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Dynamics of Thermal Field and Powder Sublimation in an Inductively Heated AlN Bulk Crystal Growth Process

机译:电感加热ALN散装晶体生长过程中热场和粉末升华动态

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In this paper, an integrated model considering induction heating, transient heat transfer and crystal growth has been developed to study dynamic response of temperature and powder sublimation in an aluminum nitride (AlN) growth system. The electromagnetic field and induction heat generation are calculated by the Maxwell equations. Transient temperature distribution in the growth chamber is simulated by energy equation accounting for conduction/radiation within and between various components. In order to provide proper temperature control during sublimation growth, dynamic responses of temperature and temperature difference of the bottom and top external surfaces of the growth crucible to power variation and coil position movement are simulated. Finally the crystal and powder shapes as a function of time are predicted and compared with dynamic experimental observation.
机译:在本文中,已经开发了考虑感应加热,瞬态传热和晶体生长的集成模型,以研究氮化铝(ALN)生长系统中温度和粉末升华的动态响应。通过麦克斯韦方程计算电磁场和感应发热。通过能量方程算用于传导/辐射在各种部件内和之间的能量方程来模拟生长室中的瞬态温度分布。为了在升华期间提供适当的温度控制,模拟了坩埚坩埚的底部和顶部外表面的温度和温度差的动力响应和线圈位置运动。最后,将晶体和粉末形状作为时间的函数预测,与动态实验观察相比。

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