118 resultados para freeze fracture
em Chinese Academy of Sciences Institutional Repositories Grid Portal
Resumo:
叶绿素突变泛指能导致叶绿素代谢失调的核基因或叶绿体基因突变。发生叶绿素突变的植物个体普遍表现为叶色的变化,目前已报道的多数叶绿素突变体为人工诱变产物。叶绿素缺失突变导致的叶结素代谢缺陷实际上反映了叶绿体发育过程的缺陷,研究叶绿素突变更重要的意义是在于阐明叶绿体发育过程。 本研究所用材料1103s是一类特殊的叶绿素突变体,为籼性光敏核不育水稻(Oryza sativa L.)8902s群体中发现的自发突变体。该突本所具有的失绿特性为特定温度条件下才表现出来的瞬时性状,在环境温度恢复后,失绿组织可复发。遗传分析表明该突变由隐性核基因控制。本文不1103s所具有的温度敏感和失绿复绿特性,在亚细胞水平和生理化水平进行了详细的探讨。 叶绿素含量的检测表明,诱导后表现失绿的叶片组织内叶绿素含量明显降低,叶绿素a/b比值升高,原脱植基叶绿素含量低于绿色组织。失绿组织中的这种原脱植基叶绿素在失绿组织中含量的减少是由两方面因素造成的,其一是叶绿素合成过程中原脱植基叶绿素合成之前的某一步过程反应受阻;其二是原脱植基叶绿素向叶绿素转化的过程是正常进行的。 对1103s叶绿体内部的超微结构观察表明:1.控制叶绿素缺失性状的是一多效基因。该基因在特定温度条件下表达时,不仅影响到叶绿体的发育,也对细胞质中的其他细胞器产生重要的影响,其结果是细胞质中的高度有序的内膜系统被大量形状不规则的泡状结构所取代。放大后发现,这类泡状结构由(1)线粒体(2)功能未知的泡状结构I,其内部含颗粒状物质泡结构被膜内还有数层不连续的膜残片(3)功能未知的泡状结构II,其内部含大颗粒状物质。2.该突变体表达失绿和复绿过程中,叶绿体内部膜结构的变化伴随叶绿素含量的变化也有退脂和恢复的过程,但与已报道的其他突体有两个明显的不同:首先,在退化细胞的叶绿体内未观察到前片层体的存在。前片层体是叶绿体发育过程中黄化体阶段常见的非常明显的特殊结构,在电镜下为有规律的晶格状结构。已有研究表明,前片层体的形成与原脱植基叶绿素的积累有密切关系。与组培白化苗中检测到的结果不同,失绿组织中原脱植基叶绿素的含量不但没有积累,反而少于绿色组织中的含量,而造成该突变体在失绿过程中质体内无前片层体形成。其次,1103s在叶绿体退化过程中类囊体膜的变化不同于其化温敏的转绿型叶绿素突变体,尤其是在失绿过程中,其类囊体膜不是以直接解体的方式减少而是以单类囊体膜紧靠为主要特征。 对野生型 8902s与1103s类囊体膜结构的冰冻蚀刻分析表明,1103s失绿叶片上的失绿组织和绿色组织中,EFs面的大颗粒结构均异常。其异常之处表现在每个颗粒明显解离成两个亚单位(上面观),而在野生型8902s中则无上述现象出现。亚单位的解离程度在失绿组织中更明显。有间接证据研究表明,EFs面上的大颗粒代表PS II。如果该推论正确,那么失绿叶片的失绿组织和绿色组织中,PS II都可能是异常的。 另外,通过对失绿组织和绿色组织全叶蛋白双向电泳图谱的比较,得到了一个特异缺失的叶蛋白组分,该蛋白的分子量为51kd。此蛋白在失绿叶片上的失绿组织和绿色组织之间存在组织差异性。通过对该蛋白在不同温度处理和不同遗传背景下的变化规律分析,发现该蛋白是一存在于许多水稻品系叶片中的高含量组分,此蛋白表达本身不受变温诱导过程的影响,而是受另一感温过程的调控。初步分析表明该蛋白为一失绿相关蛋白。 综上所述,1103s所具有的失绿和复绿特性是核基因多效表达的结果,有一感温过程调控下游蛋白表达的复杂过程。此外,该突变特性很可能与PS II的结构异常有关。
Resumo:
The influence of lanthanum ions on the polymorphic phase of egg phosphatidylethanolamine and dielaidoylphosphatidylethanolamine (PE and DEPE) has been investigated by means of P-31-nuclear magnetic resonance (P-31-NMR) and high sensitivity differential scanning calorimetry (DSC) techniques. P-31-NMR experiments show that lanthanum ions promote the formation of the hexagonal II phase at temperatures lower than those of the pure egg PE, DSC results also show that lanthanum ions induce the formation of hexagonal II phase in DEPE liposomes even al very low ion concentration, The effect of lanthanum ions on the polymorphism of PE liposomes is much greater than that of calcium.
