- 更多网络例句与阳极板相关的网络例句 [注:此内容来源于网络,仅供参考]
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In addition, analysis of samples anode plate and between parallel approximation problem.
另外,还分析阳极板与样品之间平行逼近问题。
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The electrodialysis desalination device is located in the electric field of the two electrode boards.
也就是说所述电渗析脱盐装置是在两个电极极板所形成的电场中,由至少一对的阳膜和阴膜组成。
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An electrolytic cell (10) comprises an anode plate (12), a cathode plate (30) and a permeable membrane (20) interposed between the anode and cathode plate.
电解池(10)包括阳极板(12)、阴极板(30)及插在该阳极板与阴极板之间的渗透膜(20)。
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With the development of society, color plate applications in the construction industry continued popularity of the color plates mechanical demand constantly increasing, the degree of technical requirements have become more sophisticated, I invested a large amount of plant resources, devote themselves to research and development of the types of color corrugated board forming machine and light purlin forming equipment, factory design and manufacture of C-and Z-shaped steel machine using one machine, color steel plate forming machine insulation and other six series over 10 kinds of models of color plate forming units, because of their product mix designed to continuously upgrade and save much energy and new and old users alike, I plant the latest development of electrostatic precipitator anode plate production lines, Model 480C has type plate, 385C type plate, 510W type plate.
随着社会的发展,彩色钢板在建筑业的应用不断普及,对彩板机械的需求量不断加大,对技术程度的要求也越来越高,我厂投入大量的人力物力,潜心研究开发各种类型的彩色瓦楞板成型机及轻檩条成型加工设备,我厂设计制造的C型及Z型钢机一机多用,彩色钢板保温成型机等六大系列10多种型号的彩板成型机组,因其产品结构设计合理,不断更新换代,节约能量而倍受新老用户的一致好评,我厂最新开发电除尘阳极板生产线,型号有480C型极板、385C型极板、510W型极板。
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The good characteristics of the deflection system of electron gun can be obtained by optimizing the velocity and the location of emitting electron beam and by the aclinic emission of the electron beam, that can be achieved by making the end of the anode and the middle part of the cathode level.
研究结果表明:电子枪阳极板端点与阴极灯丝中心点保持水平可满足电子水平出射;非均匀分布的磁场对e型电子枪中电子束具有良好的聚焦作用;所设计的偏转聚焦系统在电子束流为50~100 mA时,束斑小于3 mm。
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The text is made of four parts. Firstly, the start point is how to design the mechanical parts of the Cleaning Machine of Nickel Anode Plate, meticulous formulize the thinking of design the Cleaning Machine, principal analyze how to choose and assemble the parts of the Cleaning Machine, then careful calculate and check every main parts.
文章主要分为四个部分,首先从镍阳极板清理机机械部分的设计出发,详细阐述了清理机的设计思想,重点分析了机械部分各个组成零部件的选用,仔细计算并校核了各主要零件。
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The text is start at the need of practical manufacture, then formulize all the process of design and manufacture the Cleaning Machine of Nickel Anode Plate, including design scheme, program projection, draw detail drawing, elaborate and equip parts, assemble equipment, arrangement of wires and debug system. Comprehensive use many theoretics and knowledge, such as mechanical equipment design, CAD technology, Programmable Logical Controller, mechanical system simulation and other applied softwares. The final aim is design and assemble an armamentarium that can clean the anode mud on the Nickel Anode Plate.
本文以满足实际生产需要为出发点,阐述了镍阳极板清理机设计和制造的全过程,包括出方案、规划设计、绘制零件图、零件加工装配、设备安装、布线及调试,综合运用了机械装备设计、CAD技术、可编程控制器、系统仿真学以及一些应用软件的理论和知识,最终目标是设计并安装制造一套清理阳极泥的机电设备。
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In the center of the spacious workshop stood a cell with packets of block anodes.
在宽敞的车间中央有一个装有一组组阳极板的电解槽。
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The phase analysis of nickel copper, iron and cobalt in nickel anode plate was carried out according to the selective dissolution procedure.
镍阳极板中铜、镍、铁、钴四元素采用选择性溶解的方法。
- 更多网络解释与阳极板相关的网络解释 [注:此内容来源于网络,仅供参考]
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PLATE - BATTERY POSITIVE RH:右消耗阳极板
右加强板-PLATE - RH | 右消耗阳极板-PLATE - BATTERY POSITIVE RH | 隔套-转向机螺栓-SPACER
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Insolvable anode plate:不溶性阳极板
Ingot tongs 夹锭钳 | Insolvable anode plate 不溶性阳极板 | Introduction of dummy bar 引锭杆引入
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anode rays:阴极射线
anode plate charging machine 阳极板充电机 | anode rays 阴极射线 | anodic 阳极的
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chloride paper:氯化银感光纸,氯化银相纸
chloride of silver cell ==> 氯化银电池 | chloride paper ==> 氯化银感光纸,氯化银相纸 | chloride plate ==> 铅蓄电池极板,铅阳极板
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the Cleaning Machine of Nickel Anode Plate:镍阳极板清理机
锂离子电池负极材料:anode materials for lithium-ion battery | 镍阳极板清理机:the Cleaning Machine of Nickel Anode Plate | 牺牲阳极阴极保护:protection by using galvanic anode method