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Optimization of surface roughness in turning alloy steel by using Taguchi method

机译:Taguchi法优化车削合金钢的表面粗糙度

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The surface quality of the machined parts is one of the most important product quality characteristics and one of the most frequent customer requirements. In this study the Taguchi robust parameter design for modeling and optimization of surface roughness in dry single-point turning of cold rolled alloy steel 42CrMo4/AISI 4140 using TiN-coated tungsten carbide inserts was presented. Three cutting parameters, the cutting speed (80, 110, 140 m/min), the feed rate (0.071, 0.196, 0.321 mm/rev), and the depth of cut (0.5, 1.25, 2 mm), were used in the experiment. Each of the other parameters was taken as constant. The average surface roughness () was chosen as a measure of surface quality. The experiment was designed and carried out on the basis of standard L27Taguchi orthogonal array. The data set from the experiment was employed for conducting the optimization procedures, according to the principles of the Taguchi method. The results of calculations were in good agreement with the experimental data. A certain discrepancy between the experimental results and calculations could be interpreted as the presence of measurement errors, manyirregularities and deficiencies in the turning process, as well as environmental effects.The results presented in this work confirm the effectiveness of Taguchi’s technique in optimization of cutting processes.
机译:加工零件的表面质量是最重要的产品质量特征之一,也是最常见的客户要求之一。在这项研究中,提出了Taguchi鲁棒参数设计,用于建模和优化使用TiN涂层碳化钨刀片对冷轧合金钢42CrMo4 / AISI 4140进行干式单点车削时的表面粗糙度。铣削中使用了三个切削参数:切削速度(80、110、140 m / min),进给速度(0.071、0.196、0.321 mm / rev)和切削深度(0.5、1.25、2 mm)。实验。其他参数均取为常数。选择平均表面粗糙度()作为表面质量的量度。实验是在标准的L27Taguchi正交阵列的基础上设计和进行的。根据田口方法的原理,将实验数据集用于进行优化程序。计算结果与实验数据吻合良好。实验结果与计算结果之间的一定差异可以解释为存在测量误差,车削过程中存在许多不规则性和缺陷以及环境影响。这项工作中提出的结果证实了Taguchi技术在优化车削效率方面的有效性。切割过程。

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