95 resultados para REINFORCED POST


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An eigenfunction expansion-variational method based on a unit cell is developed to deal with the steady-state heat conduction problem of doubly-periodic fiber reinforced composites with interfacial thermal contact resistance or coating. The numerical results show a rapid convergence of the present method. The present solution provides a unified first-order approximation formula of the effective thermal conductivity for different interfacial characteristics and fiber distributions. A comparison with the present high-order results, available experimental data and micromechanical estimations demonstrates that the first-order approximation formula is a good engineering closed-form formula. An engineering equivalent parameter reflecting the overall influence of the thermal conductivities of the matrix and fibers and the interfacial characteristic on the effective thermal conductivity, is found. The equivalent parameter can greatly simplify the complicated relation of the effective thermal conductivity to the internal structure of a composite. (c) 2010 Elsevier Ltd. All rights reserved.

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For steady-state heat conduction a new variational functional for a unit cell of composites with periodic microstructures is constructed by considering the quasi-periodicity of the temperature field and in the periodicity of the heat flux fields. Then by combining with the eigenfunction expansion of complex potential which satisfies the fiber-matrix interface conditions, an eigenfunction expansion-variational method (EEVM) based on a unit cell is developed. The effective transverse thermal conductivities of doubly-periodic fiber reinforced composites are calculated, and the first-order approximation formula for the square and hexagonal arrays is presented,which is convenient for engineering application. The numerical results show a good convergency of the presented method, even through the fiber volume fraction is relatively high. Comparisons with the existing analytical and experimental results are made to demonstrate the accuracy and validity of the first-order approximation formula for the hexagonal array.

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Post-steam-treatment is a facile and effective method for improving the catalytic performances of Mo/HZSM-5 catalysts in methane dehydroaromatization under nonoxidative conditions. The treatment can enhance the stability of the catalyst and also give a higher methane conversion and a higher yield of light aromatics, as well as a decrease in the formation rate of carbonaceous deposits. (27)Al, (29)Si, and (1)H multinuclear magic angle spinning nuclear magnetic resonance, X-ray photoelectron spectroscopy, X-ray diffraction, X-ray fluorescence spectroscopy, and thermogravimetric analysis measurements as well as catalytic reaction evaluations were employed to conduct comparative studies on the properties of the catalysts before and after the post-steam-treatment. The results revealed that the number of free Bronsted acid sites per unit cell decreased, while more Mo species migrated into the HZSM-5 channels for the 6Mo/HZSM-5 catalysts after the post-steam-treatment. In addition, the average pore diameter was also larger for the post-steam-treated catalysts, and this was advantageous for mass transport of the reaction products. However, a severe post-steam-treatment, i.e., with longer treating time, of the 6Mo/HZSM-5 catalyst will lead to the formation of the Al(2)(MoO(4))(3) phases, which is detrimental to the reaction.

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Plant cell cultures have been suggested as a feasible technology for the production of a myriad of plant-derived metabolites. However, commercial application of plant cell culture has met limited success with only a handful of metabolites produced at the pilot- and commercial-scales. To improve the production of secondary metabolites in plant cell cultures, efforts have been devoted predominantly to the optimization of biosynthetic pathways by both process and genetic engineering approaches. Given that secondary metabolism includes-the synthesis. metabolism and catabolism of endogenous compounds by the specialized proteins, this review intends to draw attention to the manipulation and optimization of post-biosynthetic events that follow the formation of core metabolite structures in biosynthetic pathways. These post-biosynthetic events-the chemical and enzymatic modifications, transport, storage/secretion and catabolism/degradation have been largely unexplored in the past. Potential areas are identified where further research is needed to answer fundamental questions that have implications for advanced bioprocess design. Anthocyanin production by plant cell cultures is used as a case study for this discussion, as it presents a good example of compounds for which there are extensive research publications but still no commercial bioprocess. It is perceived that research on post-biosynthetic processes may lead to future opportunities for significant advances in commercial plant cell cultures. (C) 2002 Elsevier Science Inc. All rights reserved.

