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Analisis Akurasi Dimensi Prototipe Cetakan Cutting Tools Insert Tri Angle Menggunakan Proses Pencetakan 3D Berbahan PETG Muhammad Sobron Yamin Lubis; Raylan Alexander; Gerard Theodorus; Salma Khaula Bazla; Muhamad Zaki Adika; Rifqi Andika Putra; Silvi Ariyanti; Muhammad Zulkarnain
IRA Jurnal Teknik Mesin dan Aplikasinya (IRAJTMA) Vol 4 No 3 (2025): Desember
Publisher : CV. IRA PUBLISHING

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.56862/irajtma.v4i3.343

Abstract

This study aims to analyze the dimensional accuracy of tri-angle cutting tool insert mold prototipes produced via PETG-based 3D printing. The printing process was carried out with predetermined printing parameters, and the resulting prototipes were measured and compared with the original design dimensions. The evaluation focused on the main dimensions of the insert to determine dimensional deviation and accuracy. The results indicate that PETG 3D printing can produce mold prototipes with satisfactory dimensional accuracy, though minor deviations were observed due to printing parameters and material characteristics. This study is expected to serve as a reference for using 3D printing technology as an efficient, cost-effective alternative for manufacturing cutting tool mold prototipes.
Analisis Pengaruh Kandungan Cobalt terhadap Densitas dan Kekerasan WC-Co Muhammad Sobron Yamin Lubis; Gerard Theodorus; Erwin Siahaan
IRA Jurnal Teknik Mesin dan Aplikasinya (IRAJTMA) Vol 5 No 2 (2026): Agustus
Publisher : CV. IRA PUBLISHING

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.56862/irajtma.v5i2.447

Abstract

This study investigates the effect of cobalt content and sintering temperature on the density and hardness of tungsten carbide cobalt materials produced using powder metallurgy. This research aims to analyze how binder content variation and sintering temperature affect the material's physical and mechanical properties. This study used an experimental approach with cobalt contents of 4%, 7%, and 10% and sintering temperatures of 1200°C, 1300°C, and 1400°C. The fabrication process included powder mixing, 24-hour ball milling, cold compaction, and sintering in an inert atmosphere. We measured density using Archimedes principle and hardness using the Vickers method. The results show that the maximum density was obtained at 10% cobalt content and a sintering temperature of 1300°C, while increasing the temperature to 1400°C decreased density due to grain growth and pore coarsening. Hardness increases with sintering temperature but has not reached the optimum value because of porosity and microstructure distribution. The results show that the combination of binder content and sintering temperature strongly determines the final properties of the material, with optimum conditions achieved at specific parameters that balance densification and microstructural stability.