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1.
Investigation of Radiation Effects in Beam Window Materials for Use in ADS Spallation Neutron Source System;
加速器驱动洁净能源系统散裂中子源束窗材料辐照效应研究
2.
The Research of the Beam Phase and Energy Test System for DTL in the Proton Accelerator of CSNS
散裂中子源质子加速器束流相位和能量测试系统设计探讨
3.
The Spallation Neutron Source Providing the Most Intense Pulsed Neutron Beams in the World Is Being Built in Tennessee by the U.S. Department of Energy.
美国能源部正在田纳西州建造世界上最强脉冲中子束的散裂中子源。
4.
Scattering of SH Wave on Crack in Functionally Graded/Piezoelectric Layers
功能梯度/压电材料层合中裂纹对SH波的散射
5.
SH-Wave Scattering Caused by the Crack in Functionally-Graded Piezoelectric Layers
功能梯度/压电材料中裂纹对SH波的散射问题
6.
Material Surface Modification by Pulsed Plasma;
脉冲离子束在材料表面改性中的应用
7.
Magnet Design of Chinese Spallation Neutron Source Rapid Cycling Synchrotron;
中国散裂中子源快循环同步加速器磁铁的设计
8.
To add nonfissionable matter to(fissionable material)so as to prevent use in an atomic weapon.
使(核材料)中毒(向可裂变材料中)加入不可裂变物质以防止(这种可裂变物质)用于原子核武器
9.
Application of Neutron Scattering for New Magnetic Material Studies
中子散射在新型磁性材料研究中的应用
10.
GSMBE Growth and Characterization of Fundamental and QCL Materials;
气态源分子束外延材料生长及特性和量子级联激光器材料生长研究
11.
Adsorption and Diffusion Behaviors of Fluid Molecules in Microporous Materials;
流体分子在微孔材料中吸附与扩散行为研究
12.
Fracture Analysis of Piezoelectric Materials with Centric Cracks
中心裂纹压电材料板的断裂问题分析
13.
DEM Simulation and Experimental Investigation of Ceramics Cracks in Machining Process;
陶瓷材料加工裂纹的离散元模拟及实验研究
14.
The spallation neutron source induced by intermediate energy proton-nucleus interaction is a key point and has not solved yet for the transmutation and applications.
散裂中子源是这个系统的一个重要部分,也是一个急需解决的重点。
15.
Nuclear energy is concentrated, but the fissionable material, uranium 235, is well under 1% of the natural or mined uranium 235.
原子能能量非常集中,但裂变材料铀235在天然铀矿中含量不到1%。
16.
The Application of the CBED and the GPA in the Study of the Residual Strain of the Material
汇聚束电子衍射及几何像分析在测量材料残余应变中的应用
17.
Electron Beam Surfi-Sculpt Technology and Its Application in Composites Manufacturing Field
电子束“毛化”技术及其在复合材料制造领域中的应用
18.
Electron Beam Welding of Dissimilar Materials between QCr0.8 and TC4;
QCr0.8/TC4异种材料电子束焊接工艺研究