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Effect of precipitation hardening on carbon nanotubereinforced Ti-6Al-4V matrix composites produced by powder metallurgy method

2026
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Danışman: Doç. Dr. İsmail Topcu

Özet (EN)

In this study, the effects of precipitation hardening heat treatment on the mechanical and electromagnetic properties of Ti-6Al-4V matrix carbon nanotube (KNT) reinforced composite materials produced by powder metallurgy were investigated. Composites containing three different KNT ratios (1%, 3%, and 5%) were sintered at 1275 °C for varying durations. The precipitation hardening process consisted of solution treatment at 950 °C for 1 hour followed by water çözeltiye alma, and yaşlandırma at 480 °C for 5 hours. Microhardness measurements revealed that the heat treatment increased the hardness of all specimens. After çözeltiye alma, all samples exhibited significant hardness improvement; however, following yaşlandırma, a slight decrease was observed in low KNT content samples (1% and 3%), while the high KNT content sample (5%) continued to show hardness increase. Electromagnetic performance was evaluated through shielding effectiveness (SE) and reflection loss (RL) measurements in the 0–4.4 GHz frequency range. The results indicated a decrease in SE and RL values for all specimens after precipitation hardening. This decrease can be attributed to the reduction in sample thickness from 5 mm to 3.5 mm, changes in matrix/interface interactions, and microstructural alterations affecting KNT distribution during yaşlandırma. The findings demonstrate that while KNT reinforcement and precipitation hardening enhance mechanical properties of Ti-6Al-4V composites, the heat treatment may reduce their electromagnetic shielding and absorption performance. These results provide important insights for material design in defense, aerospace, and electromagnetic protection applications.

Yazar

Dr. Berat Yılmaz

Bu Yayına Nasıl Atıf Yapılır

Berat Yılmaz (Master Thesis). Effect of precipitation hardening on carbon nanotubereinforced Ti-6Al-4V matrix composites produced by powder metallurgy method, 2026, Alanya Alaaddin Keykubat University.

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