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1)  defect configuration
缺陷组态
1.
The variation of defect configuration leads this result due to the interaction between doping ion and defects.
从掺杂离子与缺陷的相互作用所造成的缺陷组态变化对该现象进行了解释 。
2)  Structural defect
组织缺陷
1.
The common structural defects in butt rammer made from WC-Co cemented carbides were listed and the evaluating principle and method for material quality of WC-Co alloy were exposed.
列举了人造金刚石生产专用WC-Co硬质合金顶锤材料中的常见组织缺陷,论述了硬质合金材质的评估原理和方法。
3)  Structure defect
组织缺陷
1.
The influence of structure defect on the mechanical property of seamless steel tube;
无缝钢管组织缺陷及对力学性能的影响
2.
The results showed that there existed serious banded structure segregation in metallographic structure of valve disc,theδferrite distributed by chain at crystal boundary,structure defects greatly increased brittleness of valve disc materials.
结果表明:阀碟材料的显微组织中有较严重的带状组织偏析,同时δ铁素体在晶界上呈链状分布,这类组织缺陷大大增加了阀碟材料的脆性,在冲击载荷作用下导致了脆性断裂。
4)  microstructure defect
组织缺陷
1.
The results show that microstructure defects, elbow thickness thinning of tube and insufficient steam quantity cause the bursting.
结果表明,水冷壁管存在的组织缺陷、弯曲处管壁较薄及蒸汽量不足是造成其开裂的主要原因,并提出了相应的预防措施。
2.
Microstructure defects, uneven hot rooling, elbow thickness thinning of tube also affected tube bursting.
另外 ,水冷壁管存在的组织缺陷、轧制不均匀以及弯曲处壁厚减薄也是造成水冷壁管爆裂不可忽略的因素。
5)  Missing tissue
缺陷组织
6)  defect state
缺陷态
1.
Acoustic band gaps and defect states in two-dimensional composite materials;
二维周期性复合介质中声波带隙结构及其缺陷态
2.
Based upon them, we found that the eigenfrequency of defect state is red-shifted with the increasing geometry thickness of defect layer in right-handed materials.
给出了描述掺杂的一维光子晶体结构缺陷态的变化规律及其空间局域度特性的理论表达式。
3.
The defect state was formed by introducing the defect layer into period structure.
通过对光子晶体透射谱的研究,讨论了不同周期数和不同介电常数比对光子晶体带隙的影响,最后通过在周期介质层状结构中引入缺陷层构造了光子缺陷态。
补充资料:电子组态
电子组态
electron configuration

   原子内电子壳层排布的标示。又称电子构型。原子中的电子排布组成一定的壳层,例如 ,硅原子的电子组态是  1s22s22p63s23p2,表示其14个电子中2个排布在1s态,2个排布在2s态,6个排布在2p态,2个排布在3s态和最后 2 个电子排布在3p态,有时可简示为 3s23p2如果一个电子激发到4s态,则相应的电子组态为1s22s22p63s23p4s。或简示为3s23p4s。电子组态清楚地显示出核外电子的排布状况。
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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