Resumo:
This paper presents an analysis of crack problems in homogeneous piezoelectrics or on the interfaces between two dissimilar piezoelectric materials based on the continuity of normal electric displacement and electric potential across the crack faces. The explicit analytic solutions are obtained for a single crack in an infinite piezoelectric or on the interface of piezoelectric bimaterials. For homogeneous materials it is found that the normal electric displacement D-2, induced by the crack, is constant along the crack faces which depends only on the remote applied stress fields. Within the crack slit, the perturbed electric fields induced by the crack are also constant and not affected by the applied electric displacement fields. For bimaterials, generally speaking, an interface crack exhibits oscillatory behavior and the normal electric displacement D-2 is a complex function along the crack faces. However, for bimaterials, having certain symmetry, in which an interface crack displays no oscillatory behavior, it is observed that the normal electric displacement D-2 is also constant along the crack faces and the electric field E-2 has the singularity ahead of the crack tip and has a jump across the interface. Energy release rates are established for homogeneous materials and bimaterials having certain symmetry. Both the crack front parallel to the poling axis and perpendicular to the poling axis are discussed. It is revealed that the energy release rates are always positive for stable materials and the applied electric displacements have no contribution to the energy release rates.
Resumo:
A dislocation theory of fracture criterion for the mixed dislocation emission and cleavage process in an anisotropic solid is developed in this paper. The complicated cases involving mixed-mode loading are considered here. The explicit formula for dislocations interaction with a semi-infinite crack is obtained. The governing equation for the critical condition of crack cleavage in an anisotropic solid after a number dislocation emissions is established. The effects of elastic anisotropy, crack geometry and load phase angle on the critical energy release rate and the total number of the emitted dislocations at the onset of cleavage are analysed in detail. The analyses revealed that the critical energy release rates can increase to one or two magnitudes larger than the surface energy because of the dislocation emission. It is also found elastic anisotropy and crystal orientation have significant effects on the critical energy release rates. The anisotropic values can be several times the isotropic value in one crack orientation. The values may be as much as 40% less than the isotropic value in another crack orientation and another anisotropy parameter. Then the theory is applied to a fee single crystal. An edge dislocation can emit from the crack tip along the most highly shear stressed slip plane. Crack cleavage can occur along the most highly stressed slip plane after a number of dislocation emissions. Calculation is carried out step by step. Each step we should judge by which slip system is the most highly shear stressed slip system and which slip system has the largest energy release rate. The calculation clearly shows that the crack orientation and the load phase angle have significant effects on the crystal brittle-ductile behaviours.
Resumo:
Micro-fracture toughness in one nanoceramic composite, Al_2O_3/SiC_{nano}, is measured by Nanoindentation tests. Microscopy is adopted to probe that all nanoindentations are local at Al_2O_3, matrix component of the current composite and measure length of radial micro-cracks at corriers of nanoindentation. The measured fracture toughness at the shallow indentation is higher than those at deeper ones. Relations between micro-toughness and peak loads as well as peak depths are discussed. And an analysis to the energy consumed during the indentation and fracture toughness explained that, the lower fracture toughness measured in the deeper impression probably resulted from its fracture modes yielded by higher load and larger depth.
Resumo:
With the finite volume method, a 2D numerical model for seepage in unsaturated soil has been established to study the rainfall infiltration in the fractured slope.The result shows that more rain may infiltrate into the slope due to existing fracture and then the pore pressure rises correspondingly. Very probably, it is one of the crucial factors accounting for slope failure. Furthermore a preliminary study has been conducted to investigate the influence of various fracture and rainfall factors such as the depth, width and location of a crack, surface condition, rainfall intensity and duration. Pore pressure and water volumetric content during the transient seepage are carefully examined to reveal the intrinsic mechanism.
Resumo:
On the basis of the well-known shear-lag analysis of fibre/matrix interface stresses and the assumption of identical axial strains in the fibre and matrix, a new model for predicting the energy release rate of interfacial fracture of the fibre pull-out test model is attempted. The expressions for stresses in the fibre, matrix and interface are derived. The formula for interfacial debonding energy release rate is given. Numerical calculations are conducted and the results obtained are compared with those of the existing models.
