An Innovated Arduino-based Computer Numerical Control Plotter Machine: A Technology Model Diffusion
An Innovated Arduino-based Computer Numerical Control Plotter Machine: A Technology Model Diffusion |
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© 2025 by IJETT Journal | ||
Volume-73 Issue-9 |
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Year of Publication : 2025 | ||
Author : Marsan P. Dua | ||
DOI : 10.14445/22315381/IJETT-V73I9P106 |
How to Cite?
Marsan P. Dua,"An Innovated Arduino-based Computer Numerical Control Plotter Machine: A Technology Model Diffusion", International Journal of Engineering Trends and Technology, vol. 73, no. 9, pp.54-65, 2025. Crossref, https://doi.org/10.14445/22315381/IJETT-V73I9P106
Abstract
The study evaluated the effectiveness of an innovative Arduino-based Computer Numeric Control Plotter Machine for higher-level students, faculty, and industry experts, focusing on its design, function, ergonomics, safety, and cost and its acceptability, which centered on quality, reliability, durability, functionality, conformance, and aesthetics. This research adopted a quasi-experimental approach, specifically using survey research. To evaluate the innovation, questionnaires were distributed to 80 advanced students, 10 faculty members, and 10 industry professionals. The collected data were analyzed using total weighted points and the weighted mean. From the results, supported by thorough analysis and interpretation, it is concluded that the technology diffusion of the Arduino-based Computer Numerical Control Plotter Machine meets established standards and serves as an effective tool for both campus maintenance operations and technology education. It was found that the technology diffusion of an innovative Arduino-based Computer Numerical Control Plotter Machine was “highly acceptable” in terms of its quality, reliability, durability, functionality, conformance, and aesthetics. It is recommended that the technology diffusion of an innovative Arduino-based Computer Numeric Control Plotter Machine be diffused and practiced for higher-level students, faculty, and industry experts’ laboratories.
Keywords
Inkscape, Computer Numerical Control, Arduino UNO R3, 2D and 3D plot, Grbl controller.
References
[1] Murad BS. Alostaz et al., “Ergonomics in Spine Surgery: A Systematic Review,” Spine, vol. 49, no. 16, pp. E250-E261, 2024.
[CrossRef] [Google Scholar] [Publisher Link]
[2] Michael Benjamin Brown, “A Novel Accuracy Analysis Method of Dynamic CNC Machine Tool Motion by Parallel Integration of Nano-Precision Linear Scales,” University of California, 2017.
[Google Scholar]
[3] Donald T. Campbell, and Julian C. Stanley, Experimental and Quasi-Experimental Designs for Research, Ravenio Books, 2015.
[Google Scholar] [Publisher Link]
[4] Nupur Chauhan, and Yash Mathur, “Analysing the Impact of Ergonomic Elements on Stress Among Female Corporate Employees,” Fostering Industry-Academia Partnerships for Innovation-Driven Trade, pp. 123-130, 2024.
[CrossRef] [Google Scholar] [Publisher Link]
[5] Yangke Ding, Chao Shen, and Dingzhong Feng “Pricing and Collection for Printer Cartridge Recycling Under Retailers’ Ordering and Collection,” Journal of Cleaner Production, vol. 276, 2020.
[CrossRef] [Google Scholar] [Publisher Link]
[6]Vanessa Forti et al., The Global E-Waste Monitor 2020: Quantities, Flows and the Circular Economy Potential, United Nations Institute for Training and Research, 2020. [Online]. Available: https://ewastemonitor.info/gem-2020/
[7] Sahil Goyal, Sudhir Kumar Singh, and Haripada Bhunia, “Occupational Hazards and Safety in Secondary Steelmaking Industry: A Review,” Safety in Extreme Environments, vol. 6, no. 3, pp. 219-234, 2024.
[CrossRef] [Google Scholar] [Publisher Link]
[8] International Ergonomics Association, What is Ergonomics (HFE)?, 2014. [Online]. Available: https://iea.cc/about/what-is-ergonomics/
[9] Ehsan Naderi Kalali et al., “A Critical Review of the Current Progress of Plastic Waste Recycling Technology in Structural Materials,” Current Opinion in Green and Sustainable Chemistry, vol. 40, 2023.
[CrossRef] [Google Scholar] [Publisher Link]
[10] Aravind Kumar Kalusivalingam et al., “Enhancing Process Automation using Reinforcement Learning and Deep Neural Networks,” International Journal of AI and ML, vol. 1, no. 3, pp. 1-23, 2020.
