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首页> 外文期刊>Bulletin of Materials Science >Microstructure and oxidation behaviour of TiAl(Nb)/Ti2AlC composites fabricated by mechanical alloying and hot pressing
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Microstructure and oxidation behaviour of TiAl(Nb)/Ti2AlC composites fabricated by mechanical alloying and hot pressing

机译:机械合金化和热压制备的TiAl(Nb)/ Ti2AlC复合材料的微观结构和氧化行为

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TiAl-based intermetallic matrix composites with dispersed Ti2AlC particles and different amounts of Nb were successfully synthesized by mechanical alloying and hot pressing. The phase evolution of Ti-48 at%. Al elemental powder mixture milled for different times with hexane as a process control agent was investigated. It was found that after milling for 25 h, a Ti(Al) solid solution was formed; also with increase in the milling time to 50 h, an amorphous phase was detected. Formation of a supersaturated Ti(Al) solid solution after 75 h milling was achieved by crystallization of amorphous phase. Addition of Nb to system also exhibited a supersaturated Ti(Al,Nb) solid solution after milling for 75 h, implying that the Al and Nb elements were dissolved in the Ti lattice in a non-equilibrium state. Annealing of 75 h milled powders resulted in the formation of equilibrium TiAl intermetallic with Ti2AlC phases that showed the carbon that originates from hexane, participated in the reaction to form Ti2AlC during heating. Consolidation of milled powder with different amounts of Nb was performed by hot pressing at 1000A degrees C for 1 h. Only the presence of gamma-TiAl and Ti2AlC was detected and no secondary phases were observed on the base of Nb. Displacement of gamma-TiAl peaks with Nb addition implied that the Nb element was dissolved into TiAl matrix in the form of solid solution, causing the lattice tetragonality of TiAl to increase slightly. The values for density and porosity of samples indicated that condition of hot pressing process with temperature and pressure was adequate to consolidate almost fully densified samples. The isothermal oxidation test was carried out at 1000A degrees C in air to assess the effect of Nb addition on the oxidation behaviour of TiAl/Ti2AlC composites. The oxidation resistance of composites was improved with the increase in the Nb content due to the suppression of TiO2 growth, the formation and stabilization of nitride in the oxide scale and better scale spallation resistance.
机译:通过机械合金化和热压成功地合成了具有分散的Ti2AlC颗粒和不同Nb含量的TiAl基金属间化合物。 Ti-48 at%的相变。研究了用己烷作为过程控制剂研磨不同时间的铝元素粉末混合物。发现研磨25小时后,形成了Ti(Al)固溶体。同样,随着研磨时间增加到50小时,检测到非晶相。研磨75小时后,通过非晶相的结晶形成了过饱和的Ti(Al)固溶体。研磨75 h后,向系统中添加Nb也显示出过饱和的Ti(Al,Nb)固溶体,这表明Al和Nb元素以非平衡状态溶解在Ti晶格中。 75 h研磨粉的退火导致形成了具有Ti2AlC相的平衡TiAl金属间化合物,这表明源自己烷的碳在加热过程中参与了反应,形成Ti2AlC。通过在1000A的温度下热压1小时,对具有不同Nb含量的研磨粉进行固结。仅检测到存在γ-TiAl和Ti2AlC,在Nb的基础上未观察到第二相。添加Nb导致的γ-TiAl峰位移表明Nb元素以固溶体形式溶解在TiAl基体中,导致TiAl的晶格四方性略有增加。样品的密度和孔隙率值表明热压过程的温度和压力条件足以固结几乎完全致密的样品。在空气中于1000A的温度下进行了等温氧化试验,以评估Nb添加对TiAl / Ti2AlC复合材料氧化行为的影响。随着Nb含量的增加,复合材料的抗氧化性得到了改善,这是由于TiO2的生长受到抑制,氮化物在氧化皮中的形成和稳定化以及更好的抗氧化皮剥落性。

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