首页> 外文期刊>Journal of King Saud University: Physics and Mathematics >Optimization of material removal rate during electrical discharge machining of cryo-treated NiTi alloys using Taguchi’s method
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Optimization of material removal rate during electrical discharge machining of cryo-treated NiTi alloys using Taguchi’s method

机译:使用Taguchi方法优化低温处理的NiTi合金放电加工过程中的材料去除率

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To withstand in global manufacturing market it is necessary to acquire new technology for producing new products. To achieve this advanced material plays an important role. NiTi alloy is one such class of advanced material which has unique properties such as biocompatibility, high strength, high corrosion resistance, shape memory effect etc. Due to such property these alloys have wide application in the field of defence, aerospace, and medicine. As these applications required high accuracy, precision and high strength of NiTi these are difficult to machine by conventional machining processes. Hence to machine this advanced material non-conventional machining processes i.e. electric discharge machining is employed. However EDM has a wide range of process parameter and the aim of EDM users and manufacturers is to achieve optimal performance of EDM. In view of this objective the present study focuses on optimization of electric discharge machining process parameter for maximization of material removal rate while machining of NiTi alloy. In the present study gap current, pulse on time, pulse off time, workpiece electrical conductivity, and tool conductivity were considered as process variables. Experiments were carried out as per Taguchi’s L 36 orthogonal array. Based on the analysis it was found that work electrical conductivity, gap current and pulse on time are the significant parameters that affect the material removal rate. The optimized material removal rate obtained was 7.0806mm 3 /min based on optimal setting of input parameter.
机译:为了承受全球制造业市场,必须获得用于生产新产品的新技术。为达到这种先进的材料起着重要的作用。 NiTi合金就是这类高级材料之一,具有独特的特性,如生物相容性,高强度,高耐腐蚀性,形状记忆效应等。由于这些特性,这些合金在国防,航空航天和医学领域具有广泛的应用。由于这些应用需要高精度,高精度和高强度的镍钛合金,因此很难通过常规加工工艺进行加工。因此,为了加工这种高级材料,采用了非常规的加工方法,即放电加工。然而,EDM具有广泛的工艺参数,而EDM用户和制造商的目标是实现EDM的最佳性能。鉴于此目标,本研究集中于优化电火花加工工艺参数,以在加工NiTi合金时最大程度地提高材料去除率。在本研究中,间隙电流,脉冲接通时间,脉冲断开时间,工件电导率和工具电导率被视为过程变量。实验是根据Taguchi的L 36正交阵列进行的。根据分析发现,工作电导率,间隙电流和脉冲导通时间是影响材料去除率的重要参数。根据输入参数的最佳设置,获得的最佳材料去除速率为7.0806mm 3 / min。

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