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Reducing the heat-affected zone during the laser beam drilling of basalt-glass hybrid composite

机译:减少玄武岩-玻璃杂化复合材料激光束钻孔过程中的热影响区

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摘要

Materials with excellent mechanical properties are the key requirement of modern industries. Researchers have reported that the hybrid basalt-glass composite has excellent mechanical properties and are widely used in aerospace and marine industries. However, the precise machining of this hybrid composite is still a matter of concern. In the present work, laser beam drilling of basalt-glass hybrid composite has been done, to predict a safe machining zone pertaining to high drill quality with minimum heat-affected zone and maximum hole-circularity. The prediction of the zone has been done by mathematical modeling and optimization using response surface methodology and multi-objective genetic algorithm, respectively. The obtained zone has been validated by performing more experiments. From the results, it is evident that the obtained zone is capable of minimizing the heat-affected zone with acceptable hole-circularity.
机译:具有优异机械性能的材料是现代工业的关键要求。研究人员报告说,这种混合玄武岩-玻璃复合材料具有出色的机械性能,并广泛用于航空航天和海洋工业。但是,这种杂化复合材料的精确加工仍然是一个值得关注的问题。在目前的工作中,已经进行了玄武岩-玻璃杂化复合材料的激光束钻孔,以预测与高钻孔质量有关的安全加工区域,同时最小化热影响区域和最大孔圆度。通过分别使用响应面方法和多目标遗传算法进行数学建模和优化来完成区域预测。通过执行更多的实验验证了获得的区域。从结果可以明显看出,所获得的区域能够以可接受的孔圆度使热影响区域最小化。

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