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energy surface相关的网络例句

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The existence of surface electronic states is an intrinsic property of the surface and many properties and processes happening on the surface of the materials are closely related to the surface states and their energy distribution and space distribution.

表面电子态的存在是表面固有的性质,材料的许多性质和发生在表面的过程都与表面态及其能量分布,空间分布有关。

Calcium carbonate and soluble glass and so on were confected as alkaline antifouling agent. The Infrared Spectrometry results showed that 2275-2250 cm~(-1) diagnostic absorb wave crest in part A and 3390-3200 cm~(-1) in part B and 1730 cm~(-1) in coating film strongly proved polymers reacted just as the reacting mechanism, that means polysiloxane which offer low-surface-energy property linked Polyurethane system by —OH groups reacting with —NCO groups. Relative molar mass of part A and part B was determined by Gel Permeation Chromatography and the results were appropriate. Surface-energy was determined and results were between 33.6-47.17 mN/m and it increased when alkaline antifouling agent was put into the coating. Alkaline antifouling agent was releasing steadily when the coating film was dipped in seawater. As time gone, the pH value of seawater was increasing. Solubility parameter and results showed that there was no corrasive phenomenon between the polyethylene strand and the coating.

红外光谱分析结果表明,出现在A组分中的2275~2250cm~(-1)处的异氰酸酯特征吸收峰、B组分中的3390~3200cm~(-1)处硅羟基的特征吸收峰及出现在固化后涂膜中的1730cm~(-1)处氨基甲酸酯基团的特征吸收峰证明了涂料成膜物质交联固化符合本文的设计要求,即赋予涂膜低表面能特性的有机硅组分通过—OH基团与—NCO基团的反应已经链接到聚氨酯体系中;凝胶渗透色谱结果表明,成膜物质的A、B组分均为低分子量,符合预聚物的要求;涂膜表面能的测算结果表明,涂膜的表面能在33.6~47.17mN/m之间;加入碱式防污剂后涂膜的表面能略有升高;碱式防污剂的释放平稳,随着涂膜在海水中浸泡时间的增长,pH值有增加的趋势;用溶解度参数原则来评价涂料与网绳的涂装,结果表明,本试验研制的防污涂料对聚乙烯网绳无溶蚀作用。

Formulas of the induced potential, stopping power, DIIMFP and IMFP considering the memory effect were derived for a charged particle moving parallel to a solid surface. It was found that those with the memory effect for energy lay between the corresponding values without the memory effect for energy and previous energy . The memory effect increased with increasing energy loss,, in the previous inelastic interaction.

对於带电粒子沿固体表面平行移动时,其感生电位、阻挡本领、微分倒数非弹性平均自由行径和非弹性平均自由行径之模式均被建构,研究显示对某特定粒子能量,其考虑记忆效应的结果会座落在不考虑记忆效应之此粒子能量及上次非弹性作用前粒子能量的结果之间,而记忆效应会随前次非弹性交互作用能量损失增加而变大。

Each half has a coned section defined by an inner tapered surface (18) and an outer tapered surface (20) such that the halves convert a portion of the first and second axial acoustic energy into radial acoustic energy.

每个半部分具有由内锥形表面(18)和外锥形表面(20)确定的锥形部分,使得半部分将一部分第一和第二轴向声能转换成径向声能。

This machine use the dry and clean constringent air as energy、through airflow high-speed eject to make the grinder indoor be a grinding, classification round surface and be a pressure difference indoor then raw materials are automatically inhaled the indoor of grinder with the help of ultrasonic airflow what 4-16 spray head eject (producing the impacted energy E=1/2mv2), raw materials rotate at a high speed on the classification round surface and bring the litter store and make the raw materials granules hit and rub together to attain the supper fine materials.

本机组以干燥洁净的压缩空气为动力源,通过气流高速喷射,使粉碎室内形成一个粉碎、分级圆面,并在粉碎室内形成压力差,则物料自动吸入粉碎室,在4到16个喷头所喷出的超音速气流作用下(产生冲击能E=1/2mv2),物料在分级圆面上作高速通常在2-3马赫内,对于硬度低、脆性物料工作压力可低到0.6-0.7MPa。

In this paper, taking one 1900t/h supercritical pressure once—through boiler installed in East boiler company as subject investigated, analyzing the structure and characteristic of unit, from the mechanism of units, based on the law of quality conservation, energy conservation and momentum conservation, having Lagrange fluid particle tracing idea in hydrodynamics field application in analyzing of unit operational characteristic, author build up the nonlinear distributed parameter general dynamic mathematical model of single-phase heating surface or diphase heating surface in the steam-water system for supercritical pressure once—through boiler, which is suitable numerical calculation and simulation for large scale disturbance and full working conditions change, and enough materializing distributed characteristic of thermodynamic parameter in process and time lag characteristic of energy transportation in tache. The transient responses curve of the system main variables under several disturbance are computed by Computer Simulation for the model, and theoretical analysis shows that the simulation results are reasonable.

