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1)  laser surface ablation
激光表面刻蚀
2)  etched-facet laser
刻蚀端面激光器
3)  laser ablation
激光刻蚀
1.
A Study on PVP and PVK by Surface Enhanced Raman Spectra and the Preparation of Metal Colloids by Laser Ablation;
聚乙烯吡咯烷酮和聚乙烯咔唑的表面增强拉曼光谱研究及激光刻蚀金属胶体的制备
2.
The influences of laser ablation processes on the solubility and the crystallizability of laser evaporated Al2O3-ZrO2 nanopowders were studied by X-ray diffractometer (XRD), X-ray absorption fine structure (XAFS) spectroscope and high resolution electron microscope (HREM).
利用X射线衍射, X射线吸收精细结构谱和高分辨电镜研究了激光刻蚀工艺对 Al2O3-ZrO2固溶度和结晶度的影响。
3.
The micrometer-scaled channels with different width and depth on the Si surface were prepared by pulse laser ablation.
因此,利用激光刻蚀表面方法可以在一定程度上调控固体表面的润湿性能。
4)  laser etching
激光刻蚀
1.
Surface treatments in liquid phase using laser-laser plating and laser etching were reviewed.
对液相中的激光表面处理- 激光电镀和激光刻蚀进行综述,阐述了有关原理和应用。
5)  laser-induced thermal etching
激光蚀刻
1.
The method for the graphic input in a laser-induced thermal etching system and writingdevice is described.
介绍了激光蚀刻、书写设备中的图形输入方法,着重讨论了图像预处理、直线段识别和圆弧识别的数学方法。
6)  surface etching
表面刻蚀
1.
The research results indicated that with the increase of treatment power ,treatment time and treatment pressure,the surface etching deepened and expanded from non crystalline region to crystalline region,the etching stripes became well-observed, and the surface roughness increased.
结果表明随处理功率增大、处理时间增长和处理压力增高,表面刻蚀随之加深,刻蚀由非晶区向晶区发展,刻蚀条纹渐趋明显,表面粗糙度增加。
补充资料:激光烧蚀
分子式:
CAS号:

性质: 是电感偶合等离子体质谱(ICP-MS)联用仪器中用来分析固体样品的一种进样方式。固体样品制成片状置于样品台上,样品表面处于激光束聚焦点上。使用红宝石激光器。一次0.5J的激光轰击,能在样品上产生一个直径为0.5mm,深0.5mm的小坑,消耗样品0.2mg。让等离子体注射气流流过样品表面,再经一导管导入等离子炬,样品在焰炬中即可电离。激光烧蚀所用激光器为大功率、高重复激光器,大面积采样。这样采样均匀性好,而且不受样品种类限制。采用激光烧蚀质谱技术,可以对样品微区进行分析。

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