Resumo:
提出亚微秒单脉冲应力波载荷作用下II型裂纹的平板冲击实验技术。加载率为dK/dt-10~8MPa·m~{”/d}·s~{-1}。实验中由锰铜应力片和弹性波理论分别测定和计算了压应力;通过微观分析确定了动态裂纹的平均扩展长度;引进等效应力强度因子,用动态断裂理论确定了60号钢的动态断裂韧性K_{Id}和K_{IId};建立了亚微秒冲击载荷作用下确定材料动态断裂韧性的方法。
Resumo:
Ultrasonic fractography and scanning electronic microscopy (SEM) are used to determine the direct relationship between the fracture surface morphology and the main crack velocity during the rapid rupture of polymethylmethacrylate (PMMA). Two critical crack velocities are found for the fracture. Quasi-parabolic markings will appear when the crack speed exceeds the first critical speed. Crack propagating at speed above the second critical speed leaves a thicket of small branches penetrating the surface behind them. Both critical speeds are functions of the thickness of the specimens.
Resumo:
On the basis of microscopical analyses of the fiber distribution and longitudinal shear deformation in unidirectional fiber composites, a simple approach is presented for characterizing the interfacial sheer strength and fracture toughness.
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A new compatible finite element method for strain gradient theories is presented. In the new finite element method, pure displacement derivatives are taken as the fundamental variables. The new numerical method is successfully used to analyze the simple strain gradient problems – the fundamental fracture problems. Through comparing the numerical solutions with the existed exact solutions, the effectiveness of the new finite element method is tested and confirmed. Additionally, an application of the Zienkiewicz–Taylor C1 finite element method to the strain gradient problem is discussed. By using the new finite element method, plane-strain mode I and mode II crack tip fields are calculated based on a constitutive law which is a simple generalization of the conventional J2 deformation plasticity theory to include strain gradient effects. Three new constitutive parameters enter to characterize the scale over which strain gradient effects become important. During the analysis the general compressible version of Fleck–Hutchinson strain gradient plasticity is adopted. Crack tip solutions, the traction distributions along the plane ahead of the crack tip are calculated. The solutions display the considerable elevation of traction within the zone near the crack tip.
Resumo:
A numerical model is proposed to simulate fracture induced by the coalescence of numerous microcracks, in which the condition for coalescence between two randomly nucleated microcracks is determined in terms of a load-sharing principle. The results of the simulation show that, as the number density of nucleated microcracks increases, stochastic coalescence first occurs followed by a small fluctuation, and finally a newly nucleated microcrack triggers a cascade coalescence of microcracks resulting in catastrophic failure. The fracture profiles exhibit self-affine fractal characteristics with a universal roughness exponent, but the critical damage threshold is sensitive to details of the model. The spatiotemporal distribution of nucleated microcracks in the vicinity of critical failure follows a power-law behaviour, which implies that the microcrack system may evolve to a critical state.
Resumo:
A strengthening mechanism arising from a type of inorganic nanostructure in the organic matrix layers is presented by studying the structural and mechanical properties of the interfaces in nacre. This nanostructural mechanism not only averagely increases the fracture strength of the organic matrix interfaces by about 5 times, but also effectively arrests the cracks in the organic matrix layers and causes the crack deflection in this biomaterial. The present investigation shows that the main mechanism governing the strength of the organic matrix interfaces relies on the inorganic nanostructures rather than the organic matrix. This study provides a guide to the interfacial design of synthetic materials.
Resumo:
Essential work of fracture (EWF) analysis is used to study the effect of the silica doping level on fracture toughness of polyimide/silica (PI/SiO2) hybrid films. By using double-edge-notched-tension (DENT) specimens with different ligament lengths, it seems that the introduction of silica additive can improve the specific essential work of fracture (w (e) ) of PI thin films, but the specific non-essential work of fracture (beta w (p) ) will decease significantly as the silica doping level increasing from 1 to 5 wt.%, and even lower than that of neat PI. The failure process of the fracture is investigated with online scanning electron microscope (SEM) observation and the parameters of non-essential work of fracture, beta and w (p) , are calculated based on finite element (FE) method.
Resumo:
In the present paper, it is shown that the zero series eigenfunctions of Reissner plate cracks/notches fracture problems are analogous to the eigenfunctions of anti-plane and in-plane. The singularity in the double series expression of plate problems only arises in zero series parts. In view of the relationship with eigen-values of anti-plane and in-plane problem, the solution of eigen-values for Reissner plates consists of two parts: anti-plane problem and in-plane problem. As a result the corresponding eigen-values or the corresponding eigen-value solving programs with respect to the anti-plane and in-plane problems can be employed and many aggressive SIF computed methods of plane problems can be employed in the plate. Based on those, the approximate relationship of SIFs between the plate and the plane fracture problems is figured out, and the effect relationship of the plate thickness on SIF is given.