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1.
本文引入多项式矩阵的广义逆,讨论了几种广义逆的性质,并以此为工具,探讨多项式矩阵 方程的解,得到方程有解的充要条件以及解的一般形式,在无精确解时研究方程的近似解,并在 相容与不相容的情况下探讨最小范数解与最小均方解.  相似文献   
2.
目前所用的动态有限元通常是以质量矩阵和刚度矩阵的频率展开式来表述的.本文提出单一的阻抗矩阵展式,从而无需分别导出质量阵和刚度阵的展开项,使建立动态有限元的工作大为简化,并可避免出现不正确的刚度阵展开项的矛盾。此外,还指出质量阵、刚度阵展开项和阻抗阵展开项之间存在一定的关系.对长方形弯曲板元,导出了直到二阶的阻抗阵展开项,并作为算例,计算了一个正方形悬臂板的固有频率。  相似文献   
3.
《Composite Interfaces》2013,20(1):75-94
Interfacial debonding behavior is studied for unidirectional fiber reinforced composites from both experimental and analytical viewpoints. A new type of two-dimensional unidirectional model composite is prepared using 10 boron fibers and transparent epoxy resin with two levels of interfacial strength. In situ observation of the internal mesoscopic fracture process is carried out using the single edge notched specimen under static loading. The matrix crack propagation, the interfacial debonding growth and the interaction between them are directly observed in detail. As a result, the interfacial debonding is clearly accelerated in specimens with weakly bonded fibers in comparison with those with strongly bonded fibers. Secondary, three-dimensional finite element analysis is carried out in order to reproduce the interfacial debonding behavior. The experimentally observed relation between the mesoscopic fracture process and the applied load is given as the boundary condition. We successfully evaluate the mode II interfacial debonding toughness and the effect of interfacial frictional shear stress on the apparent mode II energy release rate separately by employing the present model composite in combination with the finite element analysis. The true mode II interfacial debonding toughness for weaker interface is about 0.4 times as high as that for a stronger interface. The effect of the interfacial frictional shear stress on the apparent mode II energy release rate for the weak interface is about 0.07 times as high as that for the strong interface. The interfacial frictional shear stress and the coefficient of friction for weak interface are calculated as 0.25 and 0.4 times as high as those for strong interface, respectively.  相似文献   
4.
范钦柏  邓薰南 《化学学报》1990,48(6):561-565
本文应用循环伏安法研究了n型碲化镉单晶电极的光致腐蚀行为; 并运用PAR M368电化学阻抗系统测得了此电极在不同电位下的交流复阻抗图, 估算了此电极表面态密度及其它参数。实验结果表明, n-CdTe/液体结具有Sehottky结的特征, 此电极的Fermi能级可能有"钉扎"现象。  相似文献   
5.
庞志成  汪尔康 《化学学报》1996,54(5):487-490
本文成功地运用四电极系统阻抗谱技术来研究液/液界面上的离子传递。提出了从表观阻抗曲线获取真实界面阻抗曲线的方法。并用此方法对四甲铵离子在水/硝基苯界面上的传递进行了实际的动力学研究, 证实了四甲铵离子在水/硝基苯界面上的传递是可逆离子传递。  相似文献   
6.
铈降低在硫酸溶液中生长的阳极Pb(II)氧化物膜的电阻的研究   总被引:11,自引:1,他引:10  
应用电化学阻抗频谱法、线性电位扫描法和光电流技术研究了在4.5 mol· dm~(-3) H_2SO_4溶液中Pb-1%(at.)Ce(简称Pb-1Ce)合金在0.9 V (vs. Hg/Hg_2SO_4电极)生长的阳极Pb(II)氧化物膜的电阻较纯铅的低的原因。实验结 果表明,Ce阻抑阳极Pb(II)氧化物膜的生长并增加其孔率,从而降低其电阻。  相似文献   
7.
《Composite Interfaces》2013,20(3):261-276
The publisher notifies the reader that this article has been withdrawn due to copyright reasons that came to light after publication. The publisher apologizes to the reader for any inconvenience.  相似文献   
8.
《Composite Interfaces》2013,20(4):383-393
Two types of SiC fiber tows (Hi-Nicalon? and Hi-Nicalon S?) were coated with stabilized ZrO2 and composited using preceramic polymer impregnation pyrolysis to form SiC/SiCf minicomposites. Properties of the fiber/matrix interface in composites were investigated using the indentation method in which a pyramidal indenter was used to push on an individual fiber and cause sliding at the interface. The interfacial frictional stresses were determined from the force–displacement relation. The composites reinforced by the ZrO2-coated fibers have smaller interfacial frictional stresses than composites reinforced by the initial fibers and show fibers sliding relatively more easily with respect to the SiC matrix.  相似文献   
9.
《Composite Interfaces》2013,20(4):363-377
The objective of this work is to study the effect of composite processing conditions on the nature of the fiber–matrix interface in titanium matrix composites and the resulting fragmentation behavior of the fiber. Titanium matrix, single fiber composites (SFCs) were fabricated by diffusion bonding and tensile tested along the fiber axis to determine their interfacial load transfer characteristics and the resulting fiber fragmentation behavior. Two different titanium alloys, Ti-6Al-4V (wt%) and Ti-14Al-21Nb (wt%), were used as matrix material with SiC (SCS-6) fibers as reinforcement. The tensile tests were conducted at ambient temperature and were continuously monitored by acoustic emission. It was observed that the Ti-6Al-4V/SCS-6 composite system exhibited a greater degree of fiber–matrix interfacial reaction, as well as a rougher interface, compared to Ti-14Al-21Nb/SCS-6 composites. Acoustic emissions during tensile testing showed that most of the fiber fractures in Ti-6Al-4V/SCS-6 occurred at strains below ~5% and the fragmentation ceased at ~10% strain corresponding to specimen necking. In contrast, the Ti-14Al-21Nb/SCS-6 composite deformed without necking and fiber fractures occurred throughout the plastic range until final fracture of the specimen at about 12% strain. The markedly different fragmentation characteristics of these two composites were attributed to differences in the fiber–matrix interfacial regions and matrix deformation behavior.  相似文献   
10.
《Composite Interfaces》2013,20(6):589-609
The transverse properties of unidirectional metal matrix composites (MMCs) are dominated by the fiber/matrix interfacial properties, residual stresses and matrix mechanical response. In order to monitor and study, in situ, the failure of interfaces in titanium-based composites subjected to transverse loading conditions, an ultrasonic imaging technique has been developed. The interface was imaged ultrasonically and the change in ultrasonic amplitude with the transverse loading was monitored, indicating the sensitivity of the technique to fracture and deformation of interfaces. This change in amplitude has been explained in terms of the multiple reflection theory of ultrasonic waves. The multiple reflection theory enabled estimation of the interfacial deformation and debonding as a function of loading. The ultrasonic technique was also used in conjunction with finite element modeling in order to quantify the fiber/matrix interfacial transverse strength in situ in MMCs.  相似文献   
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