2020
DOI: 10.3390/ma13051229
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The Oxidation Resistance of Nb-Si-Based Alloys at Intermediate and High Temperatures

Abstract: The oxidation behavior of three Nb-Si-based alloys were evaluated at intermediate (800 °C) and high (1250 °C) temperatures for 100 h in air. At 800 °C, the Nb-24Ti-15Si-13Cr-2Al-2Hf (at. %) alloy suffered from catastrophic pest oxidation. This pest phenomenon was suppressed by the addition of Sn. However, Ta addition protected the Nb-Si-based alloys from pest oxidation for a short time. At 1250 °C, Sn could enhance the oxidation resistance of Nb-Si-based alloys due to the formation of a Sn-rich layer. In addit… Show more

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Cited by 9 publications
(1 citation statement)
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“…In addition, a large number of dense and solid oxide films will be formed on the surface of the alloy at high temperature, which will make the structure of the alloy (BCC1 + BCC2 + Laves phase) preserved, and this structure will hinder the diffusion of oxygen in the alloy. Therefore, compared with Nb alloy [109][110][111], Nb-Si-Al-Ti alloy [112][113][114], and Nb-Si-Mo alloy [115,116], NbCrMo 0.5 Ta 0.5 TiZr high-entropy alloy has better mechanical properties and high-temperature oxidation resistance.…”
Section: Oxidation Resistancementioning
confidence: 99%
“…In addition, a large number of dense and solid oxide films will be formed on the surface of the alloy at high temperature, which will make the structure of the alloy (BCC1 + BCC2 + Laves phase) preserved, and this structure will hinder the diffusion of oxygen in the alloy. Therefore, compared with Nb alloy [109][110][111], Nb-Si-Al-Ti alloy [112][113][114], and Nb-Si-Mo alloy [115,116], NbCrMo 0.5 Ta 0.5 TiZr high-entropy alloy has better mechanical properties and high-temperature oxidation resistance.…”
Section: Oxidation Resistancementioning
confidence: 99%