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The third winding is coupled between the primary winding and a capacitor to produce a current that controls a variation of a ratio between the focus voltage and the anode voltage as a function of variation in a beam current in the cathode ray tube.

在初级绕组和电容器之间连接第三绕组,从而产生一个电流,该电流用于对作为阴极射线管中电子束电流的变化的函数的聚焦电压与阳极电压之间的比率的变化进行控制。

An oxygen-bubble and white-light speckle velocimetry method is presented.Instead ofpulsed laser and commonly used particle,a sheet like-bubble mass generated from anade wire byeletrolysing water is used as particle tracer,a white light flash set controlled by digital time delaycircuit is used as double pulsed light source,and 2-D velocity distribution in a sectional planewithin flow field can be obtained without using light sheet technique.

提出了一种氧气泡粒子白光散斑测速技术,与以往散斑测速方法不同的是,采用电解水时电解阳极丝上产生的氧气泡做为流场示踪粒子,用两个闪光时间间隔由数字延时电路控制的普通闪光灯做为散斑底片拍摄时的双脉冲光源,并且勿需片光技术,即可获得流场内部一个截面上的二维速度分布。

The thermodynamics and the dynamics mechanism have been studied.The results show that it is advisable for the HCHO and NaH_2PO_2 as the reduction due to the electrode potential of the reduction is more negative than that of Cu~ 2+ from the analysis of data in thermodynamics.It is advantage for the reaction of electroless copper in the alkaline solution. According to the analysis of Tafel slope of a cathodal polarization curve,...

结果表明:从热力学数据分析看,还原剂的电极电位皆比铜离子负,用甲醛、次亚磷酸钠做还原剂还原Cu2+在热力学上是可行的,在碱性溶液中对化学镀铜反应有利;从阴极极化曲线的Tafel斜率分析看,Cu2+=Cu+步骤为阴极反应的速度控制环节;从镀液的旋转圆盘电极测试结果分析看,电子跃迁步骤H2CO-ad rdsHCOOH+1/2H2+e-为镀液中阳极反应速度的控制性步骤。

To investigate the pitting and metastable pitting rules of type 304 stainless steel, potentiodynamic polarization method was employed to study the behavior of metastable pitting and stable pitting on 304 stainless steel in sodium bromide solution and borate/phosphate buffered bromide solutions. The influence of the concentration of Br-、the pH value、the buffer capacity and general environmental factor to pitting potential and metastable pitting was studied as well.

为了更深入地了解304不锈钢的稳态及亚稳态孔蚀规律,本文采用动电位慢扫描法测得了304不锈钢的阳极极化曲线,研究了不锈钢在纯溴化钠溶液及含溴化钠的硼酸盐或磷酸盐缓冲溶液中的亚稳态孔蚀以及稳态孔蚀行为,分析了溴离子浓度、pH值、缓蚀性阴离子、以及缓冲容量和综合环境因子对孔蚀电位以及亚稳态孔蚀特征参数中的形核数目、峰值电流、生长寿命的影响。

The properties of TCC with ATS were as good as the TCC with HTS, better that the requirement of standard GB8744-88 for semi-graphitic carbon block. As good as TCC with HTS in industrial cells, the TCC with ATS also reduces the sodium penetration to cathodic lining, no tear-off of the coating was found after starting up of the cells. As compared with reference cells, the operation of coating cells with ATS was also improved to keep good shape of cell chamber, reduce the formation of sludge on the cell bottom, and gain more uniform current distribution. The ohmic drop of TCC cell bottom was lessened by 11. 5mV. The current efficiency was increased by about 1. 48% in average. It was estimated that the TCC life could be 44 months. Obviously, the TCC with ATS could also improve the performance of industrial cells, save energy, and increase the cell life.

对常温固化涂层槽的考核表明,与高温固化涂层槽一样,阴极内衬对钠的吸收减少,钠渗透速度减缓,从而减小钠膨胀危害,减少了铝电解槽早期破损的几率;启动后,常温固化涂层不脱落,同样具有良好的粘接性能;与对比槽相比较,常温固化涂层槽正常生产后,阴极表面干净、光洁,无沉淀或结壳,炉膛规整,阴极、阳极电流分布均匀,炉底压降降低(平均降低11.5mV),电流效率提高(平均提高1.48%);涂层在电解槽内存在的时间可达到44个月以上;常温固化涂层同样可以起到改善电解槽工作状态、节能降耗、延长槽寿命的作用。

