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首页> 外文期刊>Journal of Materials Science >Formation of TiN whiskers through carbothermal reduction of TiO2
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Formation of TiN whiskers through carbothermal reduction of TiO2

机译:碳热还原TiO2形成TiN晶须

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Formation of TiN whiskers through carbothermal reduction of TiO2 in nitrogen was studied. Effect of (i) addition of potassium (K2CO3) and nickel (NiCl2), (ii) reaction temperature on the formation of whiskers was studied. Addition of K2CO3 has strong influence on the formation whiskers. The yield of whisker was maximum at 920–1000°C. At higher temperatures, formation of particulates of TiN was the dominant process. Increase in K2CO3 concentration increased the formation of (i) whiskers at low temperatures 815°–920°C, (ii) particulates at high temperatures 1000°–1100°C. A vapor-liquid-solid growth mechanism of whisker formation was identified. K2CO3 has been identified as an essential constituent for the formation of a low melting liquid by reaction with TiO2 and NiCl2. Continuous supply of TiO, nitrogen and CO to this complex K-Ni-Ti liquid droplet lead to the precipitation of TiN whisker.
机译:研究了碳在氮气中热还原TiO2 形成TiN晶须的过程。研究了(i)添加钾(K2 CO3 )和镍(NiCl2 )的影响,(ii)反应温度对晶须形成的影响。 K2 CO3 的添加对晶须的形成有很大的影响。晶须的产量在920–1000°C时最高。在较高的温度下,形成TiN颗粒是主要过程。 K2 CO3 浓度的增加增加了(i)815-920°C低温下的晶须的形成,(ii)1000°-1100°C高温下的颗粒的形成。确定了晶须的汽-液-固生长机理。 K2 CO3 被确定为通过与TiO2 和NiCl2 反应形成低熔点液体的必要成分。向这种复杂的K-Ni-Ti液滴不断供应TiO,氮和CO会导致TiN晶须的沉淀。

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