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Predictive Model for Specific Energy Consumption in the Turning of AISI 316L Steel

机译:AISI 316L钢车削中比能耗的预测模型

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This article presents an approach for the simulation of machining operations through Artificial Intelligence, which guarantees an automatic learning of the distinctive features in the processes of metal cutting. In the research, an Artificial Neural Network was designed, which establishes the relationships between the parameters of cutting regime and the technological indexes of machining, based on the information generated in real experimentation. For the conception of suitable cutting strategies, the following magnitudes were considered for the input of the model: lubrication regime, cutting speed, feed rate and machining time; which determined the behavior of the cutting forces in the turning of the AISI 316L steel, in order to obtain the cutting powers that define the specific energy consumption. Several designs were considered according to the features of Multi-Layer Perceptron architecture and the selected model was evaluated according to the mean square error and the regression coefficient R~2, reflecting high precision in the approximation. The deviation for the error made in the estimation of the cutting force values represents approximately 2% of the average value. These results showed a good level of reliability in the prediction of energy consumption under various machining conditions, in order to adopt relevant saving measures.
机译:本文介绍了一种通过人工智能来模拟加工操作的方法,该方法可确保自动学习金属切削过程中的独特功能。在研究中,设计了一个人工神经网络,它基于真实实验中产生的信息,建立了切削方式参数与加工技术指标之间的关系。为了制定合适的切削策略,考虑了以下数值作为模型输入:润滑方式,切削速度,进给速度和加工时间;它确定了AISI 316L钢车削过程中切削力的行为,以便获得确定特定能耗的切削力。根据多层感知器体系结构的特点考虑了几种设计,并根据均方误差和回归系数R〜2对所选模型进行了评估,体现了近似的高精度。在估计切削力值时产生的误差的偏差约为平均值的2%。这些结果表明在预测各种加工条件下的能耗方面具有较高的可靠性,从而可以采取相关的节省措施。

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