1) laser ablation
激光消融法
1.
Colloidal silver nanoparticles were prepared by means of laser ablation with 10 ns pulse width laser at 532 nm wavelength in a series of solvents water, ethanol, glycol, etc.
通过紫外/可见/近红外吸收光谱、透射电子显微镜(TEM)和X射线衍射(XRD)等方法对制备的溶胶表征,结果表明,利用激光消融法可以得到银纳米材料,溶剂不但影响银纳米粒子的形成速度,同时也影响银溶胶的稳定性。
2.
The emphases are laser ablation principle and status quo in fabrication of nano-particle, nano-fibre, nano-thin film.
其中重点介绍了激光消融法制备纳米颗粒、纳米纤维、纳米薄膜的原理和现状。
3.
The optical fiber probe is prepared with the melt-pulling etching,tube etching,pulling-etching and laser ablation method.
用熔拉法、腐蚀法、管腐蚀法、熔拉-腐蚀法、激光消融法等制备了光纤探针,对其外形进行了分析比较。
2) Laser ablation
激光消融
1.
Progress in studies of nanoparticle preparation by laser ablation;
激光消融制备纳米颗粒的研究进展
2.
Studies on the Theory and Experiment of the Organic Nanoparticle Preparation by Laser Ablation;
激光消融制备有机纳米颗粒的理论与实验研究
3.
Pulsed excimer laser ablation is being extensively applied in chinics to reshape the corneal optical surface of the eye and correct vision defects.
采用理想的几何球面假设,在分析近视及远视的屈光状态和角膜曲率变化对屈光力影响的基础上,精确计算出在激光消融光学区域内组织消融深度的变化,根据公式描述了屈光程度与手术光学区直径及角膜消融程度的曲线关系图,并以此算法植入准分子激光眼科治疗机。
3) laser attenuation measurement
激光消光法
1.
Extinguishing concentration measurement experiments in the cup burner on two kinds of superfine ammonium phosphate extinguishing agents with different particle sizes had been done by means of filtering and weighing method combined with laser attenuation measurement.
采用过滤称重法配合激光消光法对两种粒度的磷酸铵盐微粒灭火剂在杯式燃烧器中的灭火浓度进行了研究,得出了激光测定磷酸铵盐微粒灭火剂的质量浓度标定曲线和微粒灭火剂的灭火浓度。
4) resonant laser ablation(RLA)
共振激光消融
5) interstitiallaser therapy
间质激光消融
1.
These therapies include radiofrequency ablation ; interstitiallaser therapy ; cryoablation ; microwave ablation ; high-intensity focused ultrosound and so on.
常用的消融治疗方法包括:射频消融;间质激光消融;冷冻消融;微波消融;高强度聚焦超声消融等。
6) laser melting method
激光溶融法
补充资料:冰川消融
冰川消融 由冰的融化和蒸发引起冰川消耗的现象,它是冰川物质消耗的主要方式。太阳直接辐射和近地层大气湍流交换是引起冰川消融的主要热源,冰面性质、冰川所在高度和坡向以及天气状况对消融也有影响。消融主要发生在夏季和白天,因而,具有日、季和年的变化。其数量取决于冰川所在纬度(温度)和冰面污染程度。冰川消融的方式有冰面消融、冰内消融和冰下消融,而以冰面消融为主。研究冰川消融是分析、预测冰川进退的重要途径,是山区公路与桥梁设计的依据,是了解河流补给状况,开发利用冰川资源的基础。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条