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Optimization Of Fused Deposition Modeling Process Parameters For Building Time

Yıl 2018, Cilt: 2 Sayı: 1, 97 - 104, 13.03.2018

Öz

Fused Deposition Modeling (FDM) is a technology that
continues to evolve as one of the fastest growing layer manufacturing
technologies because of its ability to create functional plastic parts with
geometric complexity over a reasonable period. FDM is a rapid prototyping
technique that is produced by laying layers of semi-molten thermoplastic
polymer on a plate to form objects directly from the designed CAD data. The
purpose of this study was to investigate the effect of process parameters such
as filler type (grid, triangle and honeycomb), layer thickness (μm), and fill
density (10%, 20% and 30%) on construction time.

Kaynakça

  • 1. Ahn, Sung-Hoon, Michael Montero, Dan Odell, Shad Roundy, and Paul K. Wright. "Anisotropic material properties of fused deposition modeling ABS." Rapid prototyping journal 8, no. 4 (2002): 248-257.2. Thrimurthulu, K. P. P. M., Pulak M. Pandey, and N. Venkata Reddy. "Optimum part deposition orientation in fused deposition modeling." International Journal of Machine Tools and Manufacture 44, no. 6 (2004): 585-594.3. Anitha, R., S. Arunachalam, and P. Radhakrishnan. "Critical parameters influencing the quality of prototypes in fused deposition modelling." Journal of Materials Processing Technology 118, no. 1-3 (2001): 385-388.4. Kumar, G. Pavan, and Srinivasa Prakash Regalla. "Optimization of support material and build time in fused deposition modeling (FDM)." In Applied Mechanics and Materials, vol. 110, pp. 2245-2251. Trans Tech Publications, 2012.5. Rao, R. Venkata, and Dhiraj P. Rai. "Optimization of fused deposition modeling process using teaching-learning-based optimization algorithm." Engineering Science and Technology, an International Journal 19, no. 1 (2016): 587-603.6. Pitayachaval, Paphakom, and Kriengsak Masnok. "Feed rate and volume of material effects in fused deposition modeling nozzle wear." In Industrial Engineering and Applications (ICIEA), 2017 4th International Conference on, pp. 39-44. IEEE, 2017.7. Zhu, Zicheng, Vimal Dhokia, and Stephen T. Newman. "A new algorithm for build time estimation for fused filament fabrication technologies." Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture 230, no. 12 (2016): 2214-2228.8. Fodran, Eric, Martin Koch, and Unny Menon. "Mechanical and dimensional characteristics of fused deposition modeling build styles." In Solid Freeform Fabrication Proc, pp. 419-442. 1996.9. Teitelbaum, Gregory A., Linda C. Schmidt, and Yoann Goaer. "Examining potential design guidelines for use in fused deposition modeling to reduce build time and material volume." In ASME 2009 International Design Engineering Technical Conferences and Computers and Information in Engineering Conference, pp. 73-82. American Society of Mechanical Engineers, 2009.10. Kumar, G. Pavan, and Srinivasa Prakash Regalla. "Optimization of support material and build time in fused deposition modeling (FDM)." In Applied Mechanics and Materials, vol. 110, pp. 2245-2251. Trans Tech Publications, 2012.

YAPIM ZAMANI İÇİN ERİMİŞ BİRİKİM MODELLEME İŞLEM PARAMETRELERİNİN OPTİMİZASYONU

Yıl 2018, Cilt: 2 Sayı: 1, 97 - 104, 13.03.2018

Öz

Eriyik
yığma modelleme (
Fused Deposition Modeling)(FDM), makul bir
zaman periyodunda geometrik karmaşıklıkla işlevsel plastik parçaları
oluşturabilme özelliğinden dolayı en hızlı büyüyen katman imalatı
teknolojisinden biri olarak gelişimini devam ettiren bir teknolojidir. FDM,
tasarlanan CAD verilerinden doğrudan nesneleri oluşturmak için yarı ergimiş
termoplastik polimerin bir tabla üzerine katmanlar şeklinde inşa edilerek
üretilen bir hızlı prototipleme tekniğidir. Bu çalışmanın amacı, dolgu tipi (
ızgara, üçgen ve petek) Katman kalınlığı (µm), Dolum yoğunluğu ( %10, %20 ve %
30) gibi süreç parametrelerinin yapım süresi üzerindeki etkisini incelenmiştir.

