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The Application of Acoustic Emission and Artificial Neural Networks in an Analysis of Kinetics in the Phase Transformation of Tool Steel During Austempering

机译:声发射和人工神经网络在奥氏体回火过程中工具钢相变动力学分析中的应用

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During the course of the study it involved tool steel C105U was used. The steel was austempered at temperatures of 130°C, 160°C and 180°C respectively. Methods of acoustic emission (AE) were used to investigate the resulting effects associated with transformations and a large number of AE events were registered. Neural networks were applied to analyse these phenomena. In the tested signal, three groups of events were identified of: high, medium and low energy. The average spectral characteristics enabled the power of the signal spectrum to be determined. After completing the process, the results were compiled in the form of diagrams of the relationship of the AE incidence frequency as a function of time. Based on the results, it was found that in the austempering of tool steel, in the first stage of transformation midrib morphology is formed. Midrib is a twinned thin plate martensite. In the 2nd stage of transformation, the intensity of the generation of medium energy events indicates the occurrence of bainite initialised by martensite. The obtained graphic of AE characteristics of tool steel austempering allow conclusions to be drawn about the kinetics and the mechanism of this transformation.
机译:在研究过程中,使用了工具钢C105U。分别在130℃,160℃和180℃的温度下对钢进行回火。声发射(AE)方法用于研究与变换相关的结果,并记录了大量AE事件。应用神经网络来分析这些现象。在测试信号中,确定了三组事件:高,中和低能量。平均频谱特性使得能够确定信号频谱的功率。完成此过程后,结果以AE入射频率与时间的关系图的形式进行编译。根据该结果发现,在工具钢的奥氏体回火中,在转变的第一阶段形成了中肋形态。中肋是孪晶薄板马氏体。在转变的第二阶段,中等能量事件的发生强度表明马氏体引发贝氏体的发生。所获得的工具钢奥氏体回火的AE特性图可以得出关于这种转变的动力学和机理的结论。

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