The properties of TCC with ATS were as good as the TCC with HTS, better that the requirement of standard GB8744-88 for semi-graphitic carbon block.AbstractAs good as TCC with HTS in industrial cells, the TCC with ATS also reduces the sodium penetration to cathodic lining, no tear-off of the coating was found after starting up of the cells.As compared with reference cells, the operation of coating cells with ATS was also improved to keep good shape of cell chamber, reduce the formation of sludge on the cell bottom, and gain more uniform current distribution. The ohmic drop of TCC cell bottom was lessened by ll.SmV. The current efficiency was increased by about 1 .48% in average. It was estimated that the TCC life could be 44 months.Obvi

对常温固化涂层槽的考核表明,与高温固化涂层槽一样,阴极内衬对钠的吸收减少,钠渗透速度减缓,从而减小钠膨胀危害,减少了博士学位论文摘要铝电解槽早期破损的几率;启动后,常温固化涂层不脱落,同样具有良好的粘接性能;与对比槽相比较,常温固化涂层槽正常生产后,阴极表面干净、光洁,无沉淀或结壳,炉膛规整,阴极、阳极电流分布均匀,炉底压降降低(平均降低11.smv),电流效率提高(平均提高1.48%);涂层在电解槽内存在的时间可达到44个月以上;常温固化涂层同样可以起到改善电解槽工作状态、节能降耗、延长槽寿命的作用。

The results show that the TiO2 porous films can be obtained by anode oxidation using 10% H2SO4, voltage of 120V on the surface of Ti-6Al-4V alloy, and the aperture size is about 100-200nm. The acerate CaHPO4 with size of 200-400nm can be gained by the electrochemical deposition. Ultimately, the acerate CaHPO4 changed to the sheet Ca10(PO4)62 after being treated with 0.1mol/L NaOH in autoclave at 200℃ for 10 hours .

结果表明:钛合金(Ti-6Al-4V)板经以10%的硫酸为电解液和电压为120V时阳极氧化,产生孔径大约为100-200nm的多孔氧化膜,再经电化学沉积,得到尺寸大小约200-400nm针状的CaHP04,最后经盛有浓度为0.1mol/LNaOH 水溶液、温度为200℃的高压釜中水热合成10h,针状的CaHP04 转变为片状的Ca10(PO4)62。

The composition of Fe-Co and Fe-Co-Mn alloy is analyzed by using Electron Probe Micro Analysis and the magnetic properties of porous alumite film in which Fe-Co and Fe-Co-Mn alloy electrodeposited are measured by a Vibrating Sample Magnetometer .

本论文通过使用多种现代测试技术,如:扫描电镜、透射电镜、电子探针X射线能谱、X射线衍射、电子衍射分析和振动样品磁强测试等,对铝阳极氧化膜的形貌、纳米级微孔内Fe—Co和Fe—Co—Mn合金的晶体结构、Fe—Co和Fe—Co—Mn合金在纳米级微孔内的电沉积工艺以及纳米级微孔内Fe—Co和Fe—Co—Mn合金的磁性进行了系统的研究。

DP-25 Electrolyze Polish Machine It is produced by the basis of DP-2, It increases the electrolyze trough and improves power in order to satisfy technique centre and school education.

该机是在DP-2型的基础上改型而来,电解槽及功率加大,以适应大型的技术中心、学校教学的需求,阳极摆动使加工件的表面得到更佳的光洁度。

The results show that when the cathode humidified temperature increase, the humidification of membrane and fuel cell performance improved at lower current density, while the saturation in diffusion layer increase and the performance decreases at higher current density. Humidification of membrane and fuel cell performance improved when the anode humidified temperature increase, the saturation in diffusion layer decrease and fuel cell performance improved when the fuel cell working temperature increase, the resistance of diffusion layer decrease and the performance improved when the porosity largen. At last, the simulation results are compared with the experimental results and they are basically the same.

结果表明随阴极加湿温度的提高,在低电流密度运行时膜的润湿条件改善,燃料电池性能提高,在高电流密度运行时扩散层中液态饱和度增加,燃料电池性能下降;随阳极加湿温度的提高,膜的润湿条件改善,燃料电池性能提高;随燃料电池运行温度的提高,扩散层中液态饱和度下降,燃料电池性能提高;随气体扩散层孔隙率增加,气体扩散层阻力减小,燃料电池性能提高。

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