Yıl 2025,
Sayı: UTIS 2024, 66 - 76, 03.10.2025
Kemal Ayan
,
Nail Aslan
,
Fırat Mavi
,
Sırrı Can Polat
,
Cansu Apaydın
Nurşen Saklakoğlu
Kaynakça
-
1. Shogren, R. L., Doane, W. M., Garlotta, D., Lawton, J. W., & Willett, J. L. (2003). "Biodegradation of starch/polylactic acid/poly(hydroxyester-ether) composite bars in soil." Polymer Degradation and Stability, 79(3), 405-411
-
2. Bajpai, P. K., Singh, I., & Madaan, J. (2012). "Tribological behavior of natural fiber reinforced PLA composites." Wear, 296(1-2), 395-398
-
3. Garlotta, D. (2001). "A Literature Review of Poly(Lactic Acid)." Journal of Polymers and the Environment, 9(2), 63-84. DOI: 10.1023/A:1020200822435.
-
4. A. Doğru, A. Sözen, M. Ö. Seydibeyoğlu, and G. Neşer, “Hemp Reinforced Polylactic Acid (PLA) Composite Produced By Fused Filament Fabrication (FFF)”, HJBC, vol. 50, no. 3, pp. 239–246, 2022, doi: 10.15671/hjbc.1032298.
-
5. A. Sözen, A. Doğru, M. Demir, H. N. Özdemir, and Y. Seki, “PRODUCTION OF WASTE JUTE DOPED PLA (POLYLACTIC ACID) FILAMENT FOR FFF: EFFECT OF PULVERIZATION”, IJ3DPTDI, vol. 7, no. 1, pp. 124–128, 2023, doi: 10.46519/ij3dptdi.1213659.
-
6. A. Doğru, S. Yılancıoğlu, G. Ülkü, B. Şentürk Turan, and M. Ö. Seydibeyoğlu, “Comparison of wood fiber reinforced PLA matrix bio-composites produced by Injection Molding and Fused Filament Fabrication (FFF) methods”, HJBC, vol. 50, no. 3, pp. 215–226, 2022, doi: 10.15671/hjbc.1053764.
-
7. Mohammad Baraheni, Mohammad Reza Shabgard, Saeid Amini, Evaluating the hole quality produced by vibratory drilling: additive manufactured PLA+, The International Journal of Advanced Manufacturing Technology (2021) 117:785–794
-
8. N.S. Mohan et al. Delamination analysis in drilling process of glass fiber reinforced plastic (GFRP) composite materials, Journal of Materials Processing Technology 186 (2007) 265–271
-
9. Hossein Heidarya, Navid Zarif Karimib , Giangiacomo Minak, Investigation on delamination and flexural properties in drilling of carbon nanotube/polymer composites, Composite Structures 201 (2018) 112–120
-
10. Madhan Kumar and K. Jayakumar, Mechanical and drilling characterization of biodegradable PLA particulate green composites, JOURNAL OF THE CHINESE INSTITUTE OF ENGINEERS, 2022, VOL. 45, NO. 5, 437–452, https://doi.org/10.1080/02533839.2022.2061602
-
11. Antonio Dı´az-A ´ lvarez, A ´ngel Rubio-Lo´pez, Carlos Santiuste and Marı´a Henar Migue´lez, Experimental analysis of drilling induced damage in biocomposites, TextileResearchJournal88(22)
-
12. Leonardo Riva, Roberto Pagani, Antonio Fiorentino, Alberto Borboni, Additive manufacturing of PLA to mimic the thrust force of mandibular bone during drilling, Procedia CIRP 110 (2022) 198–201
-
13. Masannan, V.; Anbalagan, C.; Lakshmaiya, N.; Kumar, P. Experimental Investigation on the Drilling Characteristics of Kenaf/PLA-Based Laminates. Eng. Proc. 2024, 61, 9. https://doi.org/ 10.3390/engproc2024061009
-
14. F. Carrasco, P. Pagès, J. Gámez-Pérez, O.O. Santana, M.L. Maspoch, Processing of poly(lactic acid): Characterization of chemical structure, thermal stability and mechanical properties. Polymer Degradation and Stability 95 (2010) 116e125.