Kaynakça

  • 1. Ahn, Sung-Hoon, Michael Montero, Dan Odell, Shad Roundy, and Paul K. Wright. "Anisotropic material properties of fused deposition modeling ABS." Rapid prototyping journal 8, no. 4 (2002): 248-257.2. Thrimurthulu, K. P. P. M., Pulak M. Pandey, and N. Venkata Reddy. "Optimum part deposition orientation in fused deposition modeling." International Journal of Machine Tools and Manufacture 44, no. 6 (2004): 585-594.3. Anitha, R., S. Arunachalam, and P. Radhakrishnan. "Critical parameters influencing the quality of prototypes in fused deposition modelling." Journal of Materials Processing Technology 118, no. 1-3 (2001): 385-388.4. Kumar, G. Pavan, and Srinivasa Prakash Regalla. "Optimization of support material and build time in fused deposition modeling (FDM)." In Applied Mechanics and Materials, vol. 110, pp. 2245-2251. Trans Tech Publications, 2012.5. Rao, R. Venkata, and Dhiraj P. Rai. "Optimization of fused deposition modeling process using teaching-learning-based optimization algorithm." Engineering Science and Technology, an International Journal 19, no. 1 (2016): 587-603.6. Pitayachaval, Paphakom, and Kriengsak Masnok. "Feed rate and volume of material effects in fused deposition modeling nozzle wear." In Industrial Engineering and Applications (ICIEA), 2017 4th International Conference on, pp. 39-44. IEEE, 2017.7. Zhu, Zicheng, Vimal Dhokia, and Stephen T. Newman. "A new algorithm for build time estimation for fused filament fabrication technologies." Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture 230, no. 12 (2016): 2214-2228.8. Fodran, Eric, Martin Koch, and Unny Menon. "Mechanical and dimensional characteristics of fused deposition modeling build styles." In Solid Freeform Fabrication Proc, pp. 419-442. 1996.9. Teitelbaum, Gregory A., Linda C. Schmidt, and Yoann Goaer. "Examining potential design guidelines for use in fused deposition modeling to reduce build time and material volume." In ASME 2009 International Design Engineering Technical Conferences and Computers and Information in Engineering Conference, pp. 73-82. American Society of Mechanical Engineers, 2009.10. Kumar, G. Pavan, and Srinivasa Prakash Regalla. "Optimization of support material and build time in fused deposition modeling (FDM)." In Applied Mechanics and Materials, vol. 110, pp. 2245-2251. Trans Tech Publications, 2012.
Toplam 1 adet kaynakça vardır.

Ayrıntılar

Birincil Dil Türkçe
Konular Mühendislik
Bölüm Makaleler
Yazarlar

Fuat Kartal

Celal Nazlı Bu kişi benim

Zekeriya Yerlikaya Bu kişi benim

Fadime Şimşek

M. Hüseyin Çetin

Yayımlanma Tarihi 13 Mart 2018
Gönderilme Tarihi 12 Mart 2018
Yayımlandığı Sayı Yıl 2018 Cilt: 2 Sayı: 1

Kaynak Göster

APA Kartal, F., Nazlı, C., Yerlikaya, Z., Şimşek, F., vd. (2018). YAPIM ZAMANI İÇİN ERİMİŞ BİRİKİM MODELLEME İŞLEM PARAMETRELERİNİN OPTİMİZASYONU. International Journal of 3D Printing Technologies and Digital Industry, 2(1), 97-104.
AMA Kartal F, Nazlı C, Yerlikaya Z, Şimşek F, Çetin MH. YAPIM ZAMANI İÇİN ERİMİŞ BİRİKİM MODELLEME İŞLEM PARAMETRELERİNİN OPTİMİZASYONU. IJ3DPTDI. Mart 2018;2(1):97-104.
Chicago Kartal, Fuat, Celal Nazlı, Zekeriya Yerlikaya, Fadime Şimşek, ve M. Hüseyin Çetin. “YAPIM ZAMANI İÇİN ERİMİŞ BİRİKİM MODELLEME İŞLEM PARAMETRELERİNİN OPTİMİZASYONU”. International Journal of 3D Printing Technologies and Digital Industry 2, sy. 1 (Mart 2018): 97-104.
EndNote Kartal F, Nazlı C, Yerlikaya Z, Şimşek F, Çetin MH (01 Mart 2018) YAPIM ZAMANI İÇİN ERİMİŞ BİRİKİM MODELLEME İŞLEM PARAMETRELERİNİN OPTİMİZASYONU. International Journal of 3D Printing Technologies and Digital Industry 2 1 97–104.
IEEE F. Kartal, C. Nazlı, Z. Yerlikaya, F. Şimşek, ve M. H. Çetin, “YAPIM ZAMANI İÇİN ERİMİŞ BİRİKİM MODELLEME İŞLEM PARAMETRELERİNİN OPTİMİZASYONU”, IJ3DPTDI, c. 2, sy. 1, ss. 97–104, 2018.
ISNAD Kartal, Fuat vd. “YAPIM ZAMANI İÇİN ERİMİŞ BİRİKİM MODELLEME İŞLEM PARAMETRELERİNİN OPTİMİZASYONU”. International Journal of 3D Printing Technologies and Digital Industry 2/1 (Mart 2018), 97-104.
JAMA Kartal F, Nazlı C, Yerlikaya Z, Şimşek F, Çetin MH. YAPIM ZAMANI İÇİN ERİMİŞ BİRİKİM MODELLEME İŞLEM PARAMETRELERİNİN OPTİMİZASYONU. IJ3DPTDI. 2018;2:97–104.
MLA Kartal, Fuat vd. “YAPIM ZAMANI İÇİN ERİMİŞ BİRİKİM MODELLEME İŞLEM PARAMETRELERİNİN OPTİMİZASYONU”. International Journal of 3D Printing Technologies and Digital Industry, c. 2, sy. 1, 2018, ss. 97-104.
Vancouver Kartal F, Nazlı C, Yerlikaya Z, Şimşek F, Çetin MH. YAPIM ZAMANI İÇİN ERİMİŞ BİRİKİM MODELLEME İŞLEM PARAMETRELERİNİN OPTİMİZASYONU. IJ3DPTDI. 2018;2(1):97-104.

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