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Process optimization in Nd:YAG laser microdrilling of alumina–aluminium interpenetrating phase composite

机译:铝-铝互穿相复合材料在Nd:YAG激光微钻中的工艺优化

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In laser beam micromachining process, the quality of the drilled hole is of great importance. The quality of the microdrilled hole mainly depends on appropriate selection of process parameters. Predefined diameter of hole with minimum taper is of today's demand. The composite used for microdrilling operation is alumina–aluminium (Al2O3–Al) interpenetrating phase composite (IPC), which is widely used in aircraft and space stations. Until date, no experimental study has been done to obtain microdrilled hole of desired diameter. In the present paper three hole qualities such as hole diameter at entry, at exit and hole taper have been optimized individually as well as simultaneously using a central composite design (CCD) based on response surface methodology (RSM) during pulsed Nd:YAG laser microdrilling operation on alumina–aluminium IPC sheet of 1.14mm thickness. The analysis of variance (ANOVA) test has also been done to identify the process parameters that contributed the most to get desired hole quality.
机译:在激光束微加工过程中,钻孔的质量至关重要。所述microdrilled孔的质量主要取决于工艺参数适当选择。如今,具有最小锥度的预定孔直径已成为当今的需求。用于微钻操作的复合材料是氧化铝-铝(Al2O3-Al)互穿相复合材料(IPC),广泛用于飞机和空间站。迄今为止,还没有进行实验研究来获得所需直径的微孔。在本文中,在脉冲Nd:YAG激光微钻过程中,分别基于响应表面方法(RSM)使用中央复合设计(CCD),分别优化了三个孔的质量,例如入口,出口和锥度的孔直径,同时进行了优化可在厚度为1.14mm的氧化铝铝IPC板上进行操作。还进行了方差分析(ANOVA)测试,以确定对获得所需孔质量最有帮助的工艺参数。

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