Maulana, Muhammad Ilham and Syahid, Adi Noer and Elvira, Bunga Rani and Erryani, Aprilia and Thaha, Yudi Nugraha and Rokhmanto, Fendy and Mori, Manami and Yamanaka, Kenta and Korda, Akhmad Ardian and Kartika, Ika and Setyawan, Albertus Deny Heri (2024) Effect of boron microalloying on the microstructure, mechanical, and corrosion properties of as-cast biomedical Co–Cr–W–Ni-based alloys. Journal of materials research/Pratt's guide to venture capital sources, 39 (16). pp. 2272-2285. ISSN 0884-1616, 0884-2914, 1091-8876, 1092-8928, 2044-5326
Full text not available from this repository. (Request a copy)Abstract
Co–Cr–W–Ni–Mn–B alloys, potentially applicable for implant materials, with boron contents of 0, 0.01, and 0.05 wt% were prepared by arc melting in an argon atmosphere. The influence of B content on the as-cast microstructure, mechanical, and corrosion properties was investigated. The as-cast state revealed dendritic structure, with the length of dendritic arm-spacing decreasing with increasing boron contents. The addition of boron led to the emergence of M5B3-type precipitates at the interdendritic boundaries within the matrix, which consisted of the γ and ε phases. The alloy with 0.01 wt% B exhibited increased ultimate-tensile-strength and plastic elongation of 17% and 36% higher than those of the boron-free alloy, respectively. The corrosion rate of the Co–Cr–W–Ni–Mn alloy in Hanks’ solution has dropped drastically by 850% with a minor B addition of 0.05 wt%. The improved mechanical and corrosion properties were attributed to the refined dendritic structure and formation of boride (M5B3-type) precipitates.
| Item Type: | Article |
|---|---|
| Subjects: | Materials Sciences Biomedical Technology & Human Factors Engineering |
| Depositing User: | Defryan Aprisandani |
| Date Deposited: | 07 Sep 2026 07:45 |
| Last Modified: | 07 Sep 2026 07:45 |
| URI: | https://karya.brin.go.id/id/eprint/60185 |


Dimensions
Dimensions