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排序方式: 共有136条查询结果,搜索用时 69 毫秒
1.
大耦合孔同轴输出腔的3维解析分析   总被引:6,自引:4,他引:2       下载免费PDF全文
 在高功率微波器件中,通常采用大耦合孔的同轴微波输出腔,该腔为3维结构。采用场等效原理将腔体、耦合孔及其输出负载(行波边界)进行分区,每个区域中的场由界面上的磁流密度决定。采用格林函数积分法可得每个区域中的3维场,再由各个区域的场匹配方程求得腔体的谐振频率、特性阻抗、有载品质因数、模式分布等参数。为腔体的计算和设计提供一种计算模型。  相似文献   
2.
Equations are derived for the coaxial cylinder system in the combined oscillatory and steady-state shear mode. The limitations of the use of the various equations are presented. If the usual linear equations are used, the main limitation, in the case of oscillatory shear only, is that the frequency of measurement should be below 0.016 | *|/(r 2 r 1 )2. Here | *| is the modulus of the complex viscosity, is the density of the liquid andr 1 andr 2 are the radii of the cylinders. Furthermore it is shown that there is a small error in the numerical factor of the usually applied equations. The calculations are set up in such a way that extension to higher harmonics follows in a natural way. An experimental example illustrates the use of the derived equations.  相似文献   
3.
Polystyrene (PS) fibers with core-shell structure were prepared by coaxial electrostatic spinning using liquid epoxy or curing agent as the core and PS solution as the shell. Scratch self-healing coatings were realized by using the healant-loaded core-shell fibers in the matrix.  相似文献   
4.
In this work, we focus on the time-domain simulation of the propagation of electromagnetic waves in non-homogeneous lossy coaxial cables. The full 3D Maxwell equations, that described the propagation of current and electric potential in such cables, are classically not tackled directly, but instead a 1D scalar model known as the telegraphist's model is used. We aim at justifying, by means of asymptotic analysis, a time-domain “homogenized” telegraphist's model. This model, which includes a nonlocal in time operator, is obtained via asymptotic analysis, for a lossy coaxial cable whose cross section is not homogeneous.  相似文献   
5.
Convenient and integration fabrication process is a key issue for the application of functional nanofibers. A surface functionalization method was developed based on coaxial electrospinning to produce ultraviolet(UV) protection nanofibers. The titanium dioxide(TiO2) nanoparticles suspension was delivered through the shell channel of the coaxial spinneret, by which the aggregation of TiO2 nanoparticles was overcome and the distribution uniformity on the surface of polyethylene oxide(PEO) nanofiber was obtained. With the content of TiO2 increasing from 0 to 3%(mass fraction), the average diameter of nanofibers increased from (380±30) nm to (480±100) nm. The surface functionalization can be realized during the electrospinning process to gain PEO/TiO2 composite nanofibers directly. The uniform distribution of TiO2 nanoparticles on the surface of nanofibers enhanced the UV absorption and resistance performance. The maximum UV protection factor(UPF) value of composite nanofibers reaches 2751. This work presented a novel surface-functionalized way for the preparation of composite nanofiber, which has great application potential in the field of micro/nano system integration fabrication.  相似文献   
6.
The coaxial mixers enhance the suspension of concentrated slurries in an agitated reactor. In this research work, the complex slurry suspension and dissemination behavior in a coaxial slurry mixing system (comprised of a close clearance anchor rotating with a low speed and an inner axial impeller rotating with a high speed) was analyzed employing ERT (electrical resistance tomography, a non-intrusive flow visualization technique), and computational fluid dynamics (CFD). The numerical models were validated by comparing the axial solid concentration profiles generated using the ERT data and the CFD simulation results. The influences of various important parameters such as the diameter of the inner axial impeller, the inner impeller type, and the inner impeller spacing on the hydrodynamic characteristics of the slurry suspensions in a coaxial mixing vessel were thoroughly analyzed. The radial and axial velocity profiles of solid particles were generated using the validated mathematical models. The assessment of energy loss due to the solid–solid collisions, the particle–fluid frictions, and the particle–vessel wall collisions was conducted. The evaluation of optimum inner impeller clearance and inner impeller diameter is essential to attain a high degree of solids suspension and dissemination in a coaxial slurry mixing system.  相似文献   
7.
电子学领域的群速超光速实验   总被引:2,自引:0,他引:2  
研究了电信号在阻抗周期失配的光子晶体结构中的群速超光速传播问题,构建了一种具有周期失配性的结构,此种阻抗失配引起非正常色散以及在8 MHz附近出现禁带.正弦调幅信号和窄脉冲信号分别被送入两种超光速实验装置. 实验结果表明,正弦调幅信号在禁带出现群速超光速,群速最大可达到3.52倍光速,而窄脉冲信号始终以正常速度传播.  相似文献   
8.
由于纳米纤维在组织工程支架材料,药物传递载体等方面的潜在应用,使得具有高比表面积的静电纺丝纳米纤维得到了很大的关注。静电纺丝技术是一种简单、有效的微/纳米技术,而同轴静电纺丝则是在传统静电纺丝技术上发展起来的新方法,单步即可制备连续的壳一芯结构纳米纤维或中空纳米纤维。这也使得静电纺丝纳米纤维在组织工程和药物缓释等领域有...  相似文献   
9.
 研制了水介质同轴电容的实验装置,在此装置上进行了大量的实验。测得μs级充电时,水介质同轴电容分别在正脉冲和负脉冲充电时的击穿电压,负击穿电压的理论值与测量值相差较大,正击穿电压的理论值大于测量值的18%左右,对此实验结果进行了分析。此外,当去离子水的电阻率从13MΩ·cm降到5 MΩ·cm时,水介质同轴电容器的击穿电压基本不变。  相似文献   
10.
紧凑型L波段同轴相对论返波振荡器的粒子模拟   总被引:1,自引:4,他引:1       下载免费PDF全文
 设计了紧凑型L波段同轴相对论返波振荡器,通过粒子模拟研究了L波段同轴相对论返波振荡器相互作用的物理过程,并对器件的电磁结构进行了优化和改进。分析表明,采用同轴慢波结构可以在较低的外加磁场下实现L波段返波振荡器的微波输出,同时可以大大减小微波器件的径向尺寸。这是因为同轴慢波结构的TM01模式有类似于TEM模的性质,没有截止频率,但纵向电场不为零,电子束能够与它发生强相互作用过程。粒子模拟优化结果表明,在器件半径仅为4.0 cm,电子束能量240 keV,电子束流1.8 kA,导引磁场仅为0.75 T时,返波振荡器可以在频率1.60 GHz处获得较大功率的微波输出, 平均峰值功率达140 MW,平均峰值功率效率约为32%。  相似文献   
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