Araştırma Makalesi
BibTex RIS Kaynak Göster

PREFABRİK BETON ELEMAN ÜRETİMİNDE ABS MALZEMEDEN EKLEMELİ İMALATLA ÜRETİLMİŞ KALIPLARIN GELENEKSEL YÖNTEMLERLE KONTRPLAK MALZEME İLE ÜRETİLMİŞ KALIPLARLA KARŞILAŞTIRILMASI: YÜZEY KALİTESİ VE TEKRAR KULLANIM PERFORMANSINA YÖNELİK DENEYSEL BİR DEĞERLENDİRME

Yıl 2025, Cilt: 1 Sayı: 1, 11 - 21, 30.09.2025

Öz

Bu çalışma, prefabrik beton elemanların üretim sürecinde kullanılan kalıpların malzeme türü ve üretim yöntemi bağlamında yüzey kalitesine etkisini incelemektedir. Araştırma kapsamında, ABS termoplastikten eklemeli imalat yöntemiyle üretilmiş kalıplar ile geleneksel kontrplak malzeme kullanılarak elde edilen kalıplar karşılaştırmalı olarak değerlendirilmiştir. Her iki kalıpla üretilen beton numuneler; yüzey pürüzlülüğü, detay aktarım hassasiyeti, üretim süreci verimliliği ve kalıp tekrar kullanımı bakımından analiz edilmiştir. Deneysel bulgular, eklemeli imalatla elde edilen ABS kalıpların daha düşük yüzey pürüzlülüğü ve yüksek geometrik hassasiyet sunduğunu; buna karşılık geleneksel kontrplak kalıpların üretim süresi ve dayanıklılık bakımından daha avantajlı olduğunu ortaya koymaktadır. Söz konusu sonuçlar doğrultusunda, ABS bazlı kalıpların prototip üretimi ve özel tasarım odaklı uygulamalar için uygunluk taşıdığı; ancak uzun vadeli kullanım ve seri üretim süreçlerinde iyileştirilmesi gereken yönleri bulunduğu değerlendirilmektedir. Araştırma bulguları, yapı endüstrisinde alternatif kalıp teknolojilerine yönelik farkındalık oluşturmaya katkı sağlamaktadır. Ayrıca sürdürülebilir üretim ve geri dönüştürülebilir malzeme kullanımı çerçevesinde yapılacak ileri düzey çalışmalar için literatüre yönlendirici öneriler sunmaktadır.

Kaynakça

  • Ahmed, M.T. (2020). “Sustainability assessment model for concrete formwork system.” Advanced Materials Research, 598, 360–364. https://doi.org/10.4028/www.scientific.net/AMR.598.360
  • BeePlastic, (2020). Top 10 uses of ABS plastic sheets in the signage and display industry. https://www.beeplastic.com/blogs/plastic-insights/top-10-uses-of-abs-plastic-sheets-in-the-signage-and-display-industry
  • Delaqua, V. (2017). 10 projects that illustrate the huge potential of prefab. ArchDaily. https://www.archdaily.com/872383/5-projects-that-illustrate-the-huge-potential-of-prefab
  • Dreamstime, (2018). Concrete surface with poor quality coating deteriorating due to external factors. https://www.dreamstime.com/concrete-surface-poor-quality-coating-has-already-begun-to-gradually-deteriorate-due-external-factors-weather-image168119520
  • Fortelock, (2019). Çimento zeminleri anlamak. https://www.fortelock.com.tr/blog/cimento-zeminleri-anlamak
  • Golubović, Z., Danilov, I., Bojović, B., Petrov, L., Sedmak, A., Mišković, Ž., Mitrović, N. (2023). “A comprehensive mechanical examination of ABS and ABS-like polymers additively manufactured by material extrusion and vat photopolymerization processes.” Polymers, 15(21), 4197. https://www.mdpi.com/2073-4360/15/21/4197
  • Heimfarth Dapper, S., Belebchouche, C., Badi, F.Z. (2024). “Impact of formwork materials on concrete surface quality.” Buildings, 14(11), 3450. https://www.diva-portal.org/smash/get/diva2:1824805/FULLTEXT01.pdf
  • Monfared, V., Kim, H.S., Lee, J.H. (2023). “Science and technology of additive manufacturing progress: Processes, materials, and applications.” Metals and Materials International, 29, 3442–3470. https://doi.org/10.1007/s12540-023-01467-x
  • Nakano, K., Hattori, N., Koide, M., Imago, M., Yamada, Y., Ogawa, T., Toyoshima, Y. (2025). “Environmental impacts of structural and concrete formwork plywood in Japan.” Journal of Wood Science, 71(25). https://jwoodscience.springeropen.com/articles/10.1186/s10086-025-02202-3
  • Nilimaa, J., Gamil, Y., Zhaka, V. (2023). “Formwork engineering for sustainable concrete construction.” CivilEng, 4(4), 1098–1120.
  • OceanBIM, (2023). Formwork drawing: How to create accurate formwork drawings in Revit. OceanBIM Blog. https://blog.oceanbim.com/formwork-drawing/
  • Protolabs, (2019). ABS plastic material properties. https://www.protolabs.com/materials/abs/
  • TechPally, (2023). Additive manufacturing applications and examples. TechPally. https://techpally.com/additive-manufacturing-applications/
  • Türkiye Hazır Beton Birliği, (2025). Beton nedir? https://www.thbb.org/teknik-bilgiler/beton-nedir/
  • UAB Irmarim Wood, (2019). 20 types of plywood and grades used in interior and exterior. https://uabirmarimwood.com/20-types-of-plywood-and-grades-used-in-interior-and-exterior/
  • Vishwakarma, S., Kumar, A., Kumar, R. (2017). “Characterization of abs material: a review.” Journal of Research in Mechanical Engineering, 3(5), 13–16. https://www.questjournals.org/jrme/papers/vol3-issue5/C351316.pdf
  • West, M. (2021). Review on the use of flexible formworks for concrete structures. Revista IBRACON de Estruturas e Materiais.
  • Wu, X., Han, J., Cui, H., Li, T., Bai, X., He, Y., Liu, N. (2024). “A comparative review of recent research progress in prefabricated buildings in China and other countries.” Buildings, 14(4), 1062. https://www.mdpi.com/2075-5309/14/4/1062

