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Electrical discharge machining of siliconized silicon carbide using copper electrode

机译:使用铜电极对硅化碳化硅进行放电加工

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摘要

Silicon Carbide is the semiconductor material that becoming popular because of its special characteristic. But, its application is limited due to processing difficulty. Advance machining process is found to be the best and economic way to fabricate this material. However, certain parameters need to be controlled for controlling the accuracy and efficiency of the process. This study presents analysis of some parameters in EDM machining of this material. The Silicon Carbide used for the study is limited to Reaction Bonded Silicon Carbide (SiSiC). Several effects of parameter setting such as on-time (ON), discharge current (I), off-time (OFF) and polarity (Pol) on material removal rate (MRR), surface roughness (Ra), tool wear ratio (TWR), and surface roughness (Ra) is studied. The analysis was done using Design Expert Software by implementing design of experiment method. From this analysis, the significant effect(s) is determined. From that, the mathematical models that consist of only significant effect(s) are established. In order to ensure validity of the model, conformation run is done with three different parameters setup. Finally, the optimum setting to get maximum material removal rate, minimum tool wear ratio and minimum surface roughness is determined. Overall, the results show that the effects of pulse on-time and Polarity are dominant for all responses established
机译:碳化硅由于其特殊的特性而成为流行的半导体材料。但是,由于处理困难,其应用受到限制。发现先进的加工工艺是制造这种材料的最佳且经济的方式。但是,需要控制某些参数以控制过程的准确性和效率。这项研究提出了这种材料的电火花加工中一些参数的分析。研究中使用的碳化硅仅限于反应结合碳化硅(SiSiC)。参数设置的几种影响,例如导通时间(ON),放电电流(I),断开时间(OFF)和极性(Pol)对材料去除率(MRR),表面粗糙度(Ra),刀具磨损率(TWR)的影响),然后研究表面粗糙度(Ra)。通过设计实验方法,使用Design Expert软件进行了分析。通过该分析,确定显着效果。由此,建立了仅包含重要影响的数学模型。为了确保模型的有效性,使用三个不同的参数设置来进行构象运行。最后,确定获得最大材料去除率,最小刀具磨损率和最小表面粗糙度的最佳设置。总体而言,结果表明,对于所有已建立的响应,脉冲导通时间和极性的影响均占主导地位

著录项

  • 作者

    Sarabi Arash Mazaheri;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 en
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