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1)  honeycomb sandwich structure
蜂窝夹心结构
2)  honeycomb sandwich structure
蜂窝夹层结构
1.
Experimental study of the cocure process with the vacuum bag method for honeycomb sandwich structure;
蜂窝夹层结构真空袋共固化工艺过程实验研究
2.
Core crush of Nomex honeycomb sandwich structure during cocuring process with vacuum bag
Nomex蜂窝夹层结构真空袋共固化过程蜂窝变形
3.
The mechanical properties and process properties of SY-24B film adhesive using for bonding facing to core of honeycomb sandwich structure were presented in this paper, the mechanical properties of a two part paste adhesive SY-21 were also discussed for comparing.
介绍了蜂窝夹层结构用面板胶SY -2 4B胶膜的力学性及工艺性能 ,并将其与双组分糊状胶SY -2 1作对比。
3)  Nomex honeycomb sandwich construction
Nomex蜂窝夹层结构
1.
Through testing the mechanical properties of the Nomex honeycomb sandwich construction with different curing pressure, the effect of the curing pressure on the performance of sandwich constructions has been discussed.
通过测试不同固化压力下的Nomex蜂窝夹层结构的力学性能,讨论了固化压力对蜂窝夹层结构性能的影响。
4)  Honeycomb sandwich
蜂窝夹层结构
1.
ffect of resin system,resin content of prepreg and the composition of woven fabric on roll pell strength of honeycomb sandwich panel,which requires direct co-curing between prepreg and honeycomb,has been investigated in this paper.
对预浸料与蜂窝直接接触共固化成形的蜂窝夹层结构的滚筒剥离强度进行了研究,主要讨论了树脂基体、预浸料树脂含量及织物构成对滚筒剥离强度的影响。
2.
Honeycomb sandwich has become an important material in designing radomes instruction.
蜂窝夹层结构已成为雷达罩结构设计中广泛应用的重要材料。
3.
In this paper the repair of damaged honeycomb sandwich radome was studied.
本文研究了蜂窝夹层结构雷达天线罩损伤的修补。
5)  Honeycomb sandwich structures
蜂窝夹层结构
1.
Frequency shifts often take place in the vibration tests of satellites, tests show that the frequency drift comes from the nonlinearity of the honeycomb sandwich structures.
蜂窝夹层结构广泛应用在航空航天领域,特别是在现代卫星结构中,它已经成为主要的承力结构。
6)  honeycore structures
蜂窝夹芯结构
1.
A theoretical model of honeycore structures in a metal thermal protection system is developed,which is on the base of grey body theory.
对防热系统的蜂窝夹芯结构,采用全灰体假设同时考虑热传导和热辐射两种传热形式对温度场的耦合作用,利用稳态时热流量守恒建立了蜂窝芯层温度场的非线性积分方程。
补充资料:夹心结构配位化合物
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性质:多个具离域π键的环状分子与金属原子(或离子)通过多中心π键形成的类似夹心或多层三明治结构的一类配位化合物。这类配位化合物需要符合两个条件:(1)具有离域π键的环状分子。(2)金属原子处于环的n重对称轴上。常见的形成夹心结构配位化合物的配体有环戊二烯、苯、卟啉和酞菁等。如双环戊二烯基合铁[(η5-C5H5)2Fe]、二苯基合铬[(η5-C6H5)2Cr]、稀土酞菁[Ln(Pc)2]、金属卟啉[M(Tpp)2](M=Ce、Zr、Hf、Th、U;Tpp=四苯基卟啉)以及不对称的和三层的夹心配位化合物:四苯基卟啉酞菁合镧[La(Tpp)(Pc)]、双-四苯基卟啉酞菁合二钐[Sm2(Tpp)2(Pc)]和四苯基卟啉二酞菁合二钐[Sm2(Tpp)(Pc)2]等。由于这些配位化合物结构特殊,层之间的π-π键相互作用而具有特殊的光、电、磁性能,可用于制作各种功能材料。

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