首页> 外文期刊>Journal of Manufacturing and Materials Processing >Prediction and Optimization of Drilling Parameters in Drilling of AISI 304 and AISI 2205 Steels with PVD Monolayer and Multilayer Coated Drills
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Prediction and Optimization of Drilling Parameters in Drilling of AISI 304 and AISI 2205 Steels with PVD Monolayer and Multilayer Coated Drills

机译:PVD单层和多层涂层钻头对AISI 304和AISI 2205钢进行钻孔时的钻孔参数预测和优化

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Due to their high ductility, high durability, and excellent corrosion resistance, stainless steels are attractive materials for a variety of applications. However, high work hardening, low thermal conductivity, and high built-up edge (BUE) formation make these materials difficult to machine. Rapid tool wear and high cutting forces are the common problems encountered while machining these materials. In the present work, the application of Taguchi optimization methodology has been used to optimize the cutting parameters of the drilling process for machining two stainless steels: austenitic AISI 304 and duplex AISI 2205 under dry conditions. The machining parameters which were chosen to be evaluated in this study are the tool material, cutting speed, and feed rate, while, the response factors to be measured are the tool life (T), cutting force (Fc), and specific cutting energy (ks). Additionally, empirical models were created for predicting the T, Fc and ks using linear regression analysis. The results of this study show that AISI 2205 stainless steel has a shorter tool life, a higher cutting force, and a higher specific cutting energy than AISI 304 stainless steel. In addition, the Taguchi method determined that A3B1C1 and A3B3C1 (A3 = TiN-coated twist drill, B1 = 13 m/min, B3 = 34 m/min, C1 = 0.12 mm/rev) are the optimized combination of levels for the best tool life and the lowest cutting force, respectively. Meanwhile, the optimized combination of levels for all three control factors from the analysis, which provides the lowest specific cutting energy, was found to be A3B1C3 (A3 = TiN-coated twist drill, B1 = 13 m/min, C3 = 0.32 mm/rev) for both stainless steels.
机译:由于其高延展性,高耐用性和出色的耐腐蚀性,不锈钢是多种应用中有吸引力的材料。但是,高加工硬化,低导热率和高堆积边缘(BUE)形成使这些材料难以加工。快速的刀具磨损和高切削力是在加工这些材料时遇到的常见问题。在当前工作中,田口优化方法的应用已被用于优化在干燥条件下加工两种不锈钢(奥氏体AISI 304和双相AISI 2205)的钻孔工艺的切削参数。在本研究中选择要评估的加工参数是刀具材料,切削速度和进给速度,而要测量的响应因素是刀具寿命(T),切削力(Fc)和比切削能(ks)。此外,使用线性回归分析创建了用于预测T,Fc和ks的经验模型。这项研究的结果表明,与AISI 304不锈钢相比,AISI 2205不锈钢具有更短的刀具寿命,更高的切削力和更高的比切削能。此外,Taguchi方法确定A3B1C1和A3B3C1(A3 = TiN涂层麻花钻,B1 = 13 m / min,B3 = 34 m / min,C1 = 0.12 mm / rev)是最佳水平的最佳组合刀具寿命和最低切削力。同时,分析中所有三个控制因素的水平优化组合(提供最低的切割能量)为A3B1C3(A3 = TiN涂层麻花钻,B1 = 13 m / min,C3 = 0.32 mm / rev)两种不锈钢。

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