Araştırma Makalesi

Effect of 3D printing speed on mechanical and thermal properties of wood-PLA composite filament

Cilt: 7 Sayı: 1 30 Haziran 2024
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Effect of 3D printing speed on mechanical and thermal properties of wood-PLA composite filament

Öz

This study was carried out to examine the effect of the change in printing speed on the material properties of printing wood flour-filled filaments on a 3D printer. First, hornbeam wood flour was added to the Polylactic acid (PLA) polymer and then mixed in a twin-screw extruder, and then a wood-PLA composite filament with a diameter of 1.75 mm was produced. Then, test samples were printed from the produced wood-PLA composite filament at different printing speeds (40-50-60 mm/s) using a 3D printer. Tensile strength and hardness tests were performed to determine the mechanical properties of the 3D printed samples. According to the tensile strength test results, the tensile strengths of the 3D printed samples exhibited different values with the change in printing speed. The highest tensile strength value was determined as 23.02 MPa at a printing speed of 50 mm/s, and the lowest tensile strength value was 22.14 MPa at a printing speed of 40 mm/s. According to the Shore D test results, the lowest hardness value was measured as 85.33 at a printing speed of 40 mm/s, and the highest value was measured as 86.1 at a printing speed of 60 mm/s. The crystallinity percentage of PLA first increased and then decreased with the increase in 3D printing speed according to the Differential Scanning Calorimetry (DSC) results. In addition, 3D printing speed did not have much effect on the melting temperatures of PLA.

Anahtar Kelimeler

Kaynakça

  1. Alkahari, M. R., Rosli, N. A., Majid, S. N. A., Maidin, S., Herawan, S. G., Ramli, F. R. (2021). Properties of 3D printed structure manufactured with integrated pressing mechanism in FDM. J. Mech. Eng. Res. Dev, 44(2), 122-131
  2. ASTM D2240 (2021), Standard test method for rubber property-durometer hardness, American Society for Testing and Materials, West Conshohocken, Pennsylvania, United States, 1–27 s.
  3. ASTM D638 (2022), Standard test method for tensile properties of plastics, ASTM International, West Conshohocken, PA, 1–24 s.
  4. Bal, B. C., (2023), Comparative study of some properties of wood plastic composite materials produced with polyethylene, wood flour and glass flour, Furniture and Wooden Material Research Journal, 6(1), 70-79, DOI: 10.33725/mamad.1301384
  5. Bal, B. C., Altuntaş E., Narlıoğlu N., (2023), Some selected properties of composite material produced from plastic furniture waste and wood flour, Furniture and Wooden Material Research Journal, 6 (2), 233-244, DOI: 10.33725/mamad.1384214
  6. Blok, L. G., Longana, M. L., Yu, H., Woods, B. K. (2018). An investigation into 3D printing of fibre reinforced thermoplastic composites. Additive Manufacturing, 22, 176-186, DOI: 10.1016/j.addma.2018.04.039 Chung, H. J., Lee, E. J., Lim, S. T. (2002). Comparison in glass transition and enthalpy relaxation between native and gelatinized rice starches. Carbohydrate Polymers, 48(3), 287-298, DOI: 10.1016/S0144-8617(01)00259-4
  7. Fodor, F., Németh, R., Lankveld, C., Hofmann, T. (2018). Effect of acetylation on the chemical composition of hornbeam (Carpinus betulus L.) in relation with the physical and mechanical properties. Wood Material Science & Engineering, 13(5), 271-278, DOI: 10.1080/17480272.2017.1316773
  8. Forrest, J. A., Veress, K. D (2001). The glass transition in thin polymer films. Advances in Colloid and Interface Science, 94(1-3), 167-195, DOI: 10.1016/S0001-8686(01)00060-4

Ayrıntılar

Birincil Dil

İngilizce

Konular

Kompozit ve Hibrit Malzemeler, Orman Endüstri Mühendisliği (Diğer)

Bölüm

Araştırma Makalesi

Yayımlanma Tarihi

30 Haziran 2024

Gönderilme Tarihi

19 Mayıs 2024

Kabul Tarihi

13 Haziran 2024

Yayımlandığı Sayı

Yıl 2024 Cilt: 7 Sayı: 1

Kaynak Göster

APA
Narlıoğlu, N. (2024). Effect of 3D printing speed on mechanical and thermal properties of wood-PLA composite filament. Mobilya ve Ahşap Malzeme Araştırmaları Dergisi, 7(1), 97-106. https://doi.org/10.33725/mamad.1486558
AMA
1.Narlıoğlu N. Effect of 3D printing speed on mechanical and thermal properties of wood-PLA composite filament. MAMAD. 2024;7(1):97-106. doi:10.33725/mamad.1486558
Chicago
Narlıoğlu, Nasır. 2024. “Effect of 3D printing speed on mechanical and thermal properties of wood-PLA composite filament”. Mobilya ve Ahşap Malzeme Araştırmaları Dergisi 7 (1): 97-106. https://doi.org/10.33725/mamad.1486558.
EndNote
Narlıoğlu N (01 Haziran 2024) Effect of 3D printing speed on mechanical and thermal properties of wood-PLA composite filament. Mobilya ve Ahşap Malzeme Araştırmaları Dergisi 7 1 97–106.
IEEE
[1]N. Narlıoğlu, “Effect of 3D printing speed on mechanical and thermal properties of wood-PLA composite filament”, MAMAD, c. 7, sy 1, ss. 97–106, Haz. 2024, doi: 10.33725/mamad.1486558.
ISNAD
Narlıoğlu, Nasır. “Effect of 3D printing speed on mechanical and thermal properties of wood-PLA composite filament”. Mobilya ve Ahşap Malzeme Araştırmaları Dergisi 7/1 (01 Haziran 2024): 97-106. https://doi.org/10.33725/mamad.1486558.
JAMA
1.Narlıoğlu N. Effect of 3D printing speed on mechanical and thermal properties of wood-PLA composite filament. MAMAD. 2024;7:97–106.
MLA
Narlıoğlu, Nasır. “Effect of 3D printing speed on mechanical and thermal properties of wood-PLA composite filament”. Mobilya ve Ahşap Malzeme Araştırmaları Dergisi, c. 7, sy 1, Haziran 2024, ss. 97-106, doi:10.33725/mamad.1486558.
Vancouver
1.Nasır Narlıoğlu. Effect of 3D printing speed on mechanical and thermal properties of wood-PLA composite filament. MAMAD. 01 Haziran 2024;7(1):97-106. doi:10.33725/mamad.1486558

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