利用该特性制得了碳团簇型微波隐身材料。
According to this traits, we made carbon cluster-like microwave stealth material.
碳团簇型微波隐身材料,是我所从理论上根据对分子振转频率与结构之间的关系,通过计算而设计与研制的一种新型微波隐身材料。
Carbon cluster-like radar absorbing material is a new material designed and developed based on the relationship between structure and vibration-rotation motion levels of planar cyclocarbon cluster.
将放电介质由水改为液氮,凭借其化学惰性和超强的冷却作用得到了单壁碳纳米角团簇。
When water was replaced by liquid nitrogen, clusters of single-walled carbon nanohorns (SWCNHs) were obtained due to the chemical inertia and the strong cooling effect of liquid nitrogen.
通过微波隐身材料结构设计,采用密度较小的碳团簇型原料,制备得到了具有良好吸波性能的双层结构碳团簇型微波隐身涂层材料。
The bi layer structural carbon cluster like microwave stealthy material coating was designed and prepared by making use of low density carbon cluster like material.
计算所得的奇数高碳团簇具有准笼状类富勒烯结构,其最低能量异构体都含有一个两配位的碳原子。
The lowest energy isomers of the odd-numbered clusters are cage-like pseudo-fullerenes containing a single two-fold coordinated carbon atom in addition to trivalent carbon atoms.
我们的研究目标是通过理论计算设计更多含有平面四配位碳的稳定团簇,探索其作为新型纳米材料结构单元的可能性。
We aim to computationally design more stable species with tetracoordinate planar carbon, and to explore their potential applications as building blocks for new nanomaterials.
通过微波隐身材料结构设计,采用密度较小的碳团簇型原料,制备得到了具有良好吸波性能的双层结构碳团簇型微波隐身涂层材料。
Based on the structure design of microwave stealth material, the absorbing properties of bi-layer carbon cluster-like microwave stealthy materials with different thickness have been studied.
通过微波隐身材料结构设计,采用密度较小的碳团簇型原料,制备得到了具有良好吸波性能的双层结构碳团簇型微波隐身涂层材料。
Based on the structure design of microwave stealth material, the absorbing properties of bi-layer carbon cluster-like microwave stealthy materials with different thickness have been studied.
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