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首页> 外文期刊>Indian journal of engineering and materials sciences >Fuzzy logic and regression modelling of cutting parameters in drilling using vegetable based cutting fluids
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Fuzzy logic and regression modelling of cutting parameters in drilling using vegetable based cutting fluids

机译:蔬菜基切削液钻井过程中切削参数的模糊逻辑与回归建模

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摘要

In machining industry, cutting fluids have an important role due to their lubrication, cooling and chip removal functions. Using of cutting fluids can improve machining process efficiency, tool life, surface quality and it can reduce cutting forces and vibrations. However, health and environmental problems are encountered with the use of cutting fluids. Therefore, there has been a high demand for using environmentally friendly cutting fluids such as vegetable based cutting fluids in order to diminish these harmful effects. For this purpose, two different vegetable based cutting fluids are used to improve machining performance. This study focuses on prediction of thrust force and surface roughness with vegetable based cutting fluids (VBCFs) using fuzzy logic and regression. The drilling experiments are conducted according to Taguchi's L9 orthogonal array, Thrust force and surface roughness during drilling of AISI 304 with HSS-E tool are measured. Spindle speed, feed rate and drilling depth are considered as machining parameters. A model depended on fuzzy logic approach is established and the results obtained from fuzzy logic are compared with the results based on regression and experiment. Effectiveness of fuzzy logic and regression models has been determined by analyzing correlation coefficient and by comparing experimental results. Fuzzy logic models give closer values to experimental measured values than regression models. It has been concluded that fuzzy rule based modelling can be used to predict the thrust force and surface roughness successfully.
机译:在机械加工行业中,切削液由于具有润滑,冷却和排屑功能,因此具有重要作用。使用切削液可以提高加工效率,刀具寿命,表面质量,并且可以减少切削力和振动。但是,使用切削液会遇到健康和环境问题。因此,为了减少这些有害影响,迫切需要使用环保的切削液,例如基于蔬菜的切削液。为此,使用两种不同的基于蔬菜的切削液来提高加工性能。这项研究的重点是使用基于模糊逻辑和回归的蔬菜基切削液(VBCF)预测推力和表面粗糙度。根据田口的L9正交阵列进行钻孔实验,测量AISS 304用HSS-E工具钻孔时的推力和表面粗糙度。主轴转速,进给速度和钻孔深度被视为加工参数。建立了一个基于模糊逻辑方法的模型,并将基于模糊逻辑的结果与基于回归和实验的结果进行比较。通过分析相关系数并比较实验结果,确定了模糊逻辑和回归模型的有效性。与回归模型相比,模糊逻辑模型更接近实验测量值。已经得出结论,基于模糊规则的建模可以成功地预测推力和表面粗糙度。

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