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Recast layer removal of 304 stainless steel by combining micro-EDM with negative polarity micro-EDM

机译:通过将微EDM与负极性微EDM相结合,通过将微EDM组合来恢复304个不锈钢层

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摘要

Electrical discharge machining (EDM) has been widely used in the machining of mechanical parts. However, the parts obtained by EDM have recast layers and micro-cracks on their surface, which seriously affect their mechanical properties. In order to remove the recast layers and micro-cracks resulted from EDM, this paper proposed to combine micro-EDM with negative polarity micro-EDM. First, the mechanical part was machined using conventional EDM, after which the surface of the part had a distinct recast layer and micro-cracks. As the conventional EDM was nearing completion, the power supply was replaced by a micro-EDM power supply and then the part was processed by micro-EDM to reduce the thickness of the recast layer. After micro-EDM, the part was processed by negative polarity micro-EDM, which can remove the recast layer and the micro-cracks on the surface of the part. Conventional EDM was performed on 304 stainless steel using a copper electrode with voltage of 250 V, pulse width of 7 ms, and pulse interval of 5 ms. The experimental results showed that the recast layer and micro-cracks on the surface of the part were obvious and the surface quality of the part was poor. After that, the same part was sequentially subjected to micro-EDM and negative polarity micro-EDM with voltage of 110 V, pulse width of 0.5 mu s, and pulse interval of 15 mu s. The experimental results showed that the recast layer and micro-cracks on the surface of the part were almost invisible and the surface quality of the part was greatly improved.
机译:电气放电加工(EDM)已广泛用于机械部件的加工。然而,通过EDM获得的部件在其表面上具有重量层和微裂纹,这严重影响其机械性能。为了去除由EDM产生的重量层和微裂纹,本文提出将微EDM与负极性微EDM相结合。首先,使用常规EDM加工机械部件,之后部分的表面具有不同的素质层和微裂纹。随着传统EDM接近完成,电源由微EDM电源代替,然后通过微EDM处理该部件以减小重量层的厚度。在微EDM之后,通过负极性微EDM处理部分,其可以去除零件上的重量层和微裂缝。在304不锈钢中使用铜电极进行常规EDM,电压为250 V,脉冲宽度为7ms,脉冲间隔为5ms。实验结果表明,部分的重量层和微裂纹显而易见,部分的表面质量差。之后,将相同的部分顺序地进行微EDM和负极性微EDM,电压为110 V,脉冲宽度为0.5μs,脉冲间隔为15μs。实验结果表明,零件表面上的重量层和微裂纹几乎是看不见的,部分质量大大提高。

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