首页> 外文会议>ASME international mechanical engineering congress and exposition >OPTIMIZATION OF MACHINING PARAMETERS DURING TURNING OF TUNGSTEN HEAVY ALLOYS USING TAGUCHI ANALYSIS
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OPTIMIZATION OF MACHINING PARAMETERS DURING TURNING OF TUNGSTEN HEAVY ALLOYS USING TAGUCHI ANALYSIS

机译:用Taguchi分析法优化钨合金车削时的加工参数。

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摘要

Tungsten heavy alloys (WHAs) are ideally suited to a wide range of density applications such as counterweights, inertial masses, radiation shielding, sporting goods and ordnance products. Manufacturing of these components essentially require machining to achieve desired finish, dimensions and tolerances However, machining of WHAs are extremely challenging because of higher values of elastic stiffness and hardness. Hence, there is a need to find the right combination of cutting parameters to carry out the machining operations efficiently. In the present work, turning tests are conducted on three different grades of WHAs, namely, 90WHA, 95WHA and 97WHA. Taguchi analysis is carried out to find out the most contributing factor as well as optimum cutting parameters that can give higher metal removal rate (MRR), lower surface roughness and lower cutting forces. It is observed that feed rate is the most prominent factor with percentage contribution varying in the range of 46-61%; whereas cutting speed has least effect on cutting forces, especially for 95WHA and 97WHA. Optimum values of forces, surface roughness and MRR and the corresponding machining parameters to be taken are presented. It is observed that 95W WHA has slightly better machinability as compared to other two grades since it gives highest MRR with lowest cutting forces and surface roughness values. The optimum machining parameter settings, so predicted, can be utilized to machine WHAs efficiently for manufacture of counter weights and inertial masses used in aerospace applications.
机译:钨重合金(WHA)非常适合各种密度应用,例如对重,惯性质量,辐射屏蔽,体育用品和军械产品。这些部件的制造本质上需要进行机械加工以获得所需的表面光洁度,尺寸和公差。但是,由于弹性刚度和硬度值较高,因此WHA的机械加工极具挑战性。因此,需要找到正确的切削参数组合以有效地进行机加工操作。在目前的工作中,对三种不同等级的WHA(即90WHA,95WHA和97WHA)进行了车削测试。 Taguchi分析的目的是找出最重要的因素以及最佳的切削参数,这些参数可以提供更高的金属去除率(MRR),更低的表面粗糙度和更低的切削力。观察到进料速率是最显着的因素,其贡献百分比在46-61%的范围内变化。而切削速度对切削力的影响最小,尤其是对于95WHA和97WHA。给出了力,表面粗糙度和MRR的最佳值以及要采用的相应加工参数。可以观察到,与其他两个等级相比,95W WHA的切削加工性略好,这是因为它具有最高的MRR,而切削力和表面粗糙度值却最低。如此预测的最佳加工参数设置可用于有效加工WHA,以制造用于航空航天应用的配重和惯性质量。

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