本文以东方锅炉集团公司的一台1900 t /h超临界压力直流锅炉为研究对象,在分析机组结构和特性的基础上,从机组的工作机理出发,以质量、能量、动量守恒定律为依据,将流体力学领域中的Lagrange流体质点追踪思想用于机组运行特性的分析上,建立了适用于超临界压力直流锅炉汽水系统单相、双相受热面的非线性分布参数通用动态数学模型,该模型适合于大扰动全工况变化的数值仿真计算,充分体现了过程热力参数的分布特性和环节中能量输送过程的时滞特性,并对模型通过计算机仿真得出各种扰动下系统主要变量的响应曲线,从理论上分析了仿真结果的合理性。

The calculated results showed that the structural energy and atom binding energy of α-Zr are lower than those of α-Mg,and the Mg/Zr interface energy is lower than the surface energy of Mg,which,in an energetical point,explains the experimental phenomenon.

采用递归法计算了α-Mg与α-Zr的结构能、原子结合能,Mg/Zr界面能与Mg/液态Mg界面能,Mg中Zr及Zr中Fe,Mn,Si等杂质原子相互作用能。

We have epitaxially grown ultrathin Pb and Co films on the Cu(111)surface bymolecular beam exitaxialgrowth technique,and studied in detail the growthand surface alloying of submonolayer Pb on Cu(111),the shift of Pb 5d core levelbinding energy on Cu(111),the surfactant-assisted epitaxial growth of Co on Cu(111)using Pb as a surfactant,and the spin exchange splitting of ultrathin Co films onCu(111)using synchron radiation photoemission spectra as well as Auger electronspectraand low energy electron diffraction.

利用分子束外延生长技术在单晶Cu(111)表面外延生长了超薄Pb和Co膜,并利用同步辐射光电子发射谱,结合俄歇谱和低能电子衍射,详细研究了超薄Pb在Cu(111)表面的生长、表面合金化,Cu(111)表面Pb的5d芯能级位移,以Pb作活性剂时Co膜的活化外延生长,以及超薄Co在Cu(111)表面的自旋交换劈裂,得到了一些有意义的结果。

Exploring a new technology for snow-melting and deicing of airports tracks is the research background of this project. Through a great amount of experiments, numerical value calculation and theory analysis, a great deal of experiment data are attained, and the resonance law of carbon-fiber reinforced concrete under various power and ice-layer thickness conditions was found.A low-energy concuming, low cost and high thermal effect CFRC road surface concrete structurel material was developed. The snow-melting and deicing mechanism of CFRC was analyzed in the point of view of energy conservation, and the electric-thermal resonance law of road surface structural materials to CFRC concrete materials was set up.

本项目以新型机场跑道的冬季融雪化冰为研究背景,通过大量实验、数值计算与理论分析,获得了碳纤维增强机敏混凝土在不同功率、不同冰层厚度下的响应规律和大量试验数据,找到了一种能耗低、热效高、成本低的CFRC路面混凝土结构材料,并从能量守恒的角度分析了CFRC混凝土融雪化冰机理,建立了研究路面结构材料的导热性能对CRFC混凝土材料的电热响应规律。

In order to disclosure the reason why the electrocatalysis activeness and selectivity droped after being used several hundred hours continuously, the x-ray diffraction, scanning electron microscopy and energy dispersive spectroscope have been used to characterize the surface condition variations of Monel metal. The results indicated: Monel metal belongs to the Cu-Ni alloy around the electrolysis experiment.And after being used for 600hr, the surface layer element composition and geometry distribution of the alloy changed, namely in the alloy the Cu element /which superficial free enthalpy was smaller,"concentrated" to the alloy surface,and formed one kind of marble structure microcrystallite.Thus the electrode surface becamed rough a

为了揭示蒙乃尔合金阴极在连续使用数百个小时后电催化活性剂选择性下降的原因,采用X射线衍射仪、电子扫描电镜和电子能谱分析仪对电解实验所用的蒙乃尔阴极材料在电解实验前后的表面状态进行了表征,结果表明:所使用的蒙乃尔合金阴极材料在电解实验前后均属于Cu-Ni合金,使用600hr后,由于表面层元素组成和几何排布发生了变化,即合金中表面自由焓较小的Cu元素向合金表面&富集&,形成一种大理石结构的微晶,表面粗糙、不均一,这是造成其对硝基苯电还原的催化活性及选择性随着使用时间延长而逐渐下降的主要原因,同时也为此类电极的修饰改进提供了方向。

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