedghi Reza, Rashidi Kourosh, Hojati Maryam (2024-01)
Large-Scale 3D Wall Printing:
From Concept to Reality - Martin Michael, Banijamali Kasra, Kazemian Ali (2023-06)
Reality-Capture Technologies for Automated Quality-Control During Construction 3D Printing - Zhang Daobo, Feng Peng, Zhou Peizhao, Xu Weiguo et al. (2023-06)
3D Printed Concrete Walls Reinforced with Flexible FRP Textile:
Automatic Construction, Digital Rebuilding, and Seismic Performance - Quah Tan, Tay Yi, Lim Jian, Tan Ming et al. (2023-03)
Concrete 3D Printing:
Process-Parameters for Process-Control, Monitoring and Diagnosis in Automation and Construction - Bai Gang, Wang Li, Wang Fang, Ma Guowei (2022-12)
Assessing Printing Synergism in a Dual 3D Printing System for Ultra-High-Performance Concrete In-Process Reinforced Cementitious Composite - Yang Rijiao, Zhu Yi, Lan Yan, Zeng Qiang et al. (2022-10)
Differences in Micro Grain & Fiber-Distributions Between Matrix and Inter-Layer of Cementitious Filaments Affected by Extrusion-Molding - García Rodrigo, Dokladalova Eva, Dokládal Petr, Caron Jean-François et al. (2022-09)
In-Line Monitoring of 3D Concrete Printing Using Computer-Vision
BibTeX
@article{nair_sant_neit.2022.MMBPCATfGAo3PCE,
author = "Sooraj Kumar A. O. Nair and Gaurav Sant and Narayanan Neithalath",
title = "Mathematical Morphology-Based Point-Cloud-Analysis-Techniques for Geometry-Assessment of 3D Printed Concrete Elements",
doi = "10.1016/j.addma.2021.102499",
year = "2022",
journal = "Additive Manufacturing",
volume = "49",
}
Formatted Citation
S. K. A. O. Nair, G. Sant and N. Neithalath, “Mathematical Morphology-Based Point-Cloud-Analysis-Techniques for Geometry-Assessment of 3D Printed Concrete Elements”, Additive Manufacturing, vol. 49, 2022, doi: 10.1016/j.addma.2021.102499.
Nair, Sooraj Kumar A. O., Gaurav Sant, and Narayanan Neithalath. “Mathematical Morphology-Based Point-Cloud-Analysis-Techniques for Geometry-Assessment of 3D Printed Concrete Elements”. Additive Manufacturing 49 (2022). https://doi.org/10.1016/j.addma.2021.102499.