Submicrometer surface shaping and surface repair of metals via laser ablation

被引:0
作者
Gavin, Zachary [1 ]
Forsman, Andrew [1 ]
Barrios, Jason [2 ]
Schrader, Grant [1 ]
机构
[1] Gen Atom, 3483 Dunhill St, San Diego, CA 92121 USA
[2] UC Santa Barbara, 552 Univ Rd, Santa Barbara, CA 93106 USA
关键词
laser ablation; pulse formatting; surface shaping; surface repair; laser heating; bulk heating; thermal modeling; FEMTOSECOND;
D O I
10.2351/7.0000512
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Metal foils with precise thicknesses are required for use as laser targets in high energy density physics experiments. To achieve the micrometer scale tolerances accompanying these applications, the authors have developed a laser ablation technique utilizing burst pulses from a femtosecond laser operated in concert with a high-speed galvo scanning system. For authors' application, an optimum laser processing format consisted of 250 fs laser pulses arranged in pairs, with the pulse separation in each pair equal to 400 ps and high galvo scanning speeds (& SIM;2000 mm/s). These parameters enable the authors to thin and shape metals (depleted uranium, beryllium, tantalum, and iron) and remove unwanted variations in foil thickness over meaningful foil sizes. Double femtosecond pulses enable ablation that mitigates some undesirable pre-existing surface structures such as residual scalloping and scratches and lead to a surface roughness near 300 nm. Precise ablation rates were correlated to laser processing area and foil thickness. Finally, ablation rates were correlated to bulk surface temperature by tracking workpiece heating during ablation. These techniques yield the ability to apply highly controlled thickness maps with micrometer accuracy and tens of nanometer precisions. This control has demonstrated the ability to level foils with micrometer scale thickness deformities and create various programmed patterns that are difficult or out of reach of traditional machining methods.</p>
引用
收藏
页数:11
相关论文
共 50 条
  • [21] Modifications of Surface Topography by Acoustic Resonance Induced by Laser Ablation with Ultrashort Laser Pulses
    Kunz, Gerhard
    Kroschel, Alexander
    Menold, Tobias
    Michalowski, Andreas
    Ametowobla, Mawuli
    LASER APPLICATIONS IN MICROELECTRONIC AND OPTOELECTRONIC MANUFACTURING (LAMOM) XXIV, 2019, 10905
  • [22] Formation of microstructure on liquid metal surface under nanosecond laser ablation
    Panchenko, Alexei N.
    Bulgakova, Nadezhda M.
    Tel'minov, Alexei E.
    Shulepov, Mikhail A.
    XVIII INTERNATIONAL SYMPOSIUM ON GAS FLOW, CHEMICAL LASERS, AND HIGH-POWER LASERS, 2010, 7751
  • [23] Surface structuring of metals with ultrashort laser pulses
    Weikert, M
    Föhl, C
    Dausinger, F
    THIRD INTERNATIONAL SYMPOSIUM ON LASER PRECISION MICROFABRICATION, 2003, 4830 : 501 - 505
  • [24] Femtosecond laser ablation of brass: A study of surface morphology and ablation rate
    Shaheen, Mohamed E.
    Fryer, Brian J.
    LASER AND PARTICLE BEAMS, 2012, 30 (03) : 473 - 479
  • [25] Direct Laser Ablation of Glasses with Low Surface Roughness Using Femtosecond UV Laser Pulses
    Stonyte, Dominyka
    Jukna, Vytautas
    Paipulas, Domas
    JOURNAL OF LASER MICRO NANOENGINEERING, 2022, 17 (02): : 121 - 126
  • [26] Surface contaminants’ incorporation after nanosecond laser ablation
    Wagner Stipp
    Nathanael Wagner Sales Morais
    José Vinicius Martins
    Priscila Matos
    Jesualdo Luiz Rossi
    Wagner de Rossi
    Marcus Paulo Raele
    Journal of Radioanalytical and Nuclear Chemistry, 2023, 332 : 4535 - 4540
  • [27] Ultrafast Laser Ablation of Inconel 718 for Surface Improvement
    Canacoo, Sampson
    Lopez, Enrique Contreras
    Coronel, Oscar
    Ahmed, Farid
    Li, Jianzhi
    Srivastava, Anil
    MANUFACTURING LETTERS, 2022, 33 : 410 - 414
  • [28] Surface contaminants' incorporation after nanosecond laser ablation
    Stipp, Wagner
    Morais, Nathanael Wagner Sales
    Martins, Jose Vinicius
    Matos, Priscila
    Rossi, Jesualdo Luiz
    de Rossi, Wagner
    Raele, Marcus Paulo
    JOURNAL OF RADIOANALYTICAL AND NUCLEAR CHEMISTRY, 2023, 332 (11) : 4535 - 4540
  • [29] Formation of the Titanium Oxide Surface by the Laser Ablation Method
    V. V. Ermakov
    A. G. Leitman
    I. V. Reimer
    V. V. Sheikin
    V. S. Chuchalin
    A. N. Osipov
    O. V. Vusovich
    P. A. Gol’tsova
    Russian Physics Journal, 2014, 56 : 1292 - 1296
  • [30] Ultrafast Laser Ablation of Inconel 718 for Surface Improvement
    Canacoo, Sampson
    Lopez, Enrique Contreras
    Coronel, Oscar
    Ahmed, Farid
    Li, Jianzhi
    Srivastava, Anil
    MANUFACTURING LETTERS, 2022, 33 : 410 - 414