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随着计算机应用从桌面环境扩展到移动环境,计算机用户从专业化走向大 众化,传统的 WIMP界面的缺点逐渐体现出来。笔式用户界面作为 Post-WIMP 界面的一种重要形式,具有自然、和谐的交互特性,成为当前研究的热点之一。 针对这一方向,本文对笔式用户界面范式展开了研究。首先,本文阐述了一种 新的基于笔交互的界面范式 PGIS,定义了纸、小工具等交互组件,以及各种组 件的显示形态及交互形式。然后,实现了 PGIS 界面,包括交互对象的管理、 显示等内容。最后,详细介绍了 PGIS 界面的使用过程,并用一个应用实例加 以验证。为了支持上层应用程序的可移植性和可维护性,PGIS界面的使用采用 了模型驱动构架的开发思想。目前,我们基于 PGIS 界面开发了几款优秀的笔 式交互软件,如幼儿教学系统、便签本系统、篮球战术板系统等。这些系统完 全满足用户对笔交互应用程序的需求,目前可在 Linux 系统、Windows 系统等 多种系统上运行。PGIS界面范式的可行性也因此得到了很好的验证。 本文的主要内容有以下几点: 1. 阐述了一种 Post-WIMP范畴下的新的界面范式:PGIS。 本文在对Post-WIMP界面做了充分地理解和分析的基础上,阐述了一种新 的界面范式:PGIS。这是一种基于笔交互的界面范式,文中对该范式的纸笔隐 喻方式、所包含的内容、各交互组件的表现形式、以及各组件间的静态及动态 关系做出了详细的描述。 2. 实现了PGIS界面。 为了验证PGIS界面范式的可行性,并直接支持基于 PGIS范式的应用程序 开发,本文详细介绍了PGIS界面的实现细节,其中包括PGIS界面中所包含的 元素、PGIS界面中交互对象的显示、交互对象的管理、以及交互对象对基本原 语的转换和响应。 3. 介绍了 PGIS界面的使用过程。 整个使用过程采用模型驱动架构的思想,引入对以下三个子模块的调用: 与平台相关的底层核心库和 PGIS 引擎、与平台无关的场景设计工具。这三个 子模块决定了上层应用程序的可移植性和可维护性。另外,场景设计工具提供 了代码自动生成的功能,大幅度缩短了应用程序的开发周期。 4. 实现了一个基于 PGIS界面的幼儿教学系统。 为了说明 PGIS界面的使用流程,本文设计并实现了一个基于PGIS界面的 幼儿教学系统。在开发过程中,大部分工作在场景设计工具中快速完成,小部 分工具集中在数据管理库、场景任务库的开发上。该系统的评估结果很好地验 证了 PGIS界面范式的可行性。

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Experimental observations on micromorphologies around broken fibers in glass-fiber-reinforced epoxy matrix composites reveal different kinds of highly oriented patches at the circumambience of broken fibers, whereas the bulk of the matrix has been observed to be largely isotropic. These patches are interpreted to correlated areas where the stress gradients of the matrix are formed after fiber breaking, but the underlying cause for the orientation is still unknown. The authors have modified an embedded cell model to explain the experimental phenomena. The finite element simulation indicates that the surfaces around broken fibers display a change from an extension micromorphology to a mixed tension and shear micromorphology with the increase of applied strain.

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The damage evolution of fiber-reinforced polypropylene-matrix composites with matrix defects was studied via a Monte Carlo technique combined with a finite element method. A finite element model was constructed to predict the effects of various matrix defect shapes on the stress distributions. The results indicated that a small matrix defect had almost no effect on fiber stress distributions other than interfacial shear stress distributions. Then, a finite element model with a statistical distribution of the fiber strength was constructed to investigate the influences of the spatial distribution and the volume fraction of matrix defects on composite failure. The results showed that it was accurate to use the shear-lag models and Green's function methods to predict the tensile strength of composites even though the axial stresses in the matrix were neglected.

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We investigate the effect of thermal annealing before and after cathode deposition on the stability of polymer light-emitting diodes (PLEDs) based on green fluorescent polyfluorene derivative. The annealed PLEDs exhibit improved charge transport and red-shift emission compared to the as-fabricated device. The stability of the PLEDs is largely enhanced by post-annealing before and after Ca deposition, which is attributed to the enhanced charge transport and the intimate contact between the cathode and the emissive layer.