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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Parametric analysis and optimization of Nd:YAG laser micro-grooving of aluminum titanate (Al{sub}2TiO{sub}5) ceramics
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Parametric analysis and optimization of Nd:YAG laser micro-grooving of aluminum titanate (Al{sub}2TiO{sub}5) ceramics

机译:钛酸铝(Al {sub} 2TiO {sub} 5)陶瓷Nd:YAG激光微刻槽的参数分析与优化

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摘要

Pulsed Nd:YAG Laser offers an excellent role for various micro-machining operations of a wide range of engineering materials such as ceramics, composites, diamond etc. The micro-machining of ceramics are highly demanded in the present industry because of its wide and potential uses in various field such as automobile, electronic, aero-space, and bio-medical engineering applications etc. Aluminum titanate (Al{sub}2TiO{sub}5) has tremendous application in automobile and aero engine industry due to its excellent thermal property. The present research paper deals with the response surface methodology based mathematical modeling and analysis on machining characteristics of pulsed Nd: YAG laser during micro-grooving operation on a work piece of aluminum titanate. In this present study, lamp current, pulse frequency, pulse width, assist air pressure and cutting speed of laser beam are considered as machining process parameters during pulsed Nd:YAG laser micro-grooving operation. The response criteria selected for analysis are deviation of taper and deviation of depth characteristics of micro-groove produced on a work piece made of aluminum titanate (Al{sub}2TiO{sub}5). The analysis of variance test has also been carried out to check the adequacy of the developed regression mathematical models. The optimal process parameter settings are assist air pressure of 1.3 kgf/cm{sup}2, lamp current of 20.44 amp, pulse frequency of 1.0 kHz, pulse width of 10% of duty cycle, and cutting speed of 10 mm/s for achieving the predicted minimum deviation of taper and deviation of depth of laser micro-groove. From the analysis, it is evident that the deviation of taper angle and deviation of depth of the micro-groove can be reduced by a great extent by proper control of laser machining process parameters during micro-grooving on aluminum titanate (Al{sub}2TiO{sub}5).
机译:Nd:YAG脉冲激光在各种工程材料(如陶瓷,复合材料,金刚石等)的各种微加工操作中发挥着出色的作用。由于其广泛的潜力,陶瓷在目前的行业中非常需要微加工钛酸铝(Al {sub} 2TiO {sub} 5)由于其优异的热性能而在汽车和航空发动机工业中得到了广泛的应用。 。本文研究了基于响应面方法的数学模型,并对钛酸铝工件上的微槽加工中脉冲Nd:YAG激光的加工特性进行了分析。在本研究中,在脉冲Nd:YAG激光微刻槽操作中,将灯电流,脉冲频率,脉冲宽度,辅助气压和激光束切割速度视为加工工艺参数。选择用于分析的响应标准是锥度偏差和在钛酸铝(Al {sub} 2TiO {sub} 5)制成的工件上产生的微沟槽深度特征的偏差。方差分析的分析也已经进行,以检查所开发的回归数学模型的适当性。最佳的工艺参数设置是辅助气压为1.3 kgf / cm {sup} 2,灯电流为20.44安培,脉冲频率为1.0 kHz,脉冲宽度为占空比的10%,切割速度为10 mm / s预测的锥度最小偏差和激光微槽的深度偏差。从分析可知,通过适当地控制钛酸铝(Al {sub} 2TiO2的微细加工中的激光加工工艺参数),可以极大地减小锥角的偏差和微细槽的深度的偏差。 {sub} 5)。

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