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A Preliminary Study of the Erosion Process in Micro-machining of Glasses with a Low Pressure Slurry Jet

机译:低压浆料射流微加工侵蚀过程的初步研究

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The erosion process in micro-machining of brittle glasses using a low pressure slurry jet is discussed. The process capability of the technique is assessed by examining the machined surface integrity in relation to fluid flow dynamics in micro-hole generations. The holes produced are characterised by a "W" shape in the cross section, while the surface morphology is distinguished by three zones associated with the fluid flow behaviour, i.e. a direct impact zone, a wavy zone and an accumulation zone. The surfaces appear to be smooth and without cracks, indicating a predominance of the ductile mode erosion process. With the increase of pressure, the erosion rates can be enhanced as a result of the expending of the accumulation zone while the outer diameter of the holes remains unchanged. This study shows that this technique can be used for micro-machining with high surface quality, and provides an essential understanding for further research in the avenue.
机译:讨论了使用低压浆料射流的脆性眼镜微加工的侵蚀过程。通过在微孔代中的流体流动动力学中检查加工的表面完整性来评估该技术的过程能力。产生的孔的特征在于横截面中的“W”形状,而表面形态由与流体流动行为相关的三个区域,即直接冲击区,波浪区和累积区。表面似乎是光滑的,没有裂缝,表明延性模式侵蚀过程的主要突出。随着压力的增加,由于蓄积区的消耗而可以提高侵蚀速率,而孔的外径保持不变。本研究表明,该技术可用于具有高表面质量的微加工,并为进一步研究提供了高度研究。

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