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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Effect of ultrasonic vibration object on machining performance of wire electrochemical micromachining
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Effect of ultrasonic vibration object on machining performance of wire electrochemical micromachining

机译:超声振动物体对线材电化学微加工加工性能的影响

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摘要

The development and application of wire electrochemical micromachining (WECMM) technology have become a research hotspot of non-traditional machining. However, a series of problems cannot be eliminated due to the machining products of micromachining gap, which leads to poor machining performance. This paper proposed a new method named ultrasonic vibration-added wire electrochemical micromachining (UA-WECMM) technology, which can solve the mass transfer problem in WECMM with extremely narrow gap. Firstly, the flow field of machining gap was simulated. The results showed that the pressure range of machining gap was larger and was more conducive to the renewal of electrolyte when ultrasonic vibration was added. Secondly, the effects of ultrasonic amplitude and ultrasonic vibration object on machining accuracy and surface quality were compared by experiments, which illustrated that the machining performance was greatly improved with the increase of ultrasonic amplitude of the workpiece. The slit width can be reduced from 196.2 to 151.2 mu m, and the surface roughness can be reduced from R-a 0.863 to R-a 0.259 mu m. Finally, the micro-gear structure with surface roughness of R-a 0.263 mu m and depth-to-width ratio of 6.7:1 was fabricated, which proved that UA-WECMM technology is an effective technology for fabricating metal microstructures with high aspect ratio and good machining quality.
机译:线材电化学微加工(WECMM)技术的发展与应用已成为非传统加工的研究热点。但是,由于微加工产品的加工间隙,导致加工性能不佳,导致一系列问题无法消除。本文提出了一种名为超声波增振线电化学微加工(UA-WECMM)技术的新方法,该方法可以解决WECMM中间隙极小的传质问题。首先,模拟了加工间隙的流场;结果表明:加入超声波振动时,加工间隙压力范围较大,更有利于电解液的更新;其次,通过实验比较了超声波幅值和超声波振动物体对加工精度和表面质量的影响,说明随着工件超声波幅值的增加,加工性能大大提高;狭缝宽度可从196.2μm降低到151.2μm,表面粗糙度可以从R-a 0.863降低到R-a 0.259 μ m。最后,制备了表面粗糙度为R-a 0.263 μ m、深宽比为6.7:1的微齿轮结构,证明了UA-WECMM技术是制备高长宽比、加工质量好的金属微结构的有效技术。

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