-
15. Racha Al-Itry, Khalid Lamnawar, Abderrahim Maazouz, Improvement of thermal stability, rheological and mechanical properties of PLA, PBAT and their blends by reactive extrusion with functionalized epoxy. Polymer Degradation and Stability Volume 97, Issue 10, October 2012, Pages 1898-1914
-
16. Bajpai, P. K., Singh, I., & Madaan, J. "Tribological behavior of natural fiber reinforced PLA composites." Wear Volume 297, Issues 1–2, 15 January 2013, Pages 829-840]
-
17. El Mehtedi, M., Cristofolini, L., La Vecchia, G. M., & Minetola, P. (2024). Evaluation of surface quality and burr formation in hybrid manufacturing of polymeric components. Journal of Composites Science, 8(4), 131. https://www.mdpi.com/2504-4494/8/4/131
-
18. Hsueh, M.-H.; Lai, C.-J.; Chung, C.-F.; Wang, S.-H.; Huang, W.-C.; Pan, C.-Y.; Zeng, Y.-S.; Hsieh, C.-H. Effect of Printing Parameters on the Tensile Properties of 3D-Printed Polylactic Acid (PLA) Based on Fused Deposition Modeling. Polymers 2021, 13, 2387. https://doi.org/10.3390/ polym13142387.].
-
19. Muammel M. Hanon, László Zsidai, Quanjin Ma, Accuracy investigation of 3D printed PLA with various process parameters and different colors, Materials Today: Proceedings, Volume 42, Part 5, 2021, Pages 3089-3096
-
20. Krishnamoorthy A, Boopathy S, Rajendra, Palanikumar K (2009) Delamination analysis in drilling of CFRP composites using response surface methodology. J Compos Mater 43(24):2885–2902
-
21. Davim PJ, Rubio CJ, Abrao AM (2007) A novel approach based on digital image analysis to evaluate the delamination factor after drilling composite laminates. Compos Sci Technol 67(9):1939–1945
-
22. Shokrieh M, Kamali M (2005) Theoretical and experimental studies on residual stresses in laminated polymer composites. J Compos Mater 39(24):2213–2225
-
23. Shtuchnyi BP (1974) Plastics machining. Reference manual. Mashynostroyeniye, Moscow, p 144
EYM ile Üretilen PLA Parçaların Talaşlı İmalatla Delinmesinde Katman Kalınlığının ve Delme Parametrelerinin Delik Kalitesine Etkisi
Yıl 2025,
Sayı: UTIS 2024, 66 - 76, 03.10.2025
Kemal Ayan
,
Nail Aslan
,
Fırat Mavi
,
Sırrı Can Polat
,
Cansu Apaydın
Nurşen Saklakoğlu
Öz
Biyobozunur ve işlenebilir yapısı nedeniyle PLA, EYM yönteminde sıkça tercih edilir. Ancak elde edilen parçaların yüzey kalitesi ve geometrik doğruluğu, çoğunlukla son işlem adımlarını zorunlu kılar. Bu çalışmada, katman kalınlığı ile kesme ve ilerleme hızlarının, delik çapı, silindiriklik, delaminasyon ve yüzey pürüzlülüğü üzerindeki etkileri değerlendirilmiştir. Bulgular, kesme hızının delik doğruluğu, ilerleme hızının silindiriklik ve her iki parametrenin delaminasyon üzerinde etkili olduğunu göstermiştir. Yüzey kalitesi ile boyutsal tutarlılığın dengelenmesi adına düşük katman kalınlığı, yüksek kesme ve orta düzeyde ilerleme hızı önerilmektedir.
Kaynakça
-
1. Shogren, R. L., Doane, W. M., Garlotta, D., Lawton, J. W., & Willett, J. L. (2003). "Biodegradation of starch/polylactic acid/poly(hydroxyester-ether) composite bars in soil." Polymer Degradation and Stability, 79(3), 405-411
-
2. Bajpai, P. K., Singh, I., & Madaan, J. (2012). "Tribological behavior of natural fiber reinforced PLA composites." Wear, 296(1-2), 395-398
-
3. Garlotta, D. (2001). "A Literature Review of Poly(Lactic Acid)." Journal of Polymers and the Environment, 9(2), 63-84. DOI: 10.1023/A:1020200822435.
-
4. A. Doğru, A. Sözen, M. Ö. Seydibeyoğlu, and G. Neşer, “Hemp Reinforced Polylactic Acid (PLA) Composite Produced By Fused Filament Fabrication (FFF)”, HJBC, vol. 50, no. 3, pp. 239–246, 2022, doi: 10.15671/hjbc.1032298.
-
5. A. Sözen, A. Doğru, M. Demir, H. N. Özdemir, and Y. Seki, “PRODUCTION OF WASTE JUTE DOPED PLA (POLYLACTIC ACID) FILAMENT FOR FFF: EFFECT OF PULVERIZATION”, IJ3DPTDI, vol. 7, no. 1, pp. 124–128, 2023, doi: 10.46519/ij3dptdi.1213659.