[Google Scholar] [Publisher Link]
[11] Amit Kumar et al., “E-Waste: An Overview on Generation, Collection, Legislation and Recycling Practices,” Resources, Conservation and Recycling, vol. 122, pp. 32-42, 2017.
[CrossRef] [Google Scholar] [Publisher Link]
[12] Kang Liu et al., “A Global Perspective on E-Waste Recycling,” Circular Economy, vol. 2, no. 1, 2023.
[CrossRef] [Google Scholar] [Publisher Link]
[13] Zhongchuang Liu, Siu Hua Chang, and Gilles Mailhot, “Emerging Biochemical Conversion for Plastic Waste Management: A Review,” Molecules, vol. 30, no. 6, pp. 1-25, 2025.
[CrossRef] [Google Scholar] [Publisher Link]
[14] Anna Louise, More Than 4,000 Toxic Chemical Present in Plastic Were Hazardous to Human Health and Environment, Study Reveals, Nature World News, 2024. [Online]. Available: https://www.natureworldnews.com/articles/61022/20240319/more-4-000-toxic-chemical-present-plastic-hazardous-human-health.htm
[15] Mohsen Soori et al., “Sustainable CNC Machining Operations, A Review,” Sustainable Operations and Computers, vol. 5, pp. 73-87, 2024.
[CrossRef] [Google Scholar] [Publisher Link]
[16] New South Wales Environment Protection Authority, The Waste Hierarchy, 2017. [Online]. Available: https://www.epa.nsw.gov.au/Your-environment/Recycling-and-reuse/warr-strategy/The-waste-hierarchy
[17] Sara Raad Qasim, Haider Mohammad, and Mustafa Falah, “Accurate and Cost-Effective Mini CNC Plotter,” International Journal of Computer Applications, vol. 975, pp. 10-15, 2019.
[CrossRef] [Google Scholar] [Publisher Link]
[18] Shanti Quinto et al., “Exploring the E-Waste Crisis: Strategies for Sustainable Recycling and Circular Economy Integration,” Recycling, vol. 10, no. 2, pp. 1-27, 2025.
[CrossRef] [Google Scholar] [Publisher Link]
[19] Ankit et al., “Electronic Waste and Their Leachates Impact on Human Health and Environment: Global Ecological Threat and Management,” Environmental Technology & Innovation, vol. 24, 2021.
[CrossRef] [Google Scholar] [Publisher Link]
[20] Mohammad Mahdi Sarkhoshkalat et al., Circular Economy and the Recycling of E-Waste, New Technologies for Energy Transition Based on Sustainable Development Goals: Factors Contributing to Global Warming, pp. 319-354, 2024.
[CrossRef] [Google Scholar] [Publisher Link]
[21] Philipp Sauerbier, James Anderson, and Douglas J. Gardner, “Surface Preparation and Treatment for Large-Scale 3D-Printed Composite Tooling Coating Adhesion,” Coatings, vol. 8, no. 12, pp. 1-10, 2018.
[CrossRef] [Google Scholar] [Publisher Link]
[22] M. Ismail Shahib, Glen Cletus Dsouza, and R.P. Vijayakumar, “A Review on End-of-Life Waste Toner Powder: Recovery, Utilization and Upcycling,” Waste Management, vol. 204, 2025.
[CrossRef] [Google Scholar] [Publisher Link]
[23] III. Thompson Horace A, “Enhancing Workplace Safety and Health Response: Proactive and Reactive Practices,” Brief, vol. 41, no. 4, pp. 23-31, 2012.
[Google Scholar]
[24] Yingxuan Wang et al., “A Scoping Review of Implementation Science Theories, Models, and Frameworks-An Appraisal of Purpose, Characteristics, Usability, Applicability, and Testability,” Implementation Science, vol. 18, no. 1, pp. 1-15, 2023.
[CrossRef] [Google Scholar] [Publisher Link]
[25] Some Industrial Chemicals IARC Monographs on the Evaluation of Carcinogenic Risks to Humans, World Health Organization, Volume 115, 2018.
[Publisher Link]
[26] Jasmin Wüthrich, “Recycling of Cartridges in a Closed Loop Circular Economy,” Master Thesis, Hochschule für Wirtschaft FHNW, 2022.
[Google Scholar] [Publisher Link]