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Year 2019, Volume: 3 Issue: 3, 289 - 296, 31.12.2019

Abstract

References

  • 1. T. Anjum, P. Dongre, F. Misbah, and V. P. S. N. Nanyam, “Purview of 3DP in the Indian Built Environment Sector,” Procedia Eng., vol. 196, no. November, pp. 228–235, 2017.
  • 2. İnternet: Google Patent, “Method for production of three-dimensional objects by stereolithography”, https://patents.google.com/patent/US4929402A/en ,2019.
  • 3. Akpek, A., “Analysis of biocompatibility characteristics of stereolithography applied three dimensional (3D) bioprinted artifical heart valves”, Journal of the Faculty of Engineering and Architecture of Gazi University, Vol. 33, Issue 3, Pages 929-938, 2018.
  • 4. Mu, Q., Wang, L., Dunn, C., Kuang, X., Duan, F., Zhang, Z., Qi, H., Wang, T., “Digital light processing 3D printing of conductive complex structures”. Additive Manufacturing. Vol 18, Pages 74-83, 2017.
  • 5. İnternet: Formlabs “What is Selective Laser Sintering?”, https://formlabs.com/blog/what-is-selective-laser-sintering, 2019.
  • 6. Wadea A., Atef M. G., Moath A., Hisham A., Abdulrahman A.,”An overview of selective laser sintering and melting research using bibliometric indicators, Virtual and Physical Prototyping”, Vol. 13, Issue 4, Pages 282-291, 2018, DOI: 10.1080/17452759.2018.1489973
  • 7. Dudek, P., “FDM 3D Printing Technology in Manufacturing Composite Elements”. Archives of Metallurgy and Materials.Vol. 58, Issue 4, 2013.
  • 8. Nadarajah, N., “Development of Concrete 3D Printing”, Master Thesis, Aalto University School of Engineering Building Technology, Finland, 2018.
  • 9. Faguo, Z., Fan, Z., Bingru, Y., “Research on short text classification algorithm based on statistics and rules”, Third International Symposium on Electronic Commerce and Security, Pages 3–79, 2010.
  • 10. Mekonnen, B.G., Bright, G., Walker, A., “A Study on State of the Art Technology of Laminated Object Manufacturing (LOM)”; Springer: Berlin, Germany, 2016.
  • 11. Pegna, J., “Exploratory Investigation of Solid Freeform Construction”, Automation in Construction, Vol. 5, Issue 5, Pages 427-437, 1997.
  • 12. İnternet: Canal House “3dprintcanalhouse”, https://3dprintcanalhouse.com, 2019.
  • 13. Houcai, L., Jianhua, M., Haitao, L., “A Review of Three Dimensional Printing Technology and Its Application”, Mechanical Science and Technology for Aerospace Engineering, Vol. 9, 2008.
  • 14. Oberti, I., Plantamura, F., “Is 3d Printed House Sustainable?”, International Conference on Future Buildings and Districts, Lausanne, EPFL Solar Energy and Building Physics Laboratory, Pages 173-178, 2015.
  • 15. Tay, Y. W. D., Panda, B., Paul, S., Tan, M.J., Qian, S., Leong, K. F., Chua, C., (2016). “Processing and Properties of Construction Materials for 3D Printing”, Materials Science Forum 861, Pages 177-81, 2016.16. İnternet: D-Shape, “The Vision”, https://d-shape.com/the-vision/, 2019.
  • 17. Khoshnevis, B., “Automated Construction by Contour Crafting Related Robotics andİnformation Technologies”, Automation in Construction, Vol.13, Issue 1, Pages 5-19, 2004.
  • 18. İnternet: Contour Crafting, “Introducing Contour Crafting Technology”, http://contourcrafting.com/, 2019.
  • 19. Winsun: “Demonstrating the Viability of 3D Printing at Construction Scale”, World Economic Forum, https://futureofconstruction.org › case › download
  • 20. Freek B., Rob W., Zeeshan A., Theo S., “Additive manufacturing of concrete in construction: potentials and challenges of 3D concrete printing”, Virtual and Physical Prototyping, Vol. 11, Issue 3, Pages 209-225, 2016. DOI: 10.1080/17452759.2016.1209867
  • 21. Gardiner, J., “Exploring The Emerging Design Territory Of Construction 3D Printing - Project Led Architectural Research”, Architecture and Design, RMIT University, 2011.

