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1)  Z-scan
Z扫描
1.
Theory analysis on Z-scan technique of cascade structure for the nonlinear absorption materials;
含非线性吸收的串级结构Z扫描技术理论分析
2.
Roboticized Laser Beam Z-scan System Based on Labview;
基于LabView的全自动激光Z扫描实验系统
3.
Theoretical analysis of Z-scan using one dimensional partially coherent beams;
1维部分相干光束的Z扫描理论分析
2)  Z scan
Z扫描
1.
Z scan analysis for near top-hat beams;
近top-hat光束Z扫描理论分析
2.
5×10 9 cm/W measured by Z scanning method is given.
利用Z扫描方法测定了该样品的有效双光子吸收系数 β =3 。
3.
The third order optical nonlinear susceptibilities χ (3)  of coated Bi 2S 3 nanoparticles doped organically modified sol gels under different thermal treatment conditions have been measured using the Z scan technique with 38 ps pulse excitation at 1.
利用单光束 Z扫描技术 ,在波长为 1 。
3)  Z-scan technique
Z-扫描
1.
The effect of side chains with different length on the optical properties of two PPV derivatives,poly(2,5-dioctyloxy-1,4phenylenevinylene) and poly(2-methoxy-5-(2'-ethyl-hexyloxy)-1,4-phenylenevinylene),was investigated by absorption spectroscopy,fluorescence spectroscopy and picosecond Z-scan technique.
采用吸收光谱、荧光光谱和皮秒Z-扫描等实验方法研究了侧链长度的不同对聚[2-甲氧基-5-(2′-乙基-己氧基)]对苯乙炔(MEH-PPV)和聚(2,5-二辛氧基)对苯乙炔(DO-PPV)两种聚对苯乙炔(PPV)衍生物光学性质的影响,并用π-电子共轭结构理论和共振、非共振增强理论进行了分析。
2.
The third-order optical nonlinearity of inorganic compound RuCl_2(depe)_2 was studied by using Z-scan technique with a double-frequency Nd: YAG laser system at 532nm with pulse width of 8ns, The nonlinear refractive index n_2 of RuCl_2(depe)_2 was measured which was about 5.
应用倍频Nd:YAG脉冲激光,在波长为532nm,脉冲宽度为8ns的条件下,运用Z-扫描技术研究了无机化合物反二氯[1,2-二(二乙基膦)乙基]钌(RuCl_2(depe)_2)的三阶非线性光学特性。
3.
The linear and nonlinear optical properties of three porphyrin compounds with different substituents,meso-tetra(p-hydroxyphenyl) porphyrin [T(4-HP)P],meso-tetra(p-esterphenyl) porphyrin [T(4-EP)P] and meso-tetra(p-bromophenyl) porphyrin [T(4-BrP)P] have been investigated by using Absorption spectroscopy,fluorescence spectroscopy and picosecond Z-scan technique.
主要采用吸收光谱、荧光光谱和皮秒Z-扫描等实验方法研究了三种不同取代基的卟啉化合物5,10,15,20-四对羟基苯基卟啉[T(4-HP)P]、5,10,15,20-四对酯基苯基卟啉[T(4-EP)P]和5,10,15,20-四对溴苯基卟啉[T(4-BrP)P]的光学及非线性光学性质,并从离域电子共轭结构理论和共振、非共振增强理论进行了分析。
4)  Z-scan
Z-扫描
1.
Z-scan Measurements of the Third-order Nonlinear Optical Properties in AπDπA Carbozole Derivatives;
AπDπA型咔唑衍生物三阶光学非线性的Z-扫描研究
2.
Z-scan Measurement on the Third-order Nonlinear Optical Absorption of Conjugated PPQ Polymer Film;
共轭有机高聚物PPQ薄膜非线性吸收的Z-扫描测量
3.
Gaussian beam Z-scan diffraction theory model for the strong nonlinear absorption materials;
强非线性吸收下高斯光束 Z-扫描衍射理论模型
5)  z scan
z-扫描
1.
Using the single beam Z scan technique with 38 ps pulse at 1.
利用单光束 Z-扫描技术 ,在波长为 1。
2.
The broadening effect of ultrashort laser pulse due to optical components is theoretically calculated and a Z scan system with small internal dispersion based on Al coated mirrors is reported.
本文在理论上计算了超短激光脉冲经过光学部件的展宽效应并实际给出了一种基于镀铝反射镜的小色散 Z-扫描测量系统 ,同时也对实验中的其他重要参数进行了讨论。
6)  Z-scan
Z形扫描
1.
2-D wavelet transform design based on the overlapped Z-scan;
基于交叠Z形扫描的二维小波变换器设计
补充资料:<二>JSD系列吸吮扫描式自洁式过滤器
一、功能与用途
  JSD系列吸吮扫描式自洁式过滤器适用于过滤悬浮状细微杂质,杂质颗粒一般500-25微米,是一种细过滤装置。 
 

二、设备结构与工作原理 
  JSD系列吸吮扫描式自洁式过滤器采用高强度的Johnson楔形滤网,通过压差控制、定时控制自动清洗滤网。当过滤器内杂质积聚在滤网表面引起进出口压差增大到预定数值时,或定时器达到设定时间时,电动控制箱发出信号,使旋转的吸吮装置开始转动,同时排污阀打开。此时系统泄压排水,在吸嘴与滤网内侧接触部分出现一个相对压力低于滤网外侧水压的负压区,迫使部分净循环水从滤网外侧流入吸嘴内部,吸附在滤网上杂质微粒随水流进入吸嘴内并从排污阀排出。特殊设计的Johnson网使得滤网在吸嘴口产生了喷射效果,任何杂质都将被从光滑的内壁上吸走。整个清洗过程大约只需30-50秒,其间不会断流,清洗耗水量少。 
     
  三、主要技术参数  

进出口通径mm506580100125150200250300350
参考流量m3/h254050100120150220400580800
过滤精度μm≥25
阻力损失MPa0.01-0.02
差压设定范围MPa0.02-0.16
清洗时间设定S0-180
工作温度<100
控制方式 压差、定时
电机参数 380V  50HZ      0.15-1.1KW       IP54
清洗耗水量 主管道平均流量的1%左右
工作压力MPa≤4.0MPa(工作压力大于4.0MPa另行设计)

四、结构形式及外形尺寸 
 
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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