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As any of the aboriginal languages in Taiwan, it is a polysyllabic agglutinative language with a stress at the last syllable of a word and without tones.

研究理论与方法本论文的研究方法主要是在结构主义语言观和格位理论的指导下,对卑南语的构词法作微观描写。

Aggregately, we computed 24 reaction pathways, and found out 26 intermediates and 36 transition states in this section.

我们主要研究了Hg和Sn这两种元素在燃烧过程的微观反应特性,研究了17个反应体系,计算了24条反应通道,找到了26个反应中间体和36个反应过渡态。

Interactions of polyhydroxy compounds with the amide in aqueous solutions were discussed as well.

通过分子动力学模拟研究乙二醇和甘油水溶液,研究多元醇水溶液的微观结构的差别。

But current research work is mainly based on the sandstones microscopic anisotropism and the macroscopic anisotropism.

而当前对砂体的研究工作主要集中在对砂体的微观非均质性和宏观非均质性的研究上。

Finally, direct against several difficult point questions of chemical course teaching, for example: Such micro structure contents as atomic structure , chemical bond and molecular structure ,etc, have integrated research , integrate the achievement studied to apply to teaching.

最后,针对化学课程教学的几个难点问题,例如:原子结构、化学键与分子结构等微观结构内容,进行了整合研究,整合研究的成果应用于教学之中。

Secondly, the experimental research advances of cyclopeptide nanotubes using as the templets to produce biologic sensors by synthesis with functional nanomaterials such as electronic, optical and magnetic ones.

进而介绍了环肽纳米管用作生物传感器模板,与功能性纳米材料合成制备生物传感器的实验研究进展,接着介绍了环肽纳米管作为药物或药物载体潜在的应用前景,特别是在某些抗菌和抗感染药物开发设计中的应用以及环肽在不同极性的环境中自组装过程微观机制的MD模拟研究进展,最后介绍了环肽纳米管作为模板,制备磁性、电性纳米材料方面的实验和理论研究进展。

Aiming at solving the problem in the electrochemical oxidation of ammonia wastewater,the tin and antimony electrodes based on titanium were manufactured,the effect of different manufacturing condition to the impact of electrochemical oxidating ammonia wastewater was researched. After researching the influential factor and optimizing the manufacturing condition,the appearance analysis and the electrochemical analysis was hold on, the electroactivated character of the electrodes was studied to provide warrant to its application in the ammonia wastewater.

本论文从电化学氧化法处理含氨氮废水的问题出发,对钛基锡锑电极材料进行研制,考察了不同的制备条件对含氨氮废水的电化学氧化去除的影响,研究了各影响因素并优化了制备条件,并对其进行了表面形貌分析、电化学分析的研究,微观地研究了电极的电催化性能,为其应用于实际氨氮废水处理中提供了依据。

The main research tasks and results are as follows:(1) Through comparing the stress intensity factor of compact tension specimen calculated by finite element software with the theoretical value, the feasibility of calculating fracture parameters of crack tip in ABAQUS software was verified.(2) The relationship between the elastic modulus of the material and research scale was studied based on deriving the cohesive stress theory and other relevant theories. And the elastic modulus of the material on meso-scale was determined.(3) Global model and sub-model of the finite element were built in th...e macro-scale, and stress-strain field nearby the crack tip was analyzed, and the results show that the detailed stress-strain in the crack tip could be obtained by using the sub-model technique.(4) In meso-scale, the crack growth model was also established by assuming the crack propagating along the grain boundary, and the detailed stress-strain field in the crack tip was obtained.(5) The effect of crack length on Von Mises stress, and maximum principal stress and strain was analyzed in meso-scale when equivalent KI equals 30MPa.m1/2. And the results show that except for crack tip area, the stress-strain distribution in whole specimen is not affected.

主要完成研究内容和取得成果如下:(1)利用有限元软件计算出紧凑拉伸试样的裂纹尖端应力强度因子KI值,其结果与理论值一致,从而验证了利用ABAQUS计算裂纹尖端相关断裂参量的可行性;(2)在研究内聚应力等相关理论的基础上,推导出了研究尺度与材料弹性模量的近似关系,并确定了介观尺度上的弹性模量;(3)在宏观尺度上建立了全局有限元计算模型和子模型,得到了裂纹尖端应力应变场分布,结果表明利用子模型技术获得比较准确的裂纹尖端应力应变场分布是可行的;(4)在介观尺度上利用平均晶粒尺度的方式建立了裂纹沿晶扩展模型,得到了裂纹尖端断裂过程区的微观应力应变场;(5)当应力强度因子为30MPa.m1/2时,分析了介观尺度上在裂纹沿晶扩展过程中裂纹长度对Mises应力、最大主应力和应变的影响,结果表明,裂纹扩展长度对试样整体应力应变分布影响不大,而对裂纹尖端区域有较大影响;(6)介。。。

This research gives an introduction to the basic properties of pbospbogypsum and its treatment way; the influence factors of phosphogypsum self-leveling material properties such as different additives and material mix proportion and etc were studied.

本研究介绍磷石膏的基本性质以及处理过程;研究不同晶形转化剂处理的磷石膏配制自流平材料时,对其性能的影响;并且研究了自流平材料的组成对其性能的影响和自流平材料的微观结构。

In order to make these silver paste successfully used in commercial, a clear understanding is required for the complex relation between different parameters such as particles size, solid volume fraction, packing density on suspension printing and deformation and the mechanism of silver powder sintering shrinkage and the inorganic adhesive effect under the batch manufacture condition.The main emphasis of our researches was to improve the silver paste properties by developing a reliable, screen-printing paste suitable for fine lines and lower sintering porosity and good interface between thick film and glass substrate.

为开发电学性能稳定、高导电率、具有良好细线印刷性能及优良附着性的高性能电子浆料,本研究着眼于对影响参数进行详细剖析,找到关键控制参数,通过研究微观结构与粉末参数的对应关系,找到如何能制备出具有致密的厚膜结构与较低的孔隙率,并且其浆体与有机载体的界面区也要有明显的改善的电子浆体;同时对批量生产的银粉的形态与粉末烧结反应的收缩现象,无铅玻璃体系对银膜致密化等过程进行研究,获得致密高导的无铅银浆料。

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