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Effects of processing parameters on laser cutting of aluminium-copper alloys using off-axial supersonic nozzles

机译:加工参数对超音速铝喷嘴激光切割铝铜合金的影响

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摘要

Conventional laser cutting involves the utilization of converging coaxial nozzles to inject the assist gas used to remove the molten material. This processing system prevents the utilization of this technique to cut aluminium alloys for aerospace applications. The inefficient removal of molten material by the assist gas produces cuts with poor quality; very rough cuts, with a large amount of dross, and a large heat affected zone (HAZ) are obtained. An alternative to increase the assist gas performance is the utilization of off-axial supersonic nozzles. Removal of molten material is substantially increased and cuts with high quality are obtained. On the other hand, pulsed laser cutting offers superior results during the processing of high reflectivity materials as aluminium alloys. However, there are no experimental studies which explore the pulsed laser cutting of aluminium alloys by means of a cutting head assisted by an off-axis supersonic nozzle. The present work constitutes a quantitative experimental study to determine the influence of processing parameters on the cutting speed and quality criteria during processing by means of off-axial supersonic nozzles. Cutting experiments were performed in pulsed mode and the results explained under the basis of the molten material removal mechanisms. Performed experiments indicate a reduction in cutting speed as compared to continuous wave (CW) mode processing and the existence of two processing regimes as a function of the pulse frequency. Best results are obtained under the high pulse frequency one (f> 100 Hz) because the superior capabilities of molten material removal of the supersonic jets are completely exploited in this processing regime.
机译:常规的激光切割涉及利用会聚的同轴喷嘴来注入用于去除熔融材料的辅助气体。该处理系统阻止了该技术在航空航天应用中切割铝合金的利用。辅助气体不能有效地去除熔融材料,从而导致切割质量下降。获得非常粗糙的切口,具有大量的渣s和较大的热影响区(HAZ)。提高辅助气体性能的另一种方法是利用离轴超音速喷嘴。熔融材料的去除显着增加,并且获得了高质量的切割。另一方面,脉冲激光切割在高反射率材料(如铝合金)的加工过程中提供了出色的结果。然而,没有实验研究借助于离轴超音速喷嘴辅助的切割头来探索铝合金的脉冲激光切割。目前的工作构成了定量实验研究,以确定通过离轴超音速喷嘴在加工过程中加工参数对切削速度和质量标准的影响。切割实验以脉冲模式进行,并在熔融材料去除机理的基础上解释了结果。进行的实验表明,与连续波(CW)模式处理相比,切削速度有所降低,并且存在两种处理方式作为脉冲频率的函数。在高脉冲频率1(f> 100 Hz)下可获得最佳结果,因为在该处理方案中完全利用了超音速射流的熔融材料去除能力。

著录项

  • 来源
    《Applied Surface Science》 |2011年第12期|p.5393-5397|共5页
  • 作者单位

    Dpto. Fisica Aplicada, Universidade de Vigo, ETSI Industrials, Lagoas-Marcosende 9,36310 Vigo, Spain;

    Dpto. Fisica Aplicada, Universidade de Vigo, ETSI Industrials, Lagoas-Marcosende 9,36310 Vigo, Spain;

    Dpto. Fisica Aplicada, Universidade de Vigo, ETSI Industrials, Lagoas-Marcosende 9,36310 Vigo, Spain;

    Dpto. Fisica Aplicada, Universidade de Vigo, ETSI Industrials, Lagoas-Marcosende 9,36310 Vigo, Spain;

    Dpto. Fisica Aplicada, Universidade de Vigo, ETSI Industrials, Lagoas-Marcosende 9,36310 Vigo, Spain;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    laser cutting; supersonic nozzles; pulsed mode; a1-2024t3;

    机译:激光切割;超音速喷嘴;脉冲模式;a1-2024t3;
  • 入库时间 2022-08-18 03:07:04

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