MİMARİ YAPILARDA 3 BOYUTLU YAZICILARIN KULLANIMI

Year 2019, Volume: 3 Issue: 3, 289 - 296, 31.12.2019

Abstract

Bu makale,
mimari yapılarda 3B (3 Boyutlu) baskı teknolojinin kullanımı ve teknolojisinin
kapsamı hakkındadır. 3B baskı teknolojisi, 3B yazıcının icadıyla başlayan yeni
bir yapım tekniğidir. Bu teknolojinin maliyet ve üretim zamanını azaltma, çevre
kirliliğini en aza indirme, inşaat alanındaki yaralanma ve ölümleri azaltma
gibi birçok avantajı bulunmaktadır. Geleneksel yapım teknikleri ile
karşılaştırıldığında, 3B baskı tekniğiyle çok daha karmaşık geometrik yapıların
üretilebilmesi sağlanmaktadır ve sınırsız olanaklar sunmaktadır. 3B baskı
teknolojisi sadece mimarlık ve tasarım konularını değil, malzeme bilimi ve
robotik gibi mühendislik alanlarının da içinde bulunduğu disiplinler arası bir
çalışmayı gerektirmektedir. Bu çalışmalar sayesinde 3B baskı ile çimento
karışımlı malzemelerin basılabilmesi sağlanmıştır. Makale kapsamında bu
teknolojiye olanak sağlayan yazıcılar ve malzemeler incelenmiştir.

References

  • 1. T. Anjum, P. Dongre, F. Misbah, and V. P. S. N. Nanyam, “Purview of 3DP in the Indian Built Environment Sector,” Procedia Eng., vol. 196, no. November, pp. 228–235, 2017.
  • 2. İnternet: Google Patent, “Method for production of three-dimensional objects by stereolithography”, https://patents.google.com/patent/US4929402A/en ,2019.
  • 3. Akpek, A., “Analysis of biocompatibility characteristics of stereolithography applied three dimensional (3D) bioprinted artifical heart valves”, Journal of the Faculty of Engineering and Architecture of Gazi University, Vol. 33, Issue 3, Pages 929-938, 2018.
  • 4. Mu, Q., Wang, L., Dunn, C., Kuang, X., Duan, F., Zhang, Z., Qi, H., Wang, T., “Digital light processing 3D printing of conductive complex structures”. Additive Manufacturing. Vol 18, Pages 74-83, 2017.
  • 5. İnternet: Formlabs “What is Selective Laser Sintering?”, https://formlabs.com/blog/what-is-selective-laser-sintering, 2019.
  • 6. Wadea A., Atef M. G., Moath A., Hisham A., Abdulrahman A.,”An overview of selective laser sintering and melting research using bibliometric indicators, Virtual and Physical Prototyping”, Vol. 13, Issue 4, Pages 282-291, 2018, DOI: 10.1080/17452759.2018.1489973
  • 7. Dudek, P., “FDM 3D Printing Technology in Manufacturing Composite Elements”. Archives of Metallurgy and Materials.Vol. 58, Issue 4, 2013.
  • 8. Nadarajah, N., “Development of Concrete 3D Printing”, Master Thesis, Aalto University School of Engineering Building Technology, Finland, 2018.
  • 9. Faguo, Z., Fan, Z., Bingru, Y., “Research on short text classification algorithm based on statistics and rules”, Third International Symposium on Electronic Commerce and Security, Pages 3–79, 2010.
  • 10. Mekonnen, B.G., Bright, G., Walker, A., “A Study on State of the Art Technology of Laminated Object Manufacturing (LOM)”; Springer: Berlin, Germany, 2016.
  • 11. Pegna, J., “Exploratory Investigation of Solid Freeform Construction”, Automation in Construction, Vol. 5, Issue 5, Pages 427-437, 1997.
  • 12. İnternet: Canal House “3dprintcanalhouse”, https://3dprintcanalhouse.com, 2019.
  • 13. Houcai, L., Jianhua, M., Haitao, L., “A Review of Three Dimensional Printing Technology and Its Application”, Mechanical Science and Technology for Aerospace Engineering, Vol. 9, 2008.
  • 14. Oberti, I., Plantamura, F., “Is 3d Printed House Sustainable?”, International Conference on Future Buildings and Districts, Lausanne, EPFL Solar Energy and Building Physics Laboratory, Pages 173-178, 2015.
  • 15. Tay, Y. W. D., Panda, B., Paul, S., Tan, M.J., Qian, S., Leong, K. F., Chua, C., (2016). “Processing and Properties of Construction Materials for 3D Printing”, Materials Science Forum 861, Pages 177-81, 2016.16. İnternet: D-Shape, “The Vision”, https://d-shape.com/the-vision/, 2019.
  • 17. Khoshnevis, B., “Automated Construction by Contour Crafting Related Robotics andİnformation Technologies”, Automation in Construction, Vol.13, Issue 1, Pages 5-19, 2004.
  • 18. İnternet: Contour Crafting, “Introducing Contour Crafting Technology”, http://contourcrafting.com/, 2019.
  • 19. Winsun: “Demonstrating the Viability of 3D Printing at Construction Scale”, World Economic Forum, https://futureofconstruction.org › case › download
  • 20. Freek B., Rob W., Zeeshan A., Theo S., “Additive manufacturing of concrete in construction: potentials and challenges of 3D concrete printing”, Virtual and Physical Prototyping, Vol. 11, Issue 3, Pages 209-225, 2016. DOI: 10.1080/17452759.2016.1209867
  • 21. Gardiner, J., “Exploring The Emerging Design Territory Of Construction 3D Printing - Project Led Architectural Research”, Architecture and Design, RMIT University, 2011.
There are 20 citations in total.

