OPTIMASI PARAMETER PROSES 3D PRINTING TERHADAP KEKUATAN TARIK FILAMENT ABS MENGGUNAKAN METODE TAGUCHI

Authors

  • Reza Dwi Putra Putra Politeknik Manufatur Negeri bangka Belitung
  • Zaldy Sirwansyah Suzen
  • Hasdiansah

Keywords:

Nozzle temperature, Bed temperature, Layer Height

Abstract

3D printing technology is a technique that uses a material filling method to print products, which is usually called the Additive manufacturing technique. This technique has often been used in various industrial fields, including construction, health, and prototyping. Making 3D printing is what is sought to replace metal materials. Of the many 3D printing technologies, the most frequently used is Fused Deposition Modeling (FDM). The workings of the FDM machine is by means of thermoplastic extrusion through a hot nozzle at a melting temperature, then the manufacture is made layer by layer to form a product. The purpose of this research is to optimize the parameters of the 3D printing process using ABS filament for tensile strength using the Taguchi L9 OA method. The various process parameters that will be used in this research are Nozzle temperature °C, Bed temperature °C, Layer Height mm. that the optimal process parameter values ​​for the tensile strength of ABS filament are Nozzle Temperature 245°C, Layer Height 0.20 mm, Bed Temperature 90°C.

Downloads

Download data is not yet available.

References

Ade Ferdiansyah, Pristiansyah, Boy Rollastin. (2021). Optimasi Parameter Proses 3d Printing Fdm Terhadap Kekuatan Tarik Filament Abs Cctree Menggunakan Metode Taguchi L9. No. 01 (2021): Seminar Nasional Inovasi Teknologi Terapan (SNITT).

Andriyansyah, H. d. (2018). ‘Optimasi Parameter Proses 3D Printing Terhadap Kuat Tarik Filamen PLA Menggunakan Metode Taguchi. Seminar Nasional Pendidikan Teknik Otomotif, (ISSN : 2338-0284), pp., 61–68.

Kholil, A. A. (2020). Pengaruh Layer Thickness Dan Orientasi 3D Printing Terhadap Uji Tarik Material Abs. 1, pp. 277–285.

Mpik. (2017). Material Printer 3D ABS (Acrylonitrile Butadiene Styrene). Dipetik 2021, dari Indoprinter3d: http://indoprinter3d.com/.

Pristiansyah, Hasdiansah, Sugiyarto. (2019). Optimasi Parameter Proses 3D Printing FDM Terhadap Akurasi Dimensi Menggunakan Filament Eflex. Manutech: Jurnal Teknologi Manufaktur.

Tanoto, Y. Y. (2017). The effect of orientation difference in fused deposition modeling of ABS polymer on the processing time, dimension accuracy, and strength. doi:10.1063/1.4968304.

Tuan D. Ngo., A. K. (2018). Additive manufacturing (3D printing): A review of materials, methods, applications and challenges. Jurnal Composite Part B : engineering.

Wahyudi Hafizi Pratama, H. H. (2021). Optimasi Parameter Proses 3d Printing Terhadap Kuat Tarik Material Filamen Pla + Menggunakan Metode Taguchi. Sprocket Journal Of Mechanical Engineering: Vol 3 No 1 (2021): Edisi Agustus 2021.

Yulian Subakti, H. Z. (2021). Pengaruh Media Temperatur dan Waktu Perlakuan Annealing pada Spesimen Standar ASTM D638 Type IV. Sprocket : Journal of Mechanical Engineering, 11-13.

Zaldy Sirwansyah Suzen, Hasdiansah . (2021). Pengaruh Parameter Proses 3d Printing Terhadap Kekuatan Tarik Filamen Pla+ Sugoi. Jurnal Rekayasa Mesin,, 16(2), 140-147.

Downloads

Published

22-02-2022

How to Cite

Putra, R. D. P., Zaldy Sirwansyah Suzen, & Hasdiansah. (2022). OPTIMASI PARAMETER PROSES 3D PRINTING TERHADAP KEKUATAN TARIK FILAMENT ABS MENGGUNAKAN METODE TAGUCHI. Prosiding Seminar Nasional Inovasi Teknologi Terapan, 2(01), 478–484. Retrieved from https://snitt.polman-babel.ac.id/index.php/snitt/article/view/226