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Machinability study on stainless steel and optimum setting of cutting parameters in turning process using Taguchi design of experiments

机译:Taguchi实验设计研究不锈钢的可加工性和车削过程中切削参数的最佳设置

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摘要

Goal of the metal cutting industries is to manufacture high quality products in short time. Surface quality is one of the most specified customer requirements in machining products. Surface quality of roughness is critical to the functional ability of machined components. Austenitic stainless steels (A1S1 316) are generally regarded as more difficult to machine material due to their high strength, ductility and high work hardening tendency. Surface roughness (SR) is a vital role requirement in determining the surface quality of the product. The minimisation of SR is essential for the achievement of high quality. In this paper is to analyse the SR produced by CNC turning process on AIS1 316 by different cases of coated cutting tool used at dry conditions. Multi-layered coated with TiCN+Al_2O_3 for first case and single-layered coated with (Ti, A1)N for second case. Experiments were carried out by using Taguchi's L_(27) orthogonal array. The effect of cutting parameters on SR was evaluated and optimum cutting conditions for minimising the SR was determined. Analysis of variance (ANOVA) was used for identifying the significant parameters affecting the responses.
机译:金属切割行业的目标是在短时间内生产出高质量的产品。表面质量是加工产品中最明确的客户要求之一。粗糙度的表面质量对于机加工部件的功能至关重要。由于奥氏体不锈钢(A1S1 316)具有高强度,高延展性和较高的加工硬化趋势,因此通常被认为更难加工。表面粗糙度(SR)是确定产品表面质量的至关重要的要求。 SR的最小化对于实现高质量至关重要。本文旨在分析在干燥条件下使用不同情况的带涂层切削刀具在AIS1 316上进行CNC车削加工产生的SR。对于第一种情况,多层涂有TiCN + Al_2O_3,对于第二种情况,单层涂有(Ti,Al)N。使用田口氏L_(27)正交阵列进行实验。评估切削参数对SR的影响,并确定使SR最小化的最佳切削条件。方差分析(ANOVA)用于确定影响响应的重要参数。

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