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Microstructures and properties of Ti-Nb alloys produced by powder metallurgy

机译:粉末冶金生产Ti-Nb合金的组织与性能

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Ti-Nb alloys were prepared by powder metallurgy. Their microstructures are detected by the XRD diffraction and are observed using an optical microscope. The mechanical properties are tested using a dynamic mechanical analysis (DMA) Q800 from TA Instruments in single cantilever mode and using a 100 KN MTS testing machine with control software. It has been found that the sintered Ti-Nb alloys possess the stable α and β phases and the amount in β phase increases with increasing Nb content. The water quenched Ti-35.4Nb alloy contains α" and β_M. The as-sintered alloy has higher yield stress and storage modulus than the water quenched Ti-35.4Nb alloy, which is resulted from the α phase with high modulus in the as-sintered alloy. The ω phase can be precipitated from β_M when the water quenched Ti-35.4Nb alloy is aged at 300°C, causing the modulus to increase since ω phase has large modulus.
机译:通过粉末冶金制备Ti-NB合金。它们的微观结构由XRD衍射检测,并使用光学显微镜观察。使用单个悬臂模式的TA仪器的动态机械分析(DMA)Q800测试机械性能,并使用带有控制软件的100 kN MTS试验机。已经发现,烧结的Ti-Nb合金具有稳定的α和β相,并且β相的量随着Nb含量的增加而增加。水猝灭的Ti-35.4nb合金含有α“和β_m。烧结合金具有比水猝灭的Ti-35.4NB合金更高的屈服应力和储存量子,这是由α相位的α相 - 烧结合金。当水猝灭的Ti-35.4NB合金在300℃下,ω相可以从β_m沉淀,导致模量增加,因为ω相具有大的模量。

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