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A Mechanically-Alloyed Amorphous 2Si-B-3C-N Ceramic with a Crystallization Temperature up to 1800 °C

机译:机械合金化的非晶态2Si-B-3C-N陶瓷,结晶温度高达1800°C

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A mixture of cubic silicon powder, hexagonal boron nitride powder and graphite powder was mechanically alloyed for 30 hrs under the protection of argon. The as-milled 2Si-B-3C-N composite powder was heated up to 1900 °C in nitrogen, with a heating rate of 25 °C/min and under a pressure of 80 MPa. XRD and HRTEM results show that the as-milled 2Si-B-3C-N composite powder has a well amorphous structure. Under the current hot-pressing circumstances, the amorphous ceramic starts to crystallize at a temperature between 1800 °C and 1900 °C. Once the temperature is higher than the crystallization temperature, small crystallites appear in the amorphous matrix with a great nucleation rate, but a small growth rate. Hot pressed at 1900 °C for 0 mins or 10 mins, the prepared 2Si-B-3C-N bulk ceramic has an average grain size of 8.7 nanometers and 22.3 nanometers, respectively. After an intensive literature search, we believe the present work is the first one to make clear that it is possible to use the mechanical alloying route to prepare amorphous Si-B-C-N ceramic with such a high crystallization temperature.
机译:在氩气保护下,将立方硅粉,六方氮化硼粉和石墨粉的混合物机械合金化30小时。将研磨后的2Si-B-3C-N复合粉末在氮气中以25°C / min的加热速率和80 MPa的压力加热至1900°C。 XRD和HRTEM结果表明,研磨后的2Si-B-3C-N复合粉末具有良好的非晶态结构。在当前的热压情况下,非晶陶瓷在1800°C至1900°C之间的温度下开始结晶。一旦温度高于结晶温度,则在无定形基体中出现小的微晶,其成核速率大,但生长速率小。制备的2Si-B-3C-N块状陶瓷在1900°C下热压0分钟或10分钟,平均晶粒尺寸分别为8.7纳米和22.3纳米。经过大量的文献搜索,我们认为目前的工作是第一个明确表明可以使用机械合金化途径制备具有如此高结晶温度的非晶Si-B-C-N陶瓷的工作。

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