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结合层
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  “结合层”译为未确定词的双语例句
    The results show that the σz,τzx,τzy between the sintered part and the base plate are the main cause of the sintered warping.
    结果表明,烧结件与基板结合层处σz、τzx、τzy的过大是造成烧结件翘曲变形的主要原因。
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    The design involves a connection layer with Zns substrate, thin Y 2O 3 film, and 4 layer stack of Ge and SiO as high and low refractive index coating matetrials, respectively.
    介绍了硫化锌基底上的减反膜 ,该设计是用薄的氧化钇层作为与硫化锌的结合层 ,用一氧化硅和锗分别作为低、高折射率膜料的膜堆组成的。
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  bonding layer
In this work, a smart cure cycle with cooling, polymerization and reheating was devised to nearly completely eliminate thermal residual stresses in the bonding layer of the co-cure bonded hybrid structure.
      
The thermal barrier coatings with NiCrAlY alloy bonding layer, NiCrAlY-Y2O3 stabilized ZrO2 transition layer and Y2O3 stabilized ZrO2 ceramic layer are prepared on nickel alloy substrates using the plasma spray technique.
      
The technology relies on a temporary adhesive bonding layer between SMA film/foil and an auxiliary substrate, which can be removed by laser ablation.
      
During vulcanization of sulfur-cure mixtures in contact with brass, a bonding layer consisting of sublayers of copper and zinc sulfides and oxides is formed.
      
Sublayers were found in the bonding layer between rubber and brass.
      
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  bonding layer
In this work, a smart cure cycle with cooling, polymerization and reheating was devised to nearly completely eliminate thermal residual stresses in the bonding layer of the co-cure bonded hybrid structure.
      
The thermal barrier coatings with NiCrAlY alloy bonding layer, NiCrAlY-Y2O3 stabilized ZrO2 transition layer and Y2O3 stabilized ZrO2 ceramic layer are prepared on nickel alloy substrates using the plasma spray technique.
      
The technology relies on a temporary adhesive bonding layer between SMA film/foil and an auxiliary substrate, which can be removed by laser ablation.
      
During vulcanization of sulfur-cure mixtures in contact with brass, a bonding layer consisting of sublayers of copper and zinc sulfides and oxides is formed.
      
Sublayers were found in the bonding layer between rubber and brass.
      
更多          


A three\|dimensional method is proposed to analyze the stability problem of a transversely isotropic rectangular plate with simply supported edges, subjected to uniaxial non\|uniform pressure. First of all, by introducing two displacement functions and two stress functions, two independent state equations are derived from the three\|dimensional elasticity equations. Then the state equations are solved for the non\|classical stability problem, by employing the laminated approximation theory. Making use of the...

A three\|dimensional method is proposed to analyze the stability problem of a transversely isotropic rectangular plate with simply supported edges, subjected to uniaxial non\|uniform pressure. First of all, by introducing two displacement functions and two stress functions, two independent state equations are derived from the three\|dimensional elasticity equations. Then the state equations are solved for the non\|classical stability problem, by employing the laminated approximation theory. Making use of the continuity conditions between layers and the free boundary conditions at the upper and lower surfaces, two independent eigenequations are obtained. \;

针对四边简支的横观各向同性矩形板单向受非均匀对称压力作用的稳定问题给出了三维分析方法 .首先通过引入位移函数和应力函数 ,从三维基本方程出发构造了两类相互独立的状态空间方程 .其次结合层合近似理论 ,求解了对应非经典稳定问题的状态空间方程 .进而利用子层间的连续条件和矩形板上下表面的自由条件 ,导出了两类独立的特征方程

ZnS, an significant optical material in IR regions, is applied in many opto electronic systems where a suitable antireflection coating is required to enhance the transmission. In this paper, an antireflection coating on ZnS substrate is presented. The design involves a connection layer with Zns substrate, thin Y 2O 3 film, and 4 layer stack of Ge and SiO as high and low refractive index coating matetrials, respectively. The coating conforms to environmental stability standards and shows an average transmission...

ZnS, an significant optical material in IR regions, is applied in many opto electronic systems where a suitable antireflection coating is required to enhance the transmission. In this paper, an antireflection coating on ZnS substrate is presented. The design involves a connection layer with Zns substrate, thin Y 2O 3 film, and 4 layer stack of Ge and SiO as high and low refractive index coating matetrials, respectively. The coating conforms to environmental stability standards and shows an average transmission of 96% for a given application in 3μm~5μm range with a peak beyond 98% at 4.2μm thick ZnS substrate.

硫化锌是红外波段重要的光学材料 ,在许多光电系统应用中 ,要求镀制适当的减反膜增加其透过率。介绍了硫化锌基底上的减反膜 ,该设计是用薄的氧化钇层作为与硫化锌的结合层 ,用一氧化硅和锗分别作为低、高折射率膜料的膜堆组成的。这种五层膜满足环境稳定性标准 ,在 3μm~ 5 μm波段的某应用范围内平均透过率即可达 96% ,并在 4.2 μm处有超过 98%的峰值透过率。

Modern water hydraulics has been the most important research subject in fluid power.Developing water power components are the prerequisite for the application.Different kind of pumps and valves for water hydraulic system has been designed at home and broad by now.A new method to deposit ceramic coating on the surface of component was introduced based on the analysis of ceramic materials in water hydraulics.By the using of microarc oxidation technology, a good performance ceramic coating was developed on the...

Modern water hydraulics has been the most important research subject in fluid power.Developing water power components are the prerequisite for the application.Different kind of pumps and valves for water hydraulic system has been designed at home and broad by now.A new method to deposit ceramic coating on the surface of component was introduced based on the analysis of ceramic materials in water hydraulics.By the using of microarc oxidation technology, a good performance ceramic coating was developed on the surface of a water hydraulic component which is made of aluminum.Experiments result shows that there is no strip and corrosion on the ceramic coating from the testing result.This kind of ceramic coating has good wear resistance and it could be applied to improve the performance of water hydraulic component.

现代水压传动技术是液压领域中前沿课题之一。各种水压元件的开发,是完善水压系统的先决条件。到目前为止,国内外已研制出了多种水压泵及其阀类产品。本文在分析现有水压元件陶瓷化的基础上,介绍一种水压元件陶瓷化处理新方法。采用微等离子体表面强化技术,对铝质水压元件进行表面陶瓷化处理,所获得的陶瓷层具有良好的技术指标。经两年多的运行试验,并通过检测,结果表明:该陶瓷层的结合层无脱落和剥离现象,工作表面无腐蚀痕迹,陶瓷工作表面层耐磨性良好,基本无磨损,满足使用要求。

 
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