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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >In situ synthesis of Ti_2AlC-Al_2O_3/TiAl composite by vacuum sintering mechanically alloyed TiAl powder coated with CNTs
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In situ synthesis of Ti_2AlC-Al_2O_3/TiAl composite by vacuum sintering mechanically alloyed TiAl powder coated with CNTs

机译:通过真空烧结涂有碳纳米管的机械合金化TiAl粉末原位合成Ti_2AlC-Al_2O_3 / TiAl复合材料

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Bulk Ti_2AlC-Al_2O_3/TiAl composites were in situ synthesized by vacuum sintering mechanically alloyed Ti-50 at.% Al powders coated with carbon nanotubes (CNTs). The pre-alloyed Ti-50 at.% Al powder was obtained by ball milling Ti and Al powders. The multi-walled carbon nanotubes as the carbon resource were covered on the surface of the pre-alloyed powders by immersing them into a water solution containing the CNTs. A zwitterionic surfactant was used to enhance the dispersion of the CNTs on the powder surface. The samples were cold pressed and sintered in vacuum at temperatures from 950 to 1250 °C, respectively. The results show that the reaction of forming Ti_2AlC can be achieved below 950 °C, which is 150 °C lower than in the Ti-Al-TiC system and 250 °C lower than for the Ti-Al-C system due to the addition of CNTs. Additionally, the reinforcement of Al_2O_3 particles was introduced in situ in Ti_2AlC/TiAl by the drying process and subsequent sintering of the composite powders. Dense Ti_2AlC-Al_2O_3/TiAl composites were obtained by sintering at 1250 °C and exhibited a homogeneous distribution of Ti_2AlC, Al_2O_3 and precipitated Ti_3Al particles and a resulting high hardness.
机译:通过真空烧结涂覆有碳纳米管(CNT)的机械合金化的Ti-50 at。%Al粉原位合成块状Ti_2AlC-Al_2O_3 / TiAl复合材料。通过球磨Ti和Al粉获得预合金化的Ti-50 at。%Al粉。通过将多壁碳纳米管浸入含有CNT的水溶液中,将其作为碳源覆盖在预合金粉末的表面上。两性离子表面活性剂用于增强CNT在粉末表面的分散。将样品冷压并在真空中分别在950至1250°C的温度下烧结。结果表明,形成Ti_2AlC的反应可在低于950°C的温度下完成,这比添加Ti-Al-TiC的体系低150°C,比添加Ti-Al-C的体系低250°C的碳纳米管。另外,通过干燥过程和随后的复合粉末烧结,将Al_2O_3颗粒的增强物原位引入Ti_2AlC / TiAl中。通过在1250℃下烧结获得致密的Ti_2AlC-Al_2O_3 / TiAl复合材料,并表现出均匀的Ti_2AlC,Al_2O_3和析出的Ti_3Al颗粒分布,并具有较高的硬度。

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