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Surface morphology and sub-surface damaged layer of various glasses machined by 193 nm ArF excimer laser

机译:193 nm ArF准分子激光加工的各种玻璃的表面形态和亚表面损伤层

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Owing to the high bonding energy, most of the glasses are removed by photo-thermal rather than photo-chemical effect when they are ablated by the 193 or 248nm excimer lasers. Typically, the machined surface is covered by re-deposited debris and the sub-surface, sometimes surface as well, is scattered with micro-cracks introduced by thermal stress generated during the process. This study aimed to investigate the nature and extent of the surface morphology and subsurface damaged (SSD) layer induced by the laser ablation. The effects of laser parameters such as fluence, shot number and repetition rate on the morphology and SSD were discussed. An ArF excimer laser (193 nm) was used in the present study to machine glasses such as soda-lime, Zerodur and BK-7. It is found that the melt ejection and debris deposition tend to pile up higher and become denser in structure under a higher energy density, repetition rate and shot number. There are thermal stress induced lateral cracks when the debris covered top layer is etched away. Higher fluence and repetition rate tend to generate more lateral and median cracks which propagate into the substrate. The changes of mechanical properties of the SSD layer were also investigated.
机译:由于高结合能,当用193nm或248nm准分子激光烧蚀时,大多数玻璃是通过光热作用而不是光化学作用除去的。通常,加工过的表面被重新沉积的碎屑覆盖,并且子表面(有时也包括表面)被过程中产生的热应力引入的微裂纹分散。本研究旨在研究激光烧蚀引起的表面形态和亚表面损伤(SSD)层的性质和程度。讨论了诸如通量,发射数量和重复率等激光参数对形态和SSD的影响。在本研究中,使用ArF准分子激光器(193 nm)来加工玻璃,例如苏打石灰,Zerodur和BK-7。发现在较高的能量密度,重复率和射出数下,熔体喷射和碎屑沉积倾向于更高地堆积并且在结构上变得更致密。当覆盖碎片的顶层被蚀刻掉时,会产生热应力引起的横向裂纹。较高的通量和重复率往往会产生更多的横向和中间裂纹,这些裂纹会传播到基底中。还研究了SSD层机械性能的变化。

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