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首页> 外文期刊>International Journal of Manufacturing Research >Using of least square and fuzzy logic methods to estimate the cutting forces for a new tool in machining of SAE 4140
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Using of least square and fuzzy logic methods to estimate the cutting forces for a new tool in machining of SAE 4140

机译:使用最小二乘和模糊逻辑方法来估计SAE 4140加工中的新工具的切割力

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摘要

In this paper, analytical-empirical and fuzzy logic-based models were created to predict the cutting forces in turning process for a new tool. A dynamometer that measure static cutting forces was used for measuring the forces. AISI 4140 steel was used as the work piece material for conducting the experiments due to its most common applications in machining process industry. Cutting force, thrust force and radial force were measured for three combinations of cutting speeds (V), cutting feeds (f) and cutting depths (d). Full factorial method was used to design the experiments. For developing the analytical model, the least square (LS) method was used to estimate the model constants. Experimental results were compared with the predicted results for both of the developed models. The comparing results show the efficiency of the both developed models. However, the results confirm that the accuracy of the fuzzy model is much higher than the analytical model in prediction of the cutting forces.
机译:在本文中,创建了分析实证和模糊逻辑的模型,以预测新工具的转动过程中的切割力。测量静电切割力的测功机用于测量力。 AISI 4140钢用作工件材料,用于进行实验,因为其在加工过程行业中最常见的应用。针对三种切割速度(V),切割饲料(F)和切割深度(D)的三种组合测量切割力,推力和径向力。完整的因子方法用于设计实验。为了开发分析模型,使用最小二乘(LS)方法来估计模型常数。将实验结果与两个开发模型的预测结果进行了比较。比较结果显示了两种开发模型的效率。然而,结果证实模糊模型的准确性远高于切割力预测中的分析模型。

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