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Pulse width and energy influence on laser micromachining of metals in a range of 100 fs to 5 ps

机译:脉冲宽度和能量在100 fs至5 ps的范围内对金属激光微加工的影响

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摘要

Micromachining of steel, Cu and Al is studied. Ablation depths per pulse are deduced for laser pulse durations between 100 fs and 5 ps for fluences in the range of 150 mJ cm~(-2) to 20 J cm~(-2). The evolution of ablation rates allows to evidence a low and a high fluence regime. Ablation thresholds and penetration depths are deduced as functions of pulse duration. While in the low fluence regime the penetration depth is close to the theoretical optical penetration depth, at higher fluences the effective heat penetration depth is 10-20 times bigger with also higher ablation thresholds. Even in the femtosecond range thermal ablation processes occur and reduce quality, accuracy and efficiency of micromachining. Additionally, the latter are influenced by strong beam distortions due to nonlinear interaction between the radiation and the atmospheric gas. In the case of steel and Cu, the pulse duration seems not to affect microprocessing, but it is demonstrated to play a role for Al for pulses between 1 and 5 ps.
机译:研究了钢,铜和铝的微加工。对于在150 mJ cm〜(-2)到20 J cm〜(-2)范围内的注量,在100 fs和5 ps之间的激光脉冲持续时间推导出每个脉冲的烧蚀深度。消融率的演变可以证明有低通量和高通量状态。推断出消融阈值和穿透深度是脉冲持续时间的函数。在低注量状态下,穿透深度接近理论上的光学穿透深度,而在高注量下,有效热穿透深度则大10-20倍,并且烧蚀阈值也更高。即使在飞秒范围内,也会发生热消融过程,并降低微加工的质量,准确性和效率。另外,由于辐射和大气之间的非线性相互作用,后者受到强烈的光束畸变的影响。在钢和铜的情况下,脉冲持续时间似乎并不影响微处理,但是对于1至5 ps的脉冲,铝对Al起到了作用。

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