Laser Processing of Silica Aerogels Using Ultrashort Pulses

J. Sun, J. Longtin, P. Norris
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Abstract

Silica aerogels are unique nanostructured materials that possess many distinctive qualities, including extremely low densities and thermal conductivities, very high surface-area-to-volume ratios, and large strength-to-weight ratios. Aerogels, however, are very brittle, and are not readily shaped using traditional machining operations. Ultrafast laser processing may provide an alternative for precision shaping and machining of these materials. This paper discusses investigations of ultrafast laser machining of aerogels for material removal and micromachining. The advantages of ultrafast laser processing include a minimal thermal penetration region and low processing temperatures, precision removal of material, and good-quality feature definition. In this work, an amplified femtosecond Ti:sapphire laser system is used to investigate the breakdown threshold, material removal rate, and specific issues associated with laser processing of aerogels, as well as recommendations for further investigations for these unique materials.
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超短脉冲激光加工二氧化硅气凝胶
二氧化硅气凝胶是一种独特的纳米结构材料,具有许多独特的特性,包括极低的密度和导热性,非常高的表面积体积比和大的强度重量比。然而,气凝胶非常脆,并且不容易使用传统的机械加工操作成型。超快激光加工为这些材料的精密成形和加工提供了一种新的选择。本文讨论了用于材料去除和微加工的气凝胶超快激光加工的研究。超快激光加工的优点包括热渗透区域小、加工温度低、材料去除精度高、特征定义质量好。在这项工作中,一个放大飞秒Ti:蓝宝石激光系统用于研究击穿阈值,材料去除率,以及与气凝胶激光加工相关的具体问题,以及对这些独特材料的进一步研究的建议。
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