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Nanosecond and sub-nanosecond pulsed laser ablation of thin single and multi-layer packaging films

机译:单层和多层包装薄膜的纳秒和亚纳秒脉冲激光烧蚀

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摘要

Translating single and multi-layer packaging films are exposed to 0.5-0.8 ns laser pulses of wavelength 1064nm and 10-12.5 ns laser pulses of wavelength 515 nm. Ablation depths and threshold fluences are reported for single-layer polyethylene (PE), polypropylene (PP) and aluminium of thickness 20-50 μm. Interaction and cut widths are reported for the same single-layer films and for four multi-layer films comprising aluminium-polypropylene and aluminium-paper. Ablation of the PE and PP films is only possible in the tested parameter range with 0.5 ns, 1064 nm pulses. Though a one order of magnitude reduction in the ablation threshold of aluminium is observed with 0.5-0.8 ns, 1064 nm pulses, the efficiency of material removal for fluences >8Jcm~(-2) is superior with 10-12.5 ns, 515 nm pulses. Multi-layer film response is found to be heavily dictated by the thickness of metallic layers. For multi-layer films with aluminium layers of thickness 7-9 μm, adjacent layers are removed by inter-layer heat conduction from the aluminium layer, in some cases leading to very large cut widths. For multi-layer films with aluminium layers of thickness <0.1 μm, direct ablation of all layers must take place for complete film penetration. The study provides quantitative results regarding process efficiency and quality for application of pulsed laser sources within the packaging industry.
机译:将平移的单层和多层包装膜暴露于波长为1064nm的0.5-0.8 ns激光脉冲和波长为515 nm的10-12.5 ns激光脉冲。据报道,单层聚乙烯(PE),聚丙烯(PP)和厚度为20-50μm的铝的烧蚀深度和阈值通量。对于相同的单层膜和包括铝-聚丙烯和铝-纸的四个多层膜,报道了相互作用和切割宽度。仅在0.5 ns,1064 nm脉冲的测试参数范围内可以烧蚀PE和PP膜。尽管在0.5-0.8 ns,1064 nm脉冲下观察到铝的烧蚀阈值降低了一个数量级,但对于通量> 8Jcm〜(-2)的材料,去除效率在10-12.5 ns,515 nm脉冲下更为优异。 。发现多层膜的响应很大程度上取决于金属层的厚度。对于具有7-9μm厚度的铝层的多层膜,通过层间热传导从铝层去除相邻的层,在某些情况下导致非常大的切割宽度。对于厚度小于0.1μm的铝层的多层膜,必须对所有层进行直接烧蚀,以完全渗透膜。该研究为包装行业中脉冲激光源的应用提供了有关过程效率和质量的定量结果。

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