Araştırma Makalesi

THE EFFECT OF THE INFILL TYPE AND DENSITY ON HARDNESS OF 3D PRINTED PARTS

Cilt: 3 Sayı: 3 31 Aralık 2019
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THE EFFECT OF THE INFILL TYPE AND DENSITY ON HARDNESS OF 3D PRINTED PARTS

Öz

The aim of this study is to investigate the effects of the infill type and density on hardness of the manufactured components with rapid prototyping technique. Computer Aided Design (CAD) models of specimens were prepared using Autodesk Inventor Software. Then the models were exported as STL file format for rapid prototyping. Disc shape specimens were produced with the diameter of 20 mm and thickness of 5 mm using Prusa İ3 desktop type 3D printer with 90-300 microns layer height manufacturing capacity. The printer settings were adjusted with Simplified3D software. The infill types were selected as rectilinear (linear), grid (diamond) and honeycomb (hexagonal). Layer heights were used as 200 microns for all of the samples. For each infill types; the specimens were produced with the infill density values of 15, 25, 50, 75 and 100%. The heated bed temperature was selected as 60 0C to increase the bonding and surface quality. The extruder temperature was set to 195 0C. Then the hardness of the manufactured specimens were measured with EMCO-TEST DuraScan micro hardness machine that has ability to perform Vickers and Knoop methods range between 10 gf and 10 kgf.  In order to find the effects of the infill type and density on hardness of 3D printed specimens, the obtained results from Vickers micro hardness measurements were compared. The hexagonal infill with the density of 100% showed the highest hardness and also the hardness patterns could be presented from high to low as Hexagonal > Linear > Diamond.

Anahtar Kelimeler

Kaynakça

  1. 1. Garone, P., “Exploring the Use of Desktop 3D Printing for Microfluidics Prototyping”, Thesis in the Field of Biotechnology for the Degree of Master of Liberal Arts in Extension Studies, Harvard University, 2017.
  2. 2. Ngo, T.D., Kashani, A., Imbalzano, G., Nguyen, K.T.Q., Hui, D., “Additive manufacturing (3D printing): A review of materials, methods, applications and challenges”, Composites Part B, Volume 143, Pages 172–196, 2018.
  3. 3. Chua, C.K., Wong, C.H., Yeong, W.Y., “Standards, Quality Control, and Measurement Sciences in 3D Printing and Additive Manufacturing”, Academic Press is an imprint of Elsevier, 2017.
  4. 4. Miron, V., Ferrandiz, S., Juarez, D., Mengual, A., “Manufacturing and characterization of 3D printer filament using tailoring materials”, Manufacturing Engineering Society International Conference (MESIC), 28-30 June 2017, Procedia Manufacturing, Volume 13, Pages 888-894, Vigo, Spain. 2017.
  5. 5. Byrley, P., George, B.J., Boyes, W.K., Rogers K., “Particle emissions from fused deposition modeling 3D printers: Evaluation and meta-analysis”, Science of Total Environment, Volume 655, Pages 395-407, 2019.
  6. 6. Harpool, T.D., “Observing the Effects of Infill Shapes on the Tensile Characteristics of 3D Printed Plastic Parts”, Master of Science on the Department of Mechanical Engineering and the Faculty of the Graduate School of Wichita State, Wichita. 2016.
  7. 7. Baich, L., “Impact of Infill Design on Mechanical Strength and Production Cost in Material Extrusion Based Additive Manufacturing”, Master of Science in Engineering in the Industrial and Systems Engineering Program, Youngstown State University, Youngstown, 2016.
  8. 8. Sucuoglu, H.S., Bogrekci, I., Demircioglu, P., Turhanlar, O., “Development of Hybrid Pattern for Three Dimensional Printing Optimization”, Sigma J Eng & Nat Sci., Volume 36, Issue 3, Pages 667-675, 2018.

Ayrıntılar

Birincil Dil

İngilizce

Konular

Makine Mühendisliği

Bölüm

Araştırma Makalesi

Yayımlanma Tarihi

31 Aralık 2019

Gönderilme Tarihi

30 Eylül 2019

Kabul Tarihi

11 Aralık 2019

Yayımlandığı Sayı

Yıl 2019 Cilt: 3 Sayı: 3

Kaynak Göster

APA
Bogrekcı, İ., Demırcıoglu, P., Sucuoglu, H. S., & Turhanlar, O. (2019). THE EFFECT OF THE INFILL TYPE AND DENSITY ON HARDNESS OF 3D PRINTED PARTS. International Journal of 3D Printing Technologies and Digital Industry, 3(3), 212-219. https://izlik.org/JA44PD63TN
AMA
1.Bogrekcı İ, Demırcıoglu P, Sucuoglu HS, Turhanlar O. THE EFFECT OF THE INFILL TYPE AND DENSITY ON HARDNESS OF 3D PRINTED PARTS. IJ3DPTDI. 2019;3(3):212-219. https://izlik.org/JA44PD63TN
Chicago
Bogrekcı, İsmail, Pinar Demırcıoglu, Hilmi Saygin Sucuoglu, ve Ogulcan Turhanlar. 2019. “THE EFFECT OF THE INFILL TYPE AND DENSITY ON HARDNESS OF 3D PRINTED PARTS”. International Journal of 3D Printing Technologies and Digital Industry 3 (3): 212-19. https://izlik.org/JA44PD63TN.
EndNote
Bogrekcı İ, Demırcıoglu P, Sucuoglu HS, Turhanlar O (01 Aralık 2019) THE EFFECT OF THE INFILL TYPE AND DENSITY ON HARDNESS OF 3D PRINTED PARTS. International Journal of 3D Printing Technologies and Digital Industry 3 3 212–219.
IEEE
[1]İ. Bogrekcı, P. Demırcıoglu, H. S. Sucuoglu, ve O. Turhanlar, “THE EFFECT OF THE INFILL TYPE AND DENSITY ON HARDNESS OF 3D PRINTED PARTS”, IJ3DPTDI, c. 3, sy 3, ss. 212–219, Ara. 2019, [çevrimiçi]. Erişim adresi: https://izlik.org/JA44PD63TN
ISNAD
Bogrekcı, İsmail - Demırcıoglu, Pinar - Sucuoglu, Hilmi Saygin - Turhanlar, Ogulcan. “THE EFFECT OF THE INFILL TYPE AND DENSITY ON HARDNESS OF 3D PRINTED PARTS”. International Journal of 3D Printing Technologies and Digital Industry 3/3 (01 Aralık 2019): 212-219. https://izlik.org/JA44PD63TN.
JAMA
1.Bogrekcı İ, Demırcıoglu P, Sucuoglu HS, Turhanlar O. THE EFFECT OF THE INFILL TYPE AND DENSITY ON HARDNESS OF 3D PRINTED PARTS. IJ3DPTDI. 2019;3:212–219.
MLA
Bogrekcı, İsmail, vd. “THE EFFECT OF THE INFILL TYPE AND DENSITY ON HARDNESS OF 3D PRINTED PARTS”. International Journal of 3D Printing Technologies and Digital Industry, c. 3, sy 3, Aralık 2019, ss. 212-9, https://izlik.org/JA44PD63TN.
Vancouver
1.İsmail Bogrekcı, Pinar Demırcıoglu, Hilmi Saygin Sucuoglu, Ogulcan Turhanlar. THE EFFECT OF THE INFILL TYPE AND DENSITY ON HARDNESS OF 3D PRINTED PARTS. IJ3DPTDI [Internet]. 01 Aralık 2019;3(3):212-9. Erişim adresi: https://izlik.org/JA44PD63TN

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