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首页> 外文期刊>Optics and Lasers in Engineering >High precision materials processing using a novel Q-switched CO2 laser
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High precision materials processing using a novel Q-switched CO2 laser

机译:使用新型Q开关CO2激光进行高精度材料加工

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摘要

Holes with diameters of about 400 mu m have been laser trepanned in Ti6Al4V and carbon fibre reinforced polymer (CFRP) thin sheets with a thickness of 0.5 mm. A commercial CO2 laser (SM1500E, FEHA LaserTec, Germany) and a novel Q-switched CO2 laser (mu-storm, IAI Netherlands) were used as radiation sources. Optical microscopy, scanning electron microscopy and replicas of the processed holes were used to investigate the influence of the CO2 laser pulse parameters (e.g. pulse energy, duration and peak power) on the processing quality. It was shown that melt formation and high temperature oxidation reactions of Ti6Al4V during thermal laser processing were reduced significantly by using short and high intense Q-switched CO2 laser pulses. During trepanning of CFRP heat affected zones resulting from the extremely different thermal properties (melting and vaporisation temperature, heat conduction) of the reinforcing carbon fibres and the polymer matrix were reduced significantly by using the Q-switched CO2 laser. The results demonstrate that Ti6Al4V and CFRP can be processed very precisely with CO2 laser radiation and air as processing gas without melt formation and thermal damage. (C) 2014 Elsevier Ltd. All rights reserved.
机译:直径约400微米的孔已在厚度为0.5毫米的Ti6Al4V和碳纤维增强聚合物(CFRP)薄片中激光打孔。商用二氧化碳激光器(SM1500E,德国FEHA LaserTec)和新型调Q二氧化碳激光器(mu-storm,IAI荷兰)被用作辐射源。使用光学显微镜,扫描电子显微镜和已加工孔的复制品来研究CO2激光脉冲参数(例如脉冲能量,持续时间和峰值功率)对加工质量的影响。结果表明,通过使用短而高强度的Q开关CO2激光脉冲,可显着减少热激光加工过程中Ti6Al4V的熔体形成和高温氧化反应。在CFRP的开孔过程中,通过使用Q开关CO2激光器,可以显着减少增强碳纤维和聚合物基体的极不同热性能(熔融和汽化温度,热传导)所导致的热影响区。结果表明,利用CO2激光辐射和空气作为处理气体,可以非常精确地处理Ti6Al4V和CFRP,而不会形成熔融物和热损伤。 (C)2014 Elsevier Ltd.保留所有权利。

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