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The nitrogen effect on the oxidation behaviour of Ti6242S titanium-based alloy: contribution of atom probe tomography

机译:Ti6242S钛基合金氧化行为的氮气作用:原子探测断层扫描的贡献

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At high temperatures under oxidizing environments, titanium-based alloys form an oxide scale and dissolve large amount of oxygen in their metallic matrix. Oxygen dissolution is a cause of embrittlement. Nitrogen is a secondary oxidant, which also dissolves in titanium during oxidation in air. Oxidation experiments of Ti-6Al-2Sn-4Zr-2Mo-0.1Si titanium-based alloy at 650 °C for 1000 h in synthetic air (20%O2-80%N2) and in a mixture of 20%O2-80%Ar, showed that nitrogen reduces both oxide scale growth and oxygen dissolution. Atom probe tomography revealed that nitrogen effect is due to the formation of an interfacial layer of nitride Ti2N but also to the formation of a nitrogen rich a-Ti-based solid solution, which both act as diffusion barriers for oxygen because of their low oxygen solubility.
机译:在氧化环境下的高温下,钛基合金形成氧化物尺度并在其金属基质中溶解大量的氧气。 氧溶解是脆化的原因。 氮是一种二次氧化剂,其在空气中氧化过程中也溶解在钛中。 Ti-6Al-2Sn-4zR-2MO-0.1SI钛基合金在650℃下氧化实验,在合成空气中1000小时(20%O 2-80%N 2),并以20%O 2 -80%Ar的混合物 据表明,氮气降低了氧化物尺度生长和氧溶解。 原子探测断层扫描显示,氮效应是由于形成氮化物Ti2N的界面层,而且是由于其低氧溶解度而形成富含富氮A-Ti的固体溶液。 。

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