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Taguchi optimisation of Turning Inconel 600 under dry and MQL condition using uncoated Tool

机译:使用未涂层工具在干燥和MQL条件下的转向600的算筒优化

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Utilization of super alloys have been prominent in production now-a-days to achieve a superior qualified high strength of low weight products. Advance trends have been performed in order to understand the impact of lubricating and cooling effects while turning these hard to cut alloy steels which produces tremendous amount of heat while machining. Present paper deals with one of those hard-to-cut alloys, Inconel 600 one of the hot working capable nuclear alloy. Turning experiments was performed using an carbide tool insert with varying rake angles (-7, -5 and -3 degrees), speed (50, 75 and 100 mm/min) and feed rate (0.1,0.2 and 0.3 mm/rev). A total of 9 experiments were performed based on the DOE. Surface roughness was measured and comparison of surface roughness is done for both dry and MQL conditions. In order to evaluate the optimum turning condition Taguchi optimisation was employed. It was observed that for dry turning rake angle at -3 degrees, speed at 50m/min and feed at 0.1 mm/rev and rake angle at -3 degree, speed at 50 m/min and feed at 0.3 mm/rev for MQL turning was found to be optimum. A mathematical model for both the cases were also studied for turning operation.
机译:超级合金的利用在现在的生产中突出 - 达日,实现低重量产品的优质高强度。已经进行了推进趋势,以了解润滑和冷却效应的影响,同时转动这些难以切割合金钢,在加工时产生巨大的热量。本文涉及其中一个难以切割的合金,Inconel 600核对能干核合金之一。使用碳化物工具插入件(-7,-5和-3度),速度(50,75和100mm / min)和进料速率(0.1,0.2和0.3mm / Rev)进行转动实验。总基于DOE进行了9个实验。测量表面粗糙度并对干燥和MQL条件进行表面粗糙度的比较。为了评估最佳的转弯条件,使用Taguchi优化。被观察到,对于-3度的干燥转动角度,速度为50m / min,在-3度的0.1mm / rev和耙角以50 m / min的速度,进给0.3 mm / ex的速度,用于MQL转动0.3mm / ex被发现是最佳的。还研究了两种情况的数学模型,用于转动操作。

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