首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Application of fuzzy technique for order preference by similarity to ideal solution in computer numerical control end milling of in-situ Al-4.5%Cu-TiC metal matrix composite
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Application of fuzzy technique for order preference by similarity to ideal solution in computer numerical control end milling of in-situ Al-4.5%Cu-TiC metal matrix composite

机译:模糊技术通过类似于理想解的顺序偏好性在原位Al-4.5%Cu-TiC金属基复合材料数控铣削中的应用

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摘要

In the present investigation, an effort has been made to explore the outcome of cutting parameters (cutting speed, feed and depth of cut) on surface roughness parameters (Ra, Rz) and cutting force (Fc) using solid carbide end mill cutter. During the existing study, a novel fuzzy technique for order preference by similarity to ideal solution, grey relational and response surface analysis technique is utilized to find out the optimal settings of computer numerical control milling process parameters with an endeavour to improve the quality of the machined surface. Hence, generating optimum surface roughness values are essential to obtain high productivity in the manufacturing of different machined parts. In this article, the first motive is to investigate computer numerical control milling of Al-4.5%Cu-TiC metal matrix composite developed by in-situ technique using fuzzy technique for order preference by similarity to ideal solution and grey relational analysis to find out optimum cutting parameters. The second motive is to verify using response surface analysis mathematical model depending on cutting parameters of surface roughness and cutting force in milling. The potentiality of the developed model is proved by analysis of variance technique. The analysis of variance result shows that the depth of cut is the leading process parameter affecting the surface roughness and cutting force values.
机译:在本研究中,已努力探索使用整体硬质合金立铣刀的切削参数(切削速度,进给和切削深度)对表面粗糙度参数(Ra,Rz)和切削力(Fc)的结果。在现有的研究中,利用一种新颖的模糊技术,通过类似于理想解决方案的顺序偏好,灰色关联和响应面分析技术,来找出计算机数控铣削工艺参数的最佳设置,从而努力提高加工质量。表面。因此,产生最佳的表面粗糙度值对于在不同机加工零件的制造中获得高生产率至关重要。本文的首要目的是研究通过模糊技术优先选择与理想溶液相似的灰阶顺序进行原位技术开发的Al-4.5%Cu-TiC金属基复合材料的计算机数控铣削,以找出最佳的方法。切割参数。第二个动机是根据表面粗糙度的切削参数和铣削中的切削力,使用响应表面分析数学模型进行验证。通过方差分析证明了所开发模型的潜力。方差分析表明,切削深度是影响表面粗糙度和切削力值的主要工艺参数。

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