COMPARISON OF MOLDS PRODUCED USING ADDITIVE MANUFACTURING WITH ABS MATERIAL IN PRECAST CONCRETE ELEMENT PRODUCTION WITH MOLDS PRODUCED USING TRADITIONAL METHODS WITH PLYWOOD MATERIAL: AN EXPERIMENTAL EVALUATION FOCUSING ON SURFACE QUALITY AND REUSABILITY PERFORMANCE

Yıl 2025, Cilt: 1 Sayı: 1, 11 - 21, 30.09.2025

Öz

This study investigates the impact of formwork material type and production method on the surface quality of precast concrete components. Within the scope of the research, formworks fabricated from ABS thermoplastic using additive manufacturing technologies are comparatively evaluated against conventionally produced plywood formworks. Concrete samples cast with each formwork type were analyzed in terms of surface roughness, detail transfer accuracy, process efficiency, and reusability. Experimental findings reveal that ABS-based formworks produced through Fused Deposition Modeling offer superior geometric fidelity and lower surface roughness compared to their plywood counterparts. However, conventional plywood formworks displayed greater advantages in terms of production time and material endurance during prolonged use. These results suggest that ABS formworks are particularly well-suited for prototyping and design-oriented applications requiring high surface precision. Conversely, further development is needed for their integration into long-term industrial production processes due to mechanical durability and cost implications. The insights gained through this study contribute to the growing awareness surrounding alternative formwork technologies in the construction industry. Furthermore, the findings offer valuable recommendations for future research initiatives aimed at improving sustainable production practices and enhancing the use of recyclable materials in concrete formwork systems.