-
6. A. Doğru, S. Yılancıoğlu, G. Ülkü, B. Şentürk Turan, and M. Ö. Seydibeyoğlu, “Comparison of wood fiber reinforced PLA matrix bio-composites produced by Injection Molding and Fused Filament Fabrication (FFF) methods”, HJBC, vol. 50, no. 3, pp. 215–226, 2022, doi: 10.15671/hjbc.1053764.
-
7. Mohammad Baraheni, Mohammad Reza Shabgard, Saeid Amini, Evaluating the hole quality produced by vibratory drilling: additive manufactured PLA+, The International Journal of Advanced Manufacturing Technology (2021) 117:785–794
-
8. N.S. Mohan et al. Delamination analysis in drilling process of glass fiber reinforced plastic (GFRP) composite materials, Journal of Materials Processing Technology 186 (2007) 265–271
-
9. Hossein Heidarya, Navid Zarif Karimib , Giangiacomo Minak, Investigation on delamination and flexural properties in drilling of carbon nanotube/polymer composites, Composite Structures 201 (2018) 112–120
-
10. Madhan Kumar and K. Jayakumar, Mechanical and drilling characterization of biodegradable PLA particulate green composites, JOURNAL OF THE CHINESE INSTITUTE OF ENGINEERS, 2022, VOL. 45, NO. 5, 437–452, https://doi.org/10.1080/02533839.2022.2061602
-
11. Antonio Dı´az-A ´ lvarez, A ´ngel Rubio-Lo´pez, Carlos Santiuste and Marı´a Henar Migue´lez, Experimental analysis of drilling induced damage in biocomposites, TextileResearchJournal88(22)
-
12. Leonardo Riva, Roberto Pagani, Antonio Fiorentino, Alberto Borboni, Additive manufacturing of PLA to mimic the thrust force of mandibular bone during drilling, Procedia CIRP 110 (2022) 198–201
-
13. Masannan, V.; Anbalagan, C.; Lakshmaiya, N.; Kumar, P. Experimental Investigation on the Drilling Characteristics of Kenaf/PLA-Based Laminates. Eng. Proc. 2024, 61, 9. https://doi.org/ 10.3390/engproc2024061009
-
14. F. Carrasco, P. Pagès, J. Gámez-Pérez, O.O. Santana, M.L. Maspoch, Processing of poly(lactic acid): Characterization of chemical structure, thermal stability and mechanical properties. Polymer Degradation and Stability 95 (2010) 116e125.
-
15. Racha Al-Itry, Khalid Lamnawar, Abderrahim Maazouz, Improvement of thermal stability, rheological and mechanical properties of PLA, PBAT and their blends by reactive extrusion with functionalized epoxy. Polymer Degradation and Stability Volume 97, Issue 10, October 2012, Pages 1898-1914
-
16. Bajpai, P. K., Singh, I., & Madaan, J. "Tribological behavior of natural fiber reinforced PLA composites." Wear Volume 297, Issues 1–2, 15 January 2013, Pages 829-840]
-
17. El Mehtedi, M., Cristofolini, L., La Vecchia, G. M., & Minetola, P. (2024). Evaluation of surface quality and burr formation in hybrid manufacturing of polymeric components. Journal of Composites Science, 8(4), 131. https://www.mdpi.com/2504-4494/8/4/131
-
18. Hsueh, M.-H.; Lai, C.-J.; Chung, C.-F.; Wang, S.-H.; Huang, W.-C.; Pan, C.-Y.; Zeng, Y.-S.; Hsieh, C.-H. Effect of Printing Parameters on the Tensile Properties of 3D-Printed Polylactic Acid (PLA) Based on Fused Deposition Modeling. Polymers 2021, 13, 2387. https://doi.org/10.3390/ polym13142387.].
-
19. Muammel M. Hanon, László Zsidai, Quanjin Ma, Accuracy investigation of 3D printed PLA with various process parameters and different colors, Materials Today: Proceedings, Volume 42, Part 5, 2021, Pages 3089-3096
-
20. Krishnamoorthy A, Boopathy S, Rajendra, Palanikumar K (2009) Delamination analysis in drilling of CFRP composites using response surface methodology. J Compos Mater 43(24):2885–2902
-
21. Davim PJ, Rubio CJ, Abrao AM (2007) A novel approach based on digital image analysis to evaluate the delamination factor after drilling composite laminates. Compos Sci Technol 67(9):1939–1945
-
22. Shokrieh M, Kamali M (2005) Theoretical and experimental studies on residual stresses in laminated polymer composites. J Compos Mater 39(24):2213–2225
-
23. Shtuchnyi BP (1974) Plastics machining. Reference manual. Mashynostroyeniye, Moscow, p 144