Details

Primary Language Turkish
Subjects Engineering
Journal Section Review Articles
Authors

Seval Özgel Felek 0000-0003-4628-1058

Publication Date December 31, 2019
Submission Date October 7, 2019
Published in Issue Year 2019 Volume: 3 Issue: 3

Cite

APA Özgel Felek, S. (2019). MİMARİ YAPILARDA 3 BOYUTLU YAZICILARIN KULLANIMI. International Journal of 3D Printing Technologies and Digital Industry, 3(3), 289-296.
AMA Özgel Felek S. MİMARİ YAPILARDA 3 BOYUTLU YAZICILARIN KULLANIMI. IJ3DPTDI. December 2019;3(3):289-296.
Chicago Özgel Felek, Seval. “MİMARİ YAPILARDA 3 BOYUTLU YAZICILARIN KULLANIMI”. International Journal of 3D Printing Technologies and Digital Industry 3, no. 3 (December 2019): 289-96.
EndNote Özgel Felek S (December 1, 2019) MİMARİ YAPILARDA 3 BOYUTLU YAZICILARIN KULLANIMI. International Journal of 3D Printing Technologies and Digital Industry 3 3 289–296.
IEEE S. Özgel Felek, “MİMARİ YAPILARDA 3 BOYUTLU YAZICILARIN KULLANIMI”, IJ3DPTDI, vol. 3, no. 3, pp. 289–296, 2019.
ISNAD Özgel Felek, Seval. “MİMARİ YAPILARDA 3 BOYUTLU YAZICILARIN KULLANIMI”. International Journal of 3D Printing Technologies and Digital Industry 3/3 (December 2019), 289-296.
JAMA Özgel Felek S. MİMARİ YAPILARDA 3 BOYUTLU YAZICILARIN KULLANIMI. IJ3DPTDI. 2019;3:289–296.
MLA Özgel Felek, Seval. “MİMARİ YAPILARDA 3 BOYUTLU YAZICILARIN KULLANIMI”. International Journal of 3D Printing Technologies and Digital Industry, vol. 3, no. 3, 2019, pp. 289-96.
Vancouver Özgel Felek S. MİMARİ YAPILARDA 3 BOYUTLU YAZICILARIN KULLANIMI. IJ3DPTDI. 2019;3(3):289-96.

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