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首页> 外文期刊>Applied Surface Science >On the incubation effect on two thermoplastics when irradiated with ultrashort laser pulses: Broadening effects when machining microchannels
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On the incubation effect on two thermoplastics when irradiated with ultrashort laser pulses: Broadening effects when machining microchannels

机译:关于用超短激光脉冲照射对两种热塑性塑料的温育作用:加工微通道时的展宽作用

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In the present work, the incubation effect on polycarbonate (PC) and poly(methyl methacrylate) (PMMA) foils has been investigated when irradiated with femtosecond pulses (400 nm in wavelength, 90 fs in pulse length and 1 kHz in pulse repetition rate). First, craters produced with different number of pulses (N = 1, 50, 100, 200 and 500) have been obtained and crater diameters measured by means of atomic force microscopy for single-shot craters (N = 1) and confocal optical microscopy for multi-shot craters. Taking into account the gaussian shape of the laser beam, the dependence of crater diameter with fluence has been well established according to a conventional description and, then, fluence thresholds extracted as function of the number of pulses. These values show a good agreement with the incubation model and the incubation coefficient, ξ, has been obtained for both materials (ξ = 0.68 for polycarbonate and ξ = 0.61 for poly(methyl methacrylate)). This result supports well the observed fact that the incubation effects play a more important role in some thermoplastics than in any other kind of material, where ξ usually lies between 0.8 and 0.95. In the second part of this work, these results have been considered in the machining of microchannels, since the number of pulses is directly connected to the relative motion of laser beam and the sample through the feedrate of the stages. So, the observed broadening of microchannels with feedrate for a given fluence can be successfully explained and widths predicted with an uncertainty below 2 μm. Finally, the channel depth is investigated and the well known transition between a gentle and a strong phase behaviour is showed in the case of polycarbonate.
机译:在本工作中,已经研究了用飞秒脉冲(波长为400 nm,脉冲长度为90 fs,脉冲重复频率为1 kHz)辐照对聚碳酸酯(PC)和聚甲基丙烯酸甲酯(PMMA)箔的温育效果。 。首先,获得了由不同数量的脉冲(N = 1、50、100、200和500)产生的弹坑,并通过原子力显微镜对单发弹坑(N = 1)和共焦光学显微镜测量了弹坑直径。多发陨石坑。考虑到激光束的高斯形状,根据常规描述已经很好地建立了火山口直径与能量密度的相关性,然后根据脉冲数提取能量密度阈值。这些值显示出与孵育模型的良好一致性,并且两种材料的孵育系数ξ已获得(聚碳酸酯的ξ= 0.68,聚甲基丙烯酸甲酯的ξ= 0.61)。这个结果很好地支持了这样一个事实:在某些热塑性塑料中,保温作用比在其他任何类型的材料(ξ通常在0.8到0.95之间)中更重要。在这项工作的第二部分中,在微通道的加工中已经考虑了这些结果,因为脉冲的数量通过平台的进给速度直接与激光束和样品的相对运动有关。因此,对于给定的注量,观察到的微通道随着进给率的加宽可以成功地进行解释,并且预测宽度的不确定性低于2μm。最后,研究了通道深度,并显示了在聚碳酸酯情况下,在柔和和强相行为之间众所周知的过渡。

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