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结构破坏

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Thixotropic behavior of semi-solid metal with non-dendritic structure was described briefly. The principle of the mesh structure agglomeration and disagglomeration of solid particles of semi-solid metal was discussed in detail.

简述了非枝晶结构半固态金属的触变行为并详细讨论了固相颗粒网状结构形成和破坏的原理。

Effects of MAP on intrinsic quality of strawberry(Fragaria ananassa Duch.) during shelf-life extention storage were studied in this paper.

植物组织或器官在衰老过程中常伴随细胞膜结构的破坏,导致组织结构和细胞区域化的丧失。

Hemarthrosis and laceration of the disc and the attachment were also observed. 7 days later, the hemarthrosis was seldomly seen. Effusion was seen in some joints at 2 weeks. At 1 month posttrauma, the severely damaged structure of the two joints in one animal was found. We could find the loss of the disc and the cartilage of the condyle. Effusion also existed.

伤后1月,可见有一侧关节盘完全破坏,髁突软骨层消失,关节腔内渗出;对侧关节结构紊乱,关节盘及髁突明显变形、不规则等变化。3月后,多数关节结构基本正常,但关节内的破坏性改变仍然存在,关节内可见较明显的裂隙或囊状改变,软骨组织变薄,关节盘松解,关节腔扩张等变化。

Results showed that the kinetics of photocatalytic degradation of ethylene by TiO2/ACF desoposited Pt in the simulated cold storage environment for horticultural products could be described using the pseudo first-order equation. The prepared TiO2/ACF-Pt, in the process of which Pt was initially deposited on the surface of ACF and then TiO2 was coated, would promote the activity of ethylene decomposing. When ion sputtering time was 60 seconds (Pt/Ti atomic concentration ratio was 0.112), the apparent rate constant of the reaction of TiO2/ACF-Pt was 1.16 times as much as that of TiO2/ACF. The micrographic structure of ACF was not damaged and an excessive porous structure, which was contributive to absorbing the diluted ethylene, was obtained by the way of ion sputtering Pt.

结果表明:在模拟园艺产品冷藏环境中,TiO2 /ACF-Pt光催化降解乙烯的动力学可用表观一级速率方程来描述;ACF表面先溅射沉积Pt,再进行TiO2附着方案,能提高降解乙烯的能力,当溅射时间为60 s(Pt/Ti原子浓度比为0.112)时,表观一级速率常数是未溅射Pt的1.16倍;TiO2/ACF-Pt的制备方法,对ACF形貌结构没有破坏,并能得到有利于对微量乙烯的吸附的多孔结构。

Aims:Fourier transform infrared microspectroscopy is an advanced bioanalytical technique capable of exploring the chemistry within microstructures of plant and animal tissues at high ultraspatial resolutions without destruction of the intrinsic structures of a tissue.

目标:傅立叶转换红外线显微光谱仪是一种先进的生化分析技术,它能在没有破坏组织内在结构之下,探索在植物和动物组织内微细结构之化学性质,且具有高度的立体空间再现性。

Aims:Fourier transform infrared microspectroscopy is an advanced bioanalytical technique capable of exploring the chemistry within microstructures of plant and animal tissues at high ultraspatial resolutions without destruction of the intrinsic structures of a tissue.

中文摘要目标:傅立叶转换红外线显微光谱仪是一种先进的生化分析技术,它能在没有破坏组织内在结构之下,探索在植物和动物组织内微细结构之化学性质,且具有高度的立体空间再现性。

But, the characteristics of its adhered-elastic fracture in high temperature and brittle fracture in low temperature were discovered during impact load test The impact fracture mechanism of the high-energy nitroamine propellant had been put forward by studying the fracture appearances of impact fracture surface, the expansion of secondary crack and the weakness or failing of mechanical structure combined with the analysis of impact fracture properties and dynamic adhered-elastic properties and structures.

通过研究冲击断裂表界面的断口形貌、二次裂纹的发展、材料的力学结构缺陷或弱点,并结合冲击断裂性能、动态粘弹性能及结构分析,提出了硝胺发射药的冲击断裂破坏机理。

Cheese in storage for the relationships between physicochemistry, rheology andmicrostructure Reasearching for physicochemistry, microstructure and rheology of cheeses showed: as aresult of the casein hydrolysis and broken casein gel network structure, there decomposed smallermaterial. Moreover, hydrophobic amino acid residue on protein surface increased, hydrophobicinteraction enhanced, which lead to a closer connection with casein micelles.

干酪在贮藏期理化、流变学和微观结构三者的关系通过对干酪的理化、流变学和微观结构的研究表明:在干酪的贮藏过程中,由于酪蛋白的水解,酪蛋白原有凝胶网络结构被破坏,分解产生更小的物质;并且,蛋白质表面疏水氨基酸残基增多,疏水相互作用增强,致使酪蛋白结合更紧密。

The conventional liquid based RP system used a special designed recoat to scrape resin from one side of the tank to the other to ensure the surface flatness. The scraping procedure will take off extra resin but with a drawback of shear force to the working part. In order to overcome the drawback of the shear force, a supporting structure is necessary to build under the working part.

目前商业化之液态快速原型系统中,大部分使用刮板铺层进行层厚控制的部份,铺层系统铺过工件表面时,微小结构容易受到刮板所产生的剪切力破坏,为了克服剪切力这个缺点,使能制作出具有外悬机构原型时,必须建立支撑结构。

In the process of wave slamming, the impact pressures with short duration and high peaks occurs when the waves hit the subface of the structure, which causes the destabilization of superstructure and the fratigue failure of joints.

在波浪冲击过程中,当波峰刚接触到建筑物底面时会产生历时很短但强度极大的冲击压力,这种极强的冲击荷载会引起建筑物上部结构的失稳或造成结构连接处的疲劳破坏。

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