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Heat affected zone extension in pulsed Nd:YAG laser cutting of CFRP

机译:CFRP脉冲Nd:YAG激光切割中的热影响区扩展

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摘要

Laser cutting is a promising alternative to the traditional methods in CFRP cutting. However, laser cutting is based on thermal interaction that results in thermal damages of both matrix and fibres. The heat affected zone (HAZ) extension is strictly dependent on the adopted laser source and the working parameters. The paper presents an experimental study on the laser cutting of CFRP plate, 1 mm in thickness by means of 150 W Nd:YAG pulsed laser. The cutting region and the influence of process parameters, pulse energy, pulse duration and overlapping, on the kerf geometry and the HAZ were analyzed. Experimental results showed that the adopted laser is able to cut the CFRP plate, up to 10.8 mm/s. However, an accurate selection of the process parameters is necessary in order to obtain the maximum cutting speed and a narrow HAZ. Moreover, a relation between the HAZ extension and the process parameters (average power, cutting speed, pulse frequency and pulse duration) was found.
机译:激光切割是CFRP切割中传统方法的有前途的替代方法。但是,激光切割是基于热相互作用,从而导致基体和纤维受到热损伤。热影响区(HAZ)的延伸严格取决于所采用的激光源和工作参数。本文介绍了使用150 W Nd:YAG脉冲激光对厚度为1 mm的CFRP板进行激光切割的实验研究。分析了切割区域以及工艺参数,脉冲能量,脉冲持续时间和重叠对切缝几何形状和热影响区的影响。实验结果表明,所采用的激光器能够切割CFRP板,速度高达10.8 mm / s。但是,为了获得最大的切割速度和较窄的热影响区,必须精确选择工艺参数。此外,还发现了热影响区扩展与工艺参数(平均功率,切削速度,脉冲频率和脉冲持续时间)之间的关系。

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