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微/纳米制造技术的摩擦学挑战 被引量:37
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作者 雒建斌 何雨 +1 位作者 温诗铸 钟掘 《摩擦学学报》 EI CAS CSCD 北大核心 2005年第3期283-288,共6页
评述了国内外航天、信息和军事等高技术领域中微/纳米制造技术的研究现状和发展趋势,介绍了微/纳米制造技术特征及其关键技术问题,揭示了当器件的尺度由毫米量级减小到微米甚至纳米量级时,微器件材料表面和界面的摩擦学(摩擦磨损及润滑... 评述了国内外航天、信息和军事等高技术领域中微/纳米制造技术的研究现状和发展趋势,介绍了微/纳米制造技术特征及其关键技术问题,揭示了当器件的尺度由毫米量级减小到微米甚至纳米量级时,微器件材料表面和界面的摩擦学(摩擦磨损及润滑)、力学和化学等及其控制方法是微/纳米制造研究中急需解决的关键技术问题.这些问题的解决对摩擦学研究提出了严峻挑战,新的摩擦学理论和技术的出现将为微/纳米制造技术的发展以及相关问题的解决提供保障. 展开更多
关键词 微/纳米制造技术 表面与界面 摩擦学 挑战
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Femtosecond-laser direct writing 3D micro/nano-lithography using VIS-light oscillator 被引量:3
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作者 Antanas BUTKUS Edvinas SKLIUTAS +1 位作者 Darius GAILEVIČIUS Mangirdas MALINAUSKAS 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第10期3270-3276,共7页
Here we report a femtosecond laser direct writing(a precise 3D printing also known as two-photon polymerization lithography) of hybrid organic-inorganic SZ2080^(TM)pre-polymer without using any photo-initiator and app... Here we report a femtosecond laser direct writing(a precise 3D printing also known as two-photon polymerization lithography) of hybrid organic-inorganic SZ2080^(TM)pre-polymer without using any photo-initiator and applying ~100 fs oscillator operating at 517 nm wavelength and 76 MHz repetition rate. The proof of concept was experimentally demonstrated and benchmarking 3D woodpile nanostructures, micro-scaffolds, free-form micro-object “Benchy” and bulk micro-cubes are successfully produced. The essential novelty underlies the fact that non-amplified laser systems delivering just 40-500 p J individual pulses are sufficient for inducing localized cross-linking reactions within hundreds of nanometers in cross sections. And it is opposed to the prejudice that higher pulse energies and lower repetition rates of amplified lasers are necessary for structuring non-photosensitized polymers. The experimental work is of high importance for fundamental understanding of laser enabled nanoscale 3D additive manufacturing and widens technology’ s field of applications where the avoidance of photo-initiator is preferable or is even a necessity, such as micro-optics, nano-photonics, and biomedicine. 展开更多
关键词 laser direct writing two-photon polymerization multi-photon lithography 3D printing additive manufacturing SZ2080TM MICROSTRUCTURES NANOTECHNOLOGY
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