掺钕的英文
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"掺钕"怎么读用"掺钕"造句
英文翻译手机版
- neodymium-doped
- "掺"英文翻译 hold
- "钕"英文翻译 neodymium
- "掺钕玻璃" 英文翻译 : neodymium doped glass; neodymium-doped glass
- "掺钕光纤" 英文翻译 : neodymium-doped fiber
- "掺钕铍酸镧" 英文翻译 : neodymium-doped lanthanum beryllate
- "掺钕激光玻璃" 英文翻译 : neodymium-doped laser glass
- "掺钕玻璃激光器" 英文翻译 : neodymium-doped gla laser; neodymium-doped glass laser
- "掺钕氟化物光纤" 英文翻译 : neodymium-doped fluoride fiber
- "掺钕光纤放大器" 英文翻译 : ndfa nd-doped fiber amplifier
- "掺钕光纤激光器" 英文翻译 : neodymium-doped fiber laser
- "掺钕镜铝石榴石" 英文翻译 : nd (neodymium)-doped yttrium aluminum garnet; nd -doped yttrium aluminum garnet
- "掺钕钨酸钙激光器" 英文翻译 : neodyminm-doped calcium tungstate laser; neodymium-doped calcium tungstate laser
- "掺钕钇铝石榴石" 英文翻译 : neodymium-doped yttrium-aluminum garnet
- "掺钕钇铝石榴石棒" 英文翻译 : neodymium-doped yttrium-aluminum garnet rod
- "掺钕镱铝石榴石" 英文翻译 : ndyag laser
- "掺钕-钇铝石榴石激光疗法" 英文翻译 : nd3+ yag laser therapy
- "掺钕硅酸氧化磷灰石" 英文翻译 : neodymium-doped silicate oxyapatite
- "掺钕含氟光纤放大器" 英文翻译 : ndffa neodemium-doped fluoride fiber amplifier
- "掺钕钇铝石榴石激光棒" 英文翻译 : neodymiumdoped yttrium aluminum garnet laser rodss
- "掺钕钇铝石榴石激光器" 英文翻译 : nd-doped yttrium aluminum garnet laser; neodymium doped yttrium aluminium garnet laser; neodymium-doped yttrium aluminium garnet laser; neodymium-doped yttrium aluminum garnet laser
- "掺钕镱铝石榴石激光器" 英文翻译 : ndyag laser
- "倍频掺钕钇铝石榴石激光器" 英文翻译 : frequency-doubled nd yag laser
- "主动锁模掺钕钇铝石榴石激光器" 英文翻译 : actively mode-locked nd yag laser
- "掺钕钇铝石榴石激光棒消光比的测量方法" 英文翻译 : test method for extinction ratio of nd: yag laser rods
- "掺钕钇铝石榴石激光对小鼠移植瘤转移的影响" 英文翻译 : nd-yag laser decreases metastasis of transplanted tumor in mice
例句与用法
- Determination of nd concentration of nd : yag laser rods
掺钕钇铝石榴石激光棒钕浓度的测定 - Test method for extinction ratio of nd : yag laser rods
掺钕钇铝石榴石激光棒消光比的测量方法 - Nd : yageodymium yttrium aluminium garnet
掺钕钇铝石榴石激光器 - Nd neodymium - doped yttrium aluminum garnet
掺钕镜铝石榴石 - General specification of nd : yag laser medical instrument with continuous wave
连续波掺钕钇铝石榴石激光治疗机通用技术条件 - Test method for normal pulse lasing threshold and slope efficiency of nd : yag laser rods
掺钕钇铝石榴石激光棒长脉冲激光阈值及斜率效率的测量方法 - Test method for continuous lasing threshold , slope efficiency and output power of nd : yag laser rods
掺钕钇铝石榴石激光棒连续激光阈值斜率效率和输出功率的测量方法 - It has a broader absorption band at 808 nm which is emitted by laser diode ( ld ) . therefore , nd : cngg is suitable for ld pumping , the ld pumped all solid - state lasers can be made by using nd : cngg . in this study , nd : cngg single crystals of 25mm in diameter and above 80mm in length were successfully grown by the automatically pulling method from the melt
掺钕钙铌镓石榴石(简称nd : cngg )是一种新型激光晶体,该晶体熔点低( 1470 ) ,具有无序结构,在通用的808nm半导体激光二极管( ld )发射波长区有宽吸收带,因此很适合ld泵浦,可做成ld泵浦全固态激光器。 - In this paper , the history , basic process and characteristic of the sol - gel theory and technology are first introduced in brief . then it presents the newly research progresses and the applications of the sol - gel method in preparing bulk , fiber , coatings and films , powder and complex materials . then the kind of sio2 - zro2 gel bulk glass - ceramic is prepared by using sol - gel method and the water - exchanging method
本文首先简要介绍了溶胶?凝胶理论和技术的历史背景、基本工艺过程及特点,并着重评述了溶胶?凝胶技术在制备块状、纤维、薄膜与涂层、粉末和复合材料方面的最新研究进展及其应用;采用溶胶?凝胶法与水置换法制备了尺寸较大的sio _ 2 - zro _ 2系玻璃-陶瓷,采用分步水解法制备了掺钕sio _ 2 - al _ 2o _ 3激光玻璃-陶瓷。 - By using dta , ir and xrd analysis , the result show that : in the gel glass of these two system , the phase change of the zirconia and the alumina are restricted because of the high content of silica which leads to the stabilization of the prepared materials . and the applications of these two materials is introduced briefly . by using absorption spetrum and fluorescence spetra analysis , the result show that : in the gel glass of the nd - doped sio2 - al2o3 gel bulk glass - ceramic , the strongest emmision is at about 1 . 06u m , the clustering of nd3 + ion is controlled by the addition of alumina which creates the " cage effect " to nd3 + ion
同时分别对凝胶进行了dta 、 ir 、 xrd分析,结果表明:对于此两个系统的凝胶玻璃-陶瓷,由于二氧化硅含量较高,使得氧化锆及氧化铝的相变受到约束,从而保证所制备材料的稳定化,同时对两种材料的应用也作了简单介绍;对掺钕sio _ 2 - al _ 2o _ 3激光玻璃-陶瓷进行了荧光及吸收光谱分析,结果表明:钕铝共掺杂二氧化硅玻璃的最强发射处于1 . 06 m左右,加入的少量氧化铝使钕离子产生“笼效应” ,阻止钕的团聚。
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