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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Effects of tool intermittent vibration on helical internal hole processing in electrochemical machining
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Effects of tool intermittent vibration on helical internal hole processing in electrochemical machining

机译:工具间歇振动对电化学加工螺旋内孔加工的影响

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摘要

Ribbed holes can serve to increase the efficiency of the heat exchangers and improve the performance of industrial equipment. Increasing demand for small ribbed holes is a key driver in manufacturing technology research. Electrochemical machining has been shown to be a promising method for this. In this paper, an intermittent low-frequency vibration tool is used to demonstrate significant improvement to the geometry of internal ribbed holes. The process stability, material removal rates, and uniformity of features along the flow direction are improved. Firstly, a 3D model of the flow field within the interelectrode gap was developed to calculate and governing flow regime in the interelectrode gap. The simulation demonstrated that the fluid velocity fluctuates periodically and this enhances electrolyte flushing in the interelectrode gap during the machining process. Then, experimental tests for the manufacture of spiral ribs on small holes (o1.5 mm and 20-40 mm depth) are also demonstrated with accompanying variation of the tool vibration amplitude and frequency, respectively. Results show that groove depth was most greatly influenced by the vibration amplitude and that better uniformity could be obtained at higher vibration frequencies. The groove depth increased by 15% over nonvibrating control tests with enhanced uniformity.
机译:罗纹孔可以用于提高热交换器的效率,提高工业设备的性能。对小罗纹孔的需求增加是制造技术研究的关键驱动因素。电化学加工已被证明是对此有希望的方法。在本文中,使用间歇的低频振动工具来表现出对内肋孔的几何形状的显着改进。改善了沿着流动方向的工艺稳定性,材料去除速率和均匀性。首先,开发了电极间隙内的流场的3D模型以计算和控制电极间隙中的流动状态。该模拟证明流体速度周期性波动,并且这在加工过程中增强了在电极间隙中的电解质冲洗。然后,还在伴随工具振动幅度和频率的伴随的变化下对制造小孔(O1.5mm和20-40mm深度)进行螺旋肋的实验试验。结果表明,凹槽深度最大地受到振动幅度的影响,并且可以在更高的振动频率下获得更好的均匀性。在具有增强的均匀性的非振动控制测试上,凹槽深度增加了15%。

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