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Experimental Investigations To Study Tool Wear During Turning Of Alumina Reinforced Aluminium Composite

机译:氧化铝增强铝复合材料转动过程中研究工具磨损的实验研究

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Metal matrix compositions (MMC) have become a leading materials and particles reinforced aluminum MMCs have received considerable attention due to their excellent mechanical properties like high hardness, high tensile strength etc. These materials difficult to machine because of high hardness and abrasive nature of reinforcing elements like alumina particles. In this study, homogenized (2%, 4%, and 6%) by weight of alumina aluminum metal matrix composite materials were fabricated and selected as workpiece for experimental investigations of tool wear, surface roughness and metal removal rate. The titanium nitride coated tungsten carbide tool and uncoated tungsten carbide tools were used at different cutting speeds (265,400,535 rpm), feed rate (0.29, 0.32, 0.35 mm/rev.), and depth of cut (1.0, 1.5, 2.0 mm). The microstructures and mechanical properties of produced composite specimens have been investigated. It has been observed that increase of reinforcement element produced better mechanical properties such as hardness and tensile strength. The turning experiments were planned by taguchi method. The obtained experimental data has been analyzed using signal to noise ratio and ANOVA. The main effects have been discussed and percentage contribution of various process parameters speed, feed, depth of cut and concentration effecting tool wear, surface roughness and metal removal rate have been determined.
机译:金属基质组合物(MMC)已经成为一个领先的材料和颗粒增强金属基复合材料的铝已受到相当关注,因为其优异的机械性能如高硬度,高的拉伸强度等,因为高硬度和增强元件的磨蚀性的这些材料难以加工像氧化铝颗粒。在本研究中,制造均质化(2%,4%和6%)的氧化铝铝金属基质复合材料,并选择工件,用于工具磨损,表面粗糙度和金属去除率的实验研究。氮化钛涂敷的碳化钨工具和未涂覆的碳化钨工具以不同的切割速度(265400535 RPM),进料速率(0.29,0.32 0.35毫米/转),以及切削深度(1.0,1.5,2.0mm)的使用。研究了所生产的复合标本的微观结构和力学性能。已经观察到,增强元件的增加产生了更好的机械性能,例如硬度和拉伸强度。通过Taguchi方法计划转弯实验。使用信号与噪声比和ANOVA分析所获得的实验数据。已经讨论了主要效果和各种工艺参数速度的百分比贡献,饲料,切割深度和浓度效应刀具磨损,表面粗糙度和金属去除率。

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