Kaynakça

  • Ahmed, M.T. (2020). “Sustainability assessment model for concrete formwork system.” Advanced Materials Research, 598, 360–364. https://doi.org/10.4028/www.scientific.net/AMR.598.360
  • BeePlastic, (2020). Top 10 uses of ABS plastic sheets in the signage and display industry. https://www.beeplastic.com/blogs/plastic-insights/top-10-uses-of-abs-plastic-sheets-in-the-signage-and-display-industry
  • Delaqua, V. (2017). 10 projects that illustrate the huge potential of prefab. ArchDaily. https://www.archdaily.com/872383/5-projects-that-illustrate-the-huge-potential-of-prefab
  • Dreamstime, (2018). Concrete surface with poor quality coating deteriorating due to external factors. https://www.dreamstime.com/concrete-surface-poor-quality-coating-has-already-begun-to-gradually-deteriorate-due-external-factors-weather-image168119520
  • Fortelock, (2019). Çimento zeminleri anlamak. https://www.fortelock.com.tr/blog/cimento-zeminleri-anlamak
  • Golubović, Z., Danilov, I., Bojović, B., Petrov, L., Sedmak, A., Mišković, Ž., Mitrović, N. (2023). “A comprehensive mechanical examination of ABS and ABS-like polymers additively manufactured by material extrusion and vat photopolymerization processes.” Polymers, 15(21), 4197. https://www.mdpi.com/2073-4360/15/21/4197
  • Heimfarth Dapper, S., Belebchouche, C., Badi, F.Z. (2024). “Impact of formwork materials on concrete surface quality.” Buildings, 14(11), 3450. https://www.diva-portal.org/smash/get/diva2:1824805/FULLTEXT01.pdf
  • Monfared, V., Kim, H.S., Lee, J.H. (2023). “Science and technology of additive manufacturing progress: Processes, materials, and applications.” Metals and Materials International, 29, 3442–3470. https://doi.org/10.1007/s12540-023-01467-x
  • Nakano, K., Hattori, N., Koide, M., Imago, M., Yamada, Y., Ogawa, T., Toyoshima, Y. (2025). “Environmental impacts of structural and concrete formwork plywood in Japan.” Journal of Wood Science, 71(25). https://jwoodscience.springeropen.com/articles/10.1186/s10086-025-02202-3
  • Nilimaa, J., Gamil, Y., Zhaka, V. (2023). “Formwork engineering for sustainable concrete construction.” CivilEng, 4(4), 1098–1120.
  • OceanBIM, (2023). Formwork drawing: How to create accurate formwork drawings in Revit. OceanBIM Blog. https://blog.oceanbim.com/formwork-drawing/
  • Protolabs, (2019). ABS plastic material properties. https://www.protolabs.com/materials/abs/
  • TechPally, (2023). Additive manufacturing applications and examples. TechPally. https://techpally.com/additive-manufacturing-applications/
  • Türkiye Hazır Beton Birliği, (2025). Beton nedir? https://www.thbb.org/teknik-bilgiler/beton-nedir/
  • UAB Irmarim Wood, (2019). 20 types of plywood and grades used in interior and exterior. https://uabirmarimwood.com/20-types-of-plywood-and-grades-used-in-interior-and-exterior/
  • Vishwakarma, S., Kumar, A., Kumar, R. (2017). “Characterization of abs material: a review.” Journal of Research in Mechanical Engineering, 3(5), 13–16. https://www.questjournals.org/jrme/papers/vol3-issue5/C351316.pdf
  • West, M. (2021). Review on the use of flexible formworks for concrete structures. Revista IBRACON de Estruturas e Materiais.
  • Wu, X., Han, J., Cui, H., Li, T., Bai, X., He, Y., Liu, N. (2024). “A comparative review of recent research progress in prefabricated buildings in China and other countries.” Buildings, 14(4), 1062. https://www.mdpi.com/2075-5309/14/4/1062
Toplam 18 adet kaynakça vardır.

Ayrıntılar

Birincil Dil Türkçe
Konular Tasarım (Diğer)
Bölüm PREFABRİK BETON ELEMAN ÜRETİMİNDE ABS MALZEMEDEN EKLEMELİ İMALATLA ÜRETİLMİŞ KALIPLARIN GELENEKSEL YÖNTEMLERLE KONTRPLAK MALZEME İLE ÜRETİLMİŞ KALIPLARLA KARŞILAŞTIRILMASI: YÜZEY KALİTESİ VE TEKRAR KULLANIM PERFORMANSINA YÖNELİK DENEYSEL BİR DEĞERLENDİRME
Yazarlar

Şamil Can Güder 0000-0002-5335-9098

Yayımlanma Tarihi 30 Eylül 2025
Gönderilme Tarihi 15 Temmuz 2025
Kabul Tarihi 25 Eylül 2025
Yayımlandığı Sayı Yıl 2025 Cilt: 1 Sayı: 1

Kaynak Göster

APA Güder, Ş. C. (2025). PREFABRİK BETON ELEMAN ÜRETİMİNDE ABS MALZEMEDEN EKLEMELİ İMALATLA ÜRETİLMİŞ KALIPLARIN GELENEKSEL YÖNTEMLERLE KONTRPLAK MALZEME İLE ÜRETİLMİŞ KALIPLARLA KARŞILAŞTIRILMASI: YÜZEY KALİTESİ VE TEKRAR KULLANIM PERFORMANSINA YÖNELİK DENEYSEL BİR DEĞERLENDİRME. Art, Design, And Cultural Studies Journal, 1(1), 11-21.