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首页> 外文期刊>International Journal of Machine Tools & Manufacture: Design, research and application >Trepanning of Al{sub}2O{sub}3 by electro-chemical discharge machining (ECDM) process using abrasive electrode with pulsed DC supply
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Trepanning of Al{sub}2O{sub}3 by electro-chemical discharge machining (ECDM) process using abrasive electrode with pulsed DC supply

机译:使用带有脉冲直流电源的磨料电极,通过电化学放电加工(ECDM)工艺对Al {sub} 2O {sub} 3进行刻蚀

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摘要

Electro-chemical discharge machining (ECDM) of electrically non-conductive high-strength-high-temperature-resistant ceramics such as aluminium oxide (Al{sub}2O{sub}3) by trepanning method (i.e. orbital motion of tool) has shown the possibility of drilling large size holes by comparatively smaller electrodes efficiently and economically. However, at greater machined depth, the conventional electrode configurations and machining parameters show that machining performance gradually deteriorates with increase in tool depth and finally cause micro cracks on the machined surface due to thermal shocks at high voltage. To reduce this problem and to enhance the machining performance during trepanning operation of Al{sub}2O{sub}3, a spring fed cylindrical abrasive electrode of 1.5 mm diameter has been used under the effect of the three most influential parameters, namely, pulsed DC supply voltage, duty factor and electrolyte conductivity, each at five different levels to assess the volume of material removed, machined depth and diameteral overcut. The results obtained from this study revealed that pulsed DC has reduced the tendency of cracking at high supply voltage compared to smooth DC and the machining ability of the abrasive electrode was better than copper electrode as it would enhance the cutting ability due to the presence of abrasive grains during machining. In addition to this, trepanning provides the scope for drilling bigger holes.
机译:显示了通过敲击法(即工具的轨道运动)对氧化铝(Al {sub} 2O {sub} 3)之类的非导电高强度耐高温陶瓷进行电化学放电加工(ECDM)通过相对较小的电极有效而经济地钻出大尺寸孔的可能性。然而,在较大的加工深度下,常规的电极配置和加工参数表明,加工性能随着工具深度的增加而逐渐劣化,并最终由于高压下的热冲击而在加工表面上引起微裂纹。为了减少这个问题并提高Al {sub} 2O {sub} 3的开挖操作过程中的加工性能,在三个最有影响力的参数(即脉冲)的作用下,使用了直径为1.5 mm的弹簧馈电圆柱形磨料电极直流电源电压,占空比和电解质电导率分别在五个不同的水平上,以评估去除的材料量,加工深度和直径超切。从这项研究中获得的结果表明,与平滑直流电相比,脉冲直流电在高电源电压下降低了开裂的趋势,并且磨料电极的加工性能优于铜电极,因为磨料的存在会增强切割能力加工过程中的晶粒。除此之外,开孔提供了钻更大孔的范围。

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