The study aims to address the problem of producing low-cost and high-quality metallic powderfrom Ti-6Al-4V alloy with morphological characteristics and particle size distribution thatmeet the requirements of additive manufacturing technologies, without the need for additionalprocessing. As a solution, an electrical discharge machining (EDM) device based on IGBT andFET transistors was utilized. The resulting Ti-6Al-4V powder particles were analyzed using alaser particle size analyzer and ImageJ software. According to the analysis results 77.1% of theparticles fall within the 10–40 μm range with a narrow particle size distribution, and the sphericitycoefficient is 0.867, indicating an ellipsoidal or spherical particle shape. The results ofapplying the EDM method, which enables the production of microparticles while maintainingsize, sphericity, and distribution, demonstrate the efficiency and broad applicability of thepowder in additive manufacturing technologies.
| Mualliflar | Гоипов, Б.А., Тулаганов, С.А., Зарипов, А.А. |
|---|---|
| Jurnal | O‘zbekiston fizika jurnali |
| Nashr sanasi | 2026-02-18 |
| Jild | 27 |
| Son | 4 |
| Til | Rus |
| DOI | 10.52304/.v27i4.619 |
DOI: 10.52304/.v27i4.619 · Maqolaning asl sahifasi
разряды в электролитах, генератор на основе IGBT, порошок Ti-6Al-4V, дисперсность, форма микрочастиц, discharges in electrolites, IGBT-based generator, Ti-6Al-4V powder, particle size distribution, microparticle morphology
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