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HOW DOES NIOBIUM IMPROVE THE OXIDATION RESISTANCE OF COMMERCIALLY PURE TITANIUM?

机译:铌如何改善商业上纯钛的抗氧化性?

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The application of titanium alloys is limited to 550°C due to their poor oxidation resistance. It is known that the addition of niobium decelerates the oxidation of titanium alloys whereas elements like vanadium do not improve titanium's oxidation resistance. The underlying mechanisms are not yet well understood. In the present study, different binary titanium-niobium and titanium-vanadium alloys as well as commercially pure titanium were investigated. Oxidation experiments were carried out at 800°C up to 288 hours followed by metallographic analyses to study the oxide layer morphology as well as the microstructure at the interface. Energy-dispersive X-ray spectroscopy mappings were used to identify possible changes in the distribution of the alloying elements. In addition, micro-focused hard X-ray experiments were performed to layer-wise analyse the phase composition in selected samples. As expected, the niobium containing alloys show a better oxidation performance compared to commercially pure titanium and the titanium-vanadium alloys. The oxide layer consisted of TiO2 and Ti2O3. Depending of the niobium content, a niobium-rich layer developed below the metal-oxide-interface minimising oxygen diffusion into the titanium matrix. Based on these results, the minimal niobium content needed for improved oxidation resistance was identified so that alloys of technical relevance can now be developed.
机译:由于其抗氧化性耐受性,钛合金的施加限于550℃。众所周知,添加铌减少钛合金的氧化,而钒等元素不会改善钛的抗氧化性。潜在的机制尚不清楚。在本研究中,研究了不同的二元钛 - 铌和钛 - 钒合金以及商业纯钛。氧化实验在800℃下进行,高达288小时,然后进行金相分析,以研究氧化物层形态以及界面处的微观结构。能量分散X射线光谱映射映射用于识别合金元素分布的可能变化。另外,进行微聚焦的硬X射线实验,对层面进行分析选定样品中的相组合物。与商业上纯钛和钛 - 钒合金相比,含铌合金的铌合金显示出更好的氧化性能。氧化物层由TiO 2和Ti2O3组成。取决于铌含量,富含铌的层,在金属氧化物界面下方形成最小化氧气扩散到钛基质中。基于这些结果,确定了改善抗氧化性所需的最小铌含量,以便现在可以开发技术相关性的合金。

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