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Attaining the Steady State of the Nitriding Potential after a Change of NEB Atmosphere Flow Rate during the Gas Nitriding Process

机译:在气体氮化过程中改变NEB气氛流速后,达到氮化潜力的稳定状态

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In single and multi-stage nitriding processes, each stage is characterized by the following parameters: temperature and time, type and composition of incoming atmosphere, as well as the set value of the nitriding potential. In the case of an atmosphere composed of raw ammonia and dissociated ammonia (NH_3 -NH_(3diss)), the set value of the nitriding potential can be achieved by a change of the incoming atmosphere make-up, while in the case of atmospheres comprising NH_3 and NH_3 -N_2 - by a change of the atmosphere flow rate. The time needed to reach a stabilized state, after the initiation of a change in the atmosphere gas mix can be assessed relatively easily. The problem is much more complex if we want to predict the time of reaching a new stabilized state following a change in atmosphere flow rate. The time of reaching stabilized state is, in this case, a complex function of the flow rate of the atmosphere which forces the potential change, and of temperature. This problem, in the case of the NH_3 type atmosphere, is the subject of investigation in this work. Factors are discussed, affecting the rate at which stabilized state is reached by the system after the introduction of a disturbance, necessary to attain the required nitriding potential.
机译:在单级和多级氮化过程中,每个阶段的特征在于以下参数:进入气氛的温度和时间,类型和组成,以及氮化电位的设定值。在由生氨和离解氨(NH_3-NH_(3DISS))组成的气氛的情况下,通过改变进入的气氛化妆,可以实现氮化电位的设定值,而在包含的大气中NH_3和NH_3 -N_2 - 通过变化气氛流速。达到稳定状态所需的时间可以相对容易地评估大气气体混合物的变化之后。如果我们希望在大气流量变化之后预测到达新的稳定状态的时间,问题是更复杂的。在这种情况下,达到稳定状态的时间是大气流速的复杂功能,其迫使电位变化和温度。在NH_3型气氛的情况下,这个问题是在这项工作中调查的主题。讨论了因素,影响系统在引入干扰后达到稳定状态的速率,以获得所需的氮化潜力。

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