首页> 外文期刊>Journal of Intelligent Manufacturing >Tool electrode geometry and process parameters influence on different feature geometry and surface quality in electrical discharge machining of AISI H13 steel
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Tool electrode geometry and process parameters influence on different feature geometry and surface quality in electrical discharge machining of AISI H13 steel

机译:工具电极的几何形状和工艺参数对AISI H13钢放电加工中不同特征的几何形状和表面质量的影响

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摘要

Electro discharge machining process (EDM) is frequently used when machining of high complex and accurate features is required. Indeed, it is specially recommended for hard materials and micro-machined features. However, due to the process nature, there is still incomprehension on process parameters influence at the final quality features, ending up by lower productivity and quality ratios. On the other hand, fashioning and re-shaping of required electrodes for each feature are time consuming phases and the number of stored electrodes is very high. Therefore, in order to increase the global EDM process productivity, quality and flexibility, standardized simple electrode shapes, capable to machine different features, must be found. This study presents the influence of the main EDM process parameters and different tool geometries on basic process performance measures. A set of designed experiments with varying parameters such as pulsed current, open voltage, pulse time and pulse pause time are carried out in H13 steel using different geometries of copper electrodes. In addition, material removal rate, surface roughness and different dimensional and geometrical micro-accuracies are analyzed through statistical methods. Results help to select appropriate EDM process parameters to machine parts depending on product requirements.
机译:当需要加工高度复杂和准确的特征时,经常使用电火花加工工艺(EDM)。实际上,特别推荐将其用于硬质材料和微加工特征。然而,由于工艺性质,对最终质量特征的工艺参数影响仍然不甚了解,最终导致生产率和质量比降低。另一方面,针对每个特征的所需电极的成形和重新成形是耗时的阶段,并且所存储的电极的数量非常高。因此,为了提高全球EDM工艺的生产率,质量和灵活性,必须找到能够加工不同特征的标准化简单电极形状。本研究介绍了主要EDM工艺参数和不同刀具几何形状对基本工艺性能指标的影响。在H13钢中,使用不同几何形状的铜电极,进行了一系列设计实验,这些实验具有变化的参数,例如脉冲电流,开路电压,脉冲时间和脉冲停顿时间。此外,还通过统计方法分析了材料去除率,表面粗糙度以及不同尺寸和几何形状的微观精度。结果有助于根据产品要求选择合适的EDM工艺参数来加工零件。

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