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Optimization of produced parameters for PA6/PA6GF30 composite produced by 3d printing with novel knitting method

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Full Text / Tam Metin (8.125Mb)

Erişim

info:eu-repo/semantics/openAccess

Tarih

2025

Yazar

Hartomacıoğlu, Selim
Öksüz, Mustafa
Ekinci, Aysun
Ateş, Murat

Üst veri

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Künye

Hartomacıoğlu, S., Oksuz, M., Ekinci, A., & Ates, M. (2025). Optimization of Produced Parameters for PA6/PA6GF30 Composite Produced by 3D Printing with Novel Knitting Method. Polymers, 17(12), 1590. https://doi.org/10.3390/polym17121590

Özet

The additive manufacturing sector is rapidly developing, providing alternatives for mass production in the polymer composite industry. Due to the direction-dependent mechanical properties and high cost of fiber-reinforced polymeric materials, it is necessary to take advantage of alternative multi-materials and production technologies. In this study, a special geometric-shaped knitting technique was investigated using two different materials. The main material was polyamide 6 (PA6), and the inner or second material was PA6 with a 30 wt.% glass fiber addition by weight (PA6GF30). The special geometric shape, layer thickness, nozzle temperature, and post-heat treatment time were measured as process parameters in the production of the PA6/PA6GF30 composites with the fused deposition modeling (FDM) technique. The Taguchi design method and L9 fractional experiment were used in the experimental study. The mechanical behaviors of the PA6/PA6GF30 samples were obtained using tensile and impact tests. In addition, scanning electron microscopy (SEM) analyses were performed on the fracture lines of the PA6/PA6GF30 samples, and damage analyses were carried out in more detail. The experimental results were sorted using grey relational analysis (GRA). Moreover, the optimal experimental conditions and their related plots were obtained. As a result, the highest tensile strength of the PA6GF30 composite was 89.89 MPa with the addition of a special geometric shape. In addition, the maximum impact resistance value of the PA6/PA6GF30 composite was 83 kJ/m2. Hence, the developed knitting method presented many advantages when using the FDM technique, and both were successfully used to produce the PA6/PA6GF30 composites.

Kaynak

Polymers

Cilt

17

Sayı

12

Bağlantı

https://doi.org/10.3390/polym17121590
https://hdl.handle.net/11436/10863

Koleksiyonlar

  • Makine Mühendisliği Bölümü Koleksiyonu [364]
  • Scopus İndeksli Yayınlar Koleksiyonu [6184]



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