首页> 外文会议>IEEE Interantional Conference on Industrial Technology >A NEW NONDESTRUCTIVE TEST TECHNIQUE FOR PREDICTING THE TEMPER EMBRITTLEMENT OF TURBINE ROTOR STEEL WITH GENETIC PROGRAMMING
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A NEW NONDESTRUCTIVE TEST TECHNIQUE FOR PREDICTING THE TEMPER EMBRITTLEMENT OF TURBINE ROTOR STEEL WITH GENETIC PROGRAMMING

机译:一种新的非破坏性测试技术,用于预测遗传编程的涡轮转子钢的回火脆化

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The genetic programming approach for predicting temper embrittlement of rotor steel (30Cr2MoV) is proposed. Two independent data sets are obtained experimentally: training data and verifying data. Peak current density of reactivation, temperature of electrolyte, the general chemical composition parameter (J-factor), chemical composition of Cr and S, hardness and the grain size parameter of the material are used as independent variables, while fracture appearance transition temperature as dependent variable. On the basis of training data, the best model was obtained by genetic programming, and the accuracy of it was verified with the verifying data. The prediction error of the model is within the scatter of +-20 deg C. The results suggest that, the prediction model obtained by genetic programming is feasible and effective.
机译:提出了提出用于预测转子钢(30Cr2mov)的燃气脆化的遗传编程方法。通过实验获得两个独立的数据集:培训数据和验证数据。峰值电流浓度重新激活,电解质温度,一般化学成分参数(J-infig),Cr和S的化学组成,材料的硬度和晶粒尺寸参数用作独立变量,而骨折外观过渡温度随所依赖的多变的。在培训数据的基础上,最好的模型是通过遗传编程获得的,并且通过验证数据验证了它的准确性。该模型的预测误差在+ -20℃的散射内。结果表明,通过遗传编程获得的预测模型是可行和有效的。

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