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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 >The effect of ball milling on the mechanical properties of TiN consolidated by pulsed current activated sintering
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The effect of ball milling on the mechanical properties of TiN consolidated by pulsed current activated sintering

机译:球磨对脉冲电流激活烧结固结TiN力学性能的影响

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摘要

Commercial TiN powders were high-energy ball milled for various durations and consolidated without a binder using the pulsed current activated sintering method (PCAS). The effect of milling on the sintering behavior, crystallite size and mechanical properties of TiN compacts were evaluated. A dense TiN compact with a relative density of up to 99% could be readily obtained within 4 min. The ball milling effectively refined the crystallite structure of TiN powders and facilitated the subsequent densification. The sinter-onset temperature was reduced appreciably by the prior milling for 40 h from 1200 °C to 800 °C. Accordingly, the relative density of TiN compact increased as the milling time increases. The microhard-ness of sintered TiN was linearly proportional to the density. It is clearly demonstrated that a quick densification of TiN bulk materials to near the theoretical density could be obtained by the combination of PCAS and the preparatory high-energy ball milling process.
机译:将商用TiN粉末高能球磨不同的时间,并使用脉冲电流活化烧结法(PCAS)在没有粘合剂的情况下进行固结。评估了铣削对TiN压块的烧结行为,微晶尺寸和机械性能的影响。可以在4分钟内轻松获得相对密度高达99%的致密TiN压块。球磨有效地细化了TiN粉末的微晶结构,并促进了随后的致密化。通过预先研磨40 h从1200°C到800°C,烧结开始温度显着降低。因此,TiN压块的相对密度随着研磨时间的增加而增加。烧结TiN的显微硬度与密度成线性比例关系。清楚地表明,通过PCAS和预备的高能球磨工艺相结合,可以将TiN块状材料快速致密化至接近理论密度。

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