首页> 外文期刊>Journal of Materials Engineering and Performance >Material Removal Rate, Kerf, and Surface Roughness of Tungsten Carbide Machined with Wire Electrical Discharge Machining
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Material Removal Rate, Kerf, and Surface Roughness of Tungsten Carbide Machined with Wire Electrical Discharge Machining

机译:电火花线切割加工的碳化钨的材料去除率,切缝和表面粗糙度

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摘要

In this article, the effects of varying seven different machining parameters in addition to varying the material thickness on the machining responses such as material removal rate, kerf, and surface roughness of tungsten carbide samples machined by wire electrical discharge machining (WEDM) were investigated. The design of experiments was based on a Taguchi orthogonal design with 8 control factors with three levels each, requiring a set of 27 experiments that were repeated three times. ANOVA was carried out after obtaining the responses to determine the significant factors. The work piece thickness was expected to have a major effect on the material removal rate but showed to be significant in the case of surface roughness only. Finally, optimization of the machining responses was carried out and models for the material removal rate, kerf, and surface roughness were created. The models were validated through confirmation experiments that showed significant improvements in machining performance for all investigated machining outcomes.
机译:在本文中,除了改变材料厚度之外,还研究了改变七个不同的加工参数对诸如电火花加工(WEDM)加工的碳化钨样品的材料去除率,切缝和表面粗糙度等加工响应的影响。实验的设计基于Taguchi正交设计,该设计具有8个控制因子,每个控制因子三个级别,需要一组27个实验,重复3次。获得响应后进行方差分析以确定重要因素。预期工件的厚度对材料去除率有主要影响,但仅在表面粗糙度的情况下显示出显着的影响。最后,对加工响应进行了优化,并创建了材料去除率,切缝和表面粗糙度的模型。通过确认实验对模型进行了验证,该实验显示了所有调查的加工结果均显着改善了加工性能。

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