A Study on the Influence of FDM Parameters on the Tensile Behavior of Samples made of ASA
Received: 4 June 2024 | Revised: 18 June 2024 | Accepted: 27 June 2024 | Online: 4 July 2024
Corresponding author: Dragos Gabriel Zisopol
Abstract
This paper presents the results of the study on the influence of FDM printing parameters on the tensile behavior of samples made of ASA. To perform the study, 27 tensile samples were made of ASA on Anycubic 4 Max 2.0 3D printer using as the height of the single-pass layer Lh = 0.10/0.15/0.20 mm and as filling percentage Id = 50/75/100%. The results obtained from tensile testing of the samples on the universal testing machine demonstrate the way in which the FDM parameters influence the tensile strength, the percentage elongation at break, and the elastic modulus. The parameter that significantly influences the tensile characteristics of ASA samples made using FDM is the filling percentage (Id).
Keywords:
FDM parameters, ASA, tensile strength, modulus of elasticity, elongation percentageDownloads
References
A. S. Karad, P. D. Sonawwanay, M. Naik, and D. G. Thakur, "Experimental tensile strength analysis of ABS material through FDM technique," Materials Today: Proceedings, Sep. 2023.
S. Shashikumar and M. S. Sreekanth, "The effect of printing parameters on tensile properties of thermoplastics prepared by fused deposition modeling (FDM) based additive manufacturing technique," Materials Today: Proceedings, vol. 90, pp. 256–261, Jan. 2023.
D. G. Zisopol, M. Minescu, and D. V. Iacob, "A Study on the Influence of FDM Parameters on the Tensile Behavior of Samples made of PET-G," Engineering, Technology & Applied Science Research, vol. 14, no. 2, pp. 13487–13492, Apr. 2024.
C. Valean, L. Marsavina, M. Marghitas, E. Linul, N. Razavi, and F. Berto, "Effect of manufacturing parameters on tensile properties of FDM printed specimens," Procedia Structural Integrity, vol. 26, pp. 313–320, Jan. 2020.
S. Subramonian et al., "Artificial Neural Network Performance Modeling and Evaluation of Additive Manufacturing 3D Printed Parts," Engineering, Technology & Applied Science Research, vol. 13, no. 5, pp. 11677–11684, Oct. 2023.
D. Zisopol and A. Dumitrescu, Materiale si tehnologii primare. Aplicatii practice si studii de caz. Ploiesti, Romania: Universitatii Petrol - Gaze din Ploiesti, 2005.
D. G. Zisopol and A. Dumitrescu, Ecotehnologie: studii de caz. Ploiesti, Romania: Universitatii Petrol - Gaze din Ploiesti, 2020.
D. Zisopol, A. Dumitrescu, and C. N. Trifan, Ecotehnologie. Notiuni teoretice, aplicatii practice si studii de caz. Ploiesti, Romania: Universitatii Petrol - Gaze din Ploiesti, 2010.
D. G. Zisopol and M. J. Savulescu, Bazele tehnologiei. Ploiesti, Romania: Universitatii Petrol - Gaze din Ploiesti, 2003.
M. J. Savulescu and D. G. Zisopol, Tehnologii industriale si de constructii. Ploiesti, Romania: Universitatii Petrol - Gaze din Ploiesti, 2002.
D. G. Zisopol, Tehnologii industriale si de constructii. Aplicatii practice si studii de caz. Ploiesti, Romania: Universitatii Petrol - Gaze din Ploiesti, 2003.
M. J. Savulescu, D. G. Zisopol, and I. Nae, Bazele tehnologiei materialelor: Indrumar de lucrari practice. Ploiesti, Romania: Premier Ploiesti, 1997.
D. G. Zisopol, M. Minescu, and D. V. Iacob, "A Study on the Influence of FDM Parameters on the Compressive Behavior of PET-G Parts," Engineering, Technology & Applied Science Research, vol. 14, no. 2, pp. 13592–13597, Apr. 2024.
D. G. Zisopol, M. Minescu, and D. V. Iacob, "A Study on the Influence of aging of the Butt-welded PE100 SDR11 on Shore A Hardness and Tensile Strength," Engineering, Technology & Applied Science Research, vol. 14, no. 1, pp. 12722–12727, Feb. 2024.
D. G. Zisopol, M. Minescu, D. V. Iacob, and N. Voicu, "Study of the Tensile Strength and Shore Hardness Behavior of PE100 SDR11 Electrofusion Welded and Artificially aged Pipes," Engineering, Technology & Applied Science Research, vol. 14, no. 3, pp. 14566–14571, Jun. 2024.
D. G. Zisopol, I. Nae, A. I. Portoaca, and I. Ramadan, "A Theoretical and Experimental Research on the Influence of FDM Parameters on Tensile Strength and Hardness of Parts Made of Polylactic Acid," Engineering, Technology & Applied Science Research, vol. 11, no. 4, pp. 7458–7463, Aug. 2021.
D. G. Zisopol, M. Tănase, and A. I. Portoacă, "Innovative Strategies for Technical-Economical Optimization of FDM Production," Polymers, vol. 15, no. 18, Jan. 2023, Art. no. 3787.
D. V. Iacob, "Stadiul actual al cercetărilor în domeniul fabricației aditive," Ph.D. dissertation, Petroleum- Gas University, Ploiești, România, 2024.
ASTM D638-14(2014), Standard Test Method For Tensile Properties Of Plastics. West Conshohocken, PA, USA: ASTM International, 2014.
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Copyright (c) 2024 Dragos Gabriel Zisopol, Mihail Minescu, Dragos Valentin Iacob
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