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The Optimum Cutting Condition when High Speed Turning of Aluminum Alloy using Uncoated Carbide

机译:用未涂层碳化物高速转动铝合金的最佳切割条件

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Objective of study reported in this paper is finding the optimum cutting condition respected to surface roughness (Ra), flank wear (VB) and tool life (TL) when high speed turning of aluminum alloy using uncoated carbide. Turning test was carried out by full factorial design where cutting speed (v), feed (f) and depth of cut (a) were determined as the independent variables. The high level values were set as v 1250 m/min, f 0.15 mm/rev, a 1.2 mm and for the low level were v 1000 m/min, f 0.12 mm/rev, a 1 mm. By multiple-linear regression method, the data of response variables resulted from the testing was used to developed 3 (three) mathematical models of Ra, VB and TL. Those models, Φ(v, f, a), were then used as the fitness functions for finding the optimum cutting condition using Multi Objective Genetic Algorithm (MOGA) method. The results of study show that the optimum cutting condition for gaming the best roughness is at v 1000 m/min, f 0.12 mm/rev and a 1.2 mm. At that cutting condition, Ra and TL are recorded at 1.22 microns and 2.32 minutes, respectively.
机译:本文报告的研究目的是当使用未涂覆的碳化物的高速转动铝合金时,在铝合金高速转动时,在铝合金的高速转动时,研究了最佳的切割条件。通过完整的因子设计进行转动试验,其中切割速度(v),饲料(f)和切割深度(a)被确定为独立变量。将高电平值设定为V 1250 m / min,f 0.15 mm / ref,1.2 mm,低水平为v 1000 m / min,f 0.12 mm / rev,1 mm。通过多线性回归方法,由测试产生的响应变量的数据用于开发RA,VB和TL的3(三)数学模型。然后,使用多目标遗传算法(MOGA)方法来使用这些模型φ(V,F,A)作为用于找到最佳切割条件的适合功能。研究结果表明,游戏最佳切割条件最佳粗糙度为V 1000 m / min,f 0.12 mm / rev和1.2 mm。在该切割条件下,Ra和T1分别记录在1.22微米和2.32分钟。

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