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Study on effect of tool electrodes on surface finish during electrical discharge machining of Nitinol

机译:镍钛烯醇电气放电加工刀具电极对表面光洁度的影响研究

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Electrical discharge machining (EDM) is a non-traditional machining process which is widely used in machining of difficult-to-machine materials. EDM process can produce complex and intrinsic shaped component made of difficult-to-machine materials, largely applied in aerospace, biomedical, die and mold making industries. To meet the required applications, the EDMed components need to possess high accuracy and excellent surface finish. In this work, EDM process is performed using Nitinol as work piece material and AlSiMg prepared by selective laser sintering (SLS) as tool electrode along with conventional copper and graphite electrodes. The SLS is a rapid prototyping (RP) method to produce complex metallic parts by additive manufacturing (AM) process. Experiments have been carried out varying different process parameters like open circuit voltage (V), discharge current (Ip), duty cycle (t), pulse-on-time (Ton) and tool material. The surface roughness parameter like average roughness (Ra), maximum height of the profile (Rt) and average height of the profile (Rz) are measured using surface roughness measuring instrument (Talysurf). To reduce the number of experiments, design of experiment (DOE) approach like Taguchi's L27 orthogonal array has been chosen. The surface properties of the EDM specimen are optimized by desirability function approach and the best parametric setting is reported for the EDM process. Type of tool happens to be the most significant parameter followed by interaction of tool type and duty cycle, duty cycle, discharge current and voltage. Better surface finish of EDMed specimen can be obtained with low value of voltage (V), discharge current (Ip), duty cycle (t) and pulse on time (Ton) along with the use of AlSiMg RP electrode.
机译:放电加工(EDM)是一种非传统的加工方法,该方法被广泛应用于难以加工的材料的机加工。电火花加工过程中可产生由难加工材料的复杂的和内在的成形部件,在航空航天,生物医学,模具和模具等工业大量应用。为了满足所需的应用程序,该EDMed部件需要具备高精确度和优良的表面光洁度。在这项工作中,使用镍钛诺作为工件材料进行电火花加工过程和AlSiMg制备通过选择性激光烧结(SLS)作为工具电极与传统的铜和石墨电极沿着。该SLS是产生复杂的金属部件通过添加制造(AM)处理的快速成型(RP)方法。实验已经进行了改变不同的工艺参数等的开路电压(V),放电电流(Ip),占空比(t)的,脉冲的导通时间(TON)和刀具材料。像平均粗糙度(Ra)的表面粗糙度参数,简档(RT)和平均高度轮廓(RZ)的最大高度是使用表面粗糙度测量仪(轮廓仪)进行测定。为了减少实验次数,像田口L27正交阵列实验(DOE)的方式设计已被选定。电火花加工样品的表面性质由可取函数方法优化和最佳参数设置被报告的EDM过程。工具的类型恰好是最显著参数,接着工具类型和占空比,占空比,放电电流和电压的相互作用。 EDMed试样的更好的表面光洁度可与电压(V)的低值,放电电流(Ip),占空比(T)获得,并在使用AlSiMg RP电极的沿着上时间(TON)脉冲。

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