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Optimization the Machining Parameters of Electro Chemical Discharge Machining of NiTi Shape Memory Alloys

机译:优化Niti形状记忆合金电化学放电加工的加工参数

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摘要

The electrochemical discharge machining (ECDM) is a combination effect of electrochemical machining in which metal is removed through the electrochemical process and electrical discharge machining in which metal is removed by rapid current discharges between two electrodes which are separated by a dielectric liquid and subject to an electric voltage. Difficulty of machining nickel titanium alloys by conventional methods such as; the significant tool wear, the need of highly experienced operators, and an excessive degradation in the material performance due to the high thermal and mechanical effects of these methods. For these, reasons non-conventional methods such as electrical discharge machining and electro chemical machining are often used to fabricate NiTi alloys with better machining results. The experiments were conducted with various conditions of voltage (50,60,70 and 80)V, dielectric solution concentration (30 and 40% of NaOH) and nanoparticles silver, and copper content (0.5% Cu, 0.5% Ag, 0.5% Cu and Ag) in the (55% Ni-45%Ti) alloy samples. The machining experiments were designed according to Taguchi's design of experiments (L32). Grey relational analysis was used to optimize the responses of the ECDM process. Material removal rate (MRR), tool wear rate (TWR), and surface roughness (Ra) represent the response parameters for machining of the alloy samples prepared by the powder metallurgy route. To achieve the objectives of this research work MiniTab 17 software was employed. The optimal conditions were: voltage of 50V, solution concentration of 40% and the sample (NiTi+0.5%Cu+0.5%Ag) have the highest effect on machining characteristics with MRR value of 0.04991mg/sec, tool wear rate value of 0.00125mg/sec, and surface roughness of 0.0117μm.
机译:电化学放电加工(ECDM)是电化学加工的组合效果,其中通过电化学工艺除去金属和电放电加工,其中通过通过介电液体分离的两个电极之间的快速电流排出金属并受到介电液体的电极排出的电解加工。电压。通过常规方法加工镍钛合金的难度;显着的工具磨损,需要高度经验丰富的操作员,以及由于这些方法的高热和机械效果,材料性能过度降解。为此,由于电气放电加工和电化学加工等非传统方法的原因通常用于制造具有更好加工结果的Niti合金。通过各种电压(50,60,70和80)V,介电溶液浓度(NaOH)和纳米颗粒银的各种条件进行实验,铜含量(0.5%Cu,0.5%Ag,0.5%Cu和Ag)在(55%Ni-45%Ti)合金样品中。根据Taguchi的实验设计(L32)设计加工实验。灰色关系分析用于优化ECDM过程的响应。材料去除率(MRR),工具磨损率(TWR)和表面粗糙度(RA)代表了用粉末冶金途径制备的合金样品加工的响应参数。为了实现这项研究工作,Minitab 17软件就业。最佳条件是:电压为50V,溶液浓度为40%,样品(Niti + 0.5%Cu + 0.5%Ag)对加工特性的效果最高,MRR值为0.04991mg / sec,工具磨损率值为0.00125 Mg / sec,表面粗糙度为0.0117μm。

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