anode life

英 [ˈænəʊd laɪf] 美 [ˈænoʊd laɪf]

网络  阳极寿命

化学



双语例句

  1. Our high silica lining provides a tough interior surface for water heater tanks, which must withstand the wearing effects of high volume and high temperature hot water. Magnesium anode is used to extend tank life.
    高级二氧化硅内胆使得热水器的内胆表面特别坚固耐用,能够经受住大水量和高温破坏的考验。本热水器采用金属镁阳极棒,有利于延长内胆的使用寿命。
  2. Magnesium anode is used to extend tank life.
    本热水器采用金属镁阳极棒,有利于延长内胆的使用寿命。
  3. The results indicated that the prepared anode had a long service life and good electroplating performance, while the target chromium coating had good comprehensive properties.
    结果表明:所制备的阳极使用寿命长,电镀及镀层性能好。
  4. A nuclear fusion reaction taking place at very high temperatures ( as in the sun). Magnesium anode is used to extend tank life.
    在极高温度下(如在太阳内部)发生的一种核聚变反应。本热水器采用金属镁阳极棒,有利于延长内胆的使用寿命。
  5. A combination anode rod/ hot water outlet nipple has been installed to extend tank life.
    为了延长内胆使用寿命,本热水器安装了组合型阳极棒/热水出口螺纹接头。
  6. The magnesium anode rod should be inspected periodically and replaced when necessary to prolong tank life.
    应该定期检查阳极棒,为了延长热水器的使用寿命,在必要时,更换阳极棒。
  7. The surface activity and electrochemistry characteristics of metal anode are evaluated by determining the chlorine-liberating and oxygen-liberating electric potential of electrodes, and testing the polarizing curve and life span of electrode. The result can be used to administer the metal anode electrolyzer.
    通过对电极析氯电位和析氧电位测定及电极极化曲线、电极强化寿命测试,评价金属阳极表面活性及电化学特性,指导金属阳极电解槽管理。
  8. It can be characterized by a higher quality and yield of EMD by this composite anode, lower bath voltage, higher coeffecient of current and longer life time.
    该阳极的特点是EMD质量高,产量大,槽电压低,电流效率高,使用寿命长。
  9. The result showed that the anode is charateristic of low electrode resistance, long life and lower cost.
    测定极化曲线和强化电解表明此阳极具有制备成本低、电极电阻小、寿命长,且能制成大面积的优点。
  10. The status of primary aluminum industry in China is introduced, points out the cause of short service life of pre-baked anode reduction cell and the mechanism of TiB_2 cathode painting technology to improve the service life of cell.
    简要介绍了我国铝电解工业的发展现状,指出了我国预焙铝电解槽寿命短的弊端;并分析了电解槽早期破损的原因和采用TiB2阴极涂层技术提高电解槽寿命的机理;
  11. Coating is the key technology in anode preparation, The characteristics of the coating film will directly influence the service life and quality of the anode.
    涂层是金属阳极制造的关键工艺,涂层的性能将直接影响阳极的使用寿命和质量。
  12. So briny aluminum-air fuel cell seems to be promising in the future. Though there are lots of advantage of the briny aluminum-air fuel battery, aluminum anode has a short life because of its self-corrosion and the corrosion of Cl-in the sea.
    虽然海水铝空气电池具备很多优点,但是铝阳极的自腐蚀和海水中Cl-的腐蚀,都将影响铝阳极使用寿命。
  13. In China, the early stage developed ribbon anode is Magnesium anode but its application is limited due to its low efficiency and short life.
    国内早期开发出来的带状阳极是镁阳极,由于镁阳极的效率低、寿命短,使其使用受到限制。
  14. As the anode materials of alkaline zinc air battery, zinc electrode influences the electro-performance ( output power, cycling life, depth of discharge) and store performance of battery.
    锌电极作为锌/空气电池的阳极,其性能的好坏将直接影响电池的放电性能(输出功率、循环寿命、放电深度等)和贮藏性能。
  15. Development efforts have concentrated on metal, cermet, ceramic and cerium-oxide coated anodes, Unfortunately problems such as oxidation and corrosion, metal contamination of aluminium produced, anode life, electrical conductivity, and cost still remain to be solved.
    指出铝电解惰性阳极的研制一开始就遇到的问题,如氧化、腐蚀、产出铝受惰性阳极材料的污染,阳极寿命、导电性和成本问题仍未完全解决。
  16. Now the usual ionized water washing machine adopted Dimension stable anode as the anode in ionized water generator, the titanium base electrode was the commonly used electrode in daily life.
    现有的离子水洗衣机大多采用金属氧化物涂层阳极(DSA)作为其离子水发生器的电解阳极,钛基电极为最常用的DSA电极。
  17. The lithium-based compound with rocking-chair character can take the place of lithium anode materials in storage battery. It not only incarnates the advantage of high working voltage, but also greatly overcomes security problem of lithium ion battery. Moreover, it can improve cycle life of battery.
    用嵌锂化合物来代替锂离子蓄电池中的金属锂负极,这样不但体现了锂电池工作电压高的优点,而且在较大程度上解决了锂电池的安全性问题,同时又提高了电池的循环寿命。
  18. Zinc is a frequently used as a cost-effective method of preventing corrosion, it has a protective effect of sacrificial anode cathodic, extending the service life of steel.
    镀锌是一种经常采用的经济有效的防腐蚀的方法,锌对于钢材具有牺牲阳极保护的作用,延长了钢铁的使用寿命。
  19. The zinc electrode, as anode of the battery, is one of the most important factors affecting its storage life.
    其中负极锌电极是影响其贮存寿命的重要因素之一。
  20. But as the engineering application anode material needs not only high electrochemical performance, but also needs relatively uniform corrosion morphology to increase the material working life and further reduce the cost.
    但是作为工程应用阳极材料不仅需要较高的电化学性能,还需要较均匀的腐蚀形貌以增加材料使用寿命并进一步降低成本。
  21. The anode materials must satisfy the conditions of high electricity catalytic activity, long life and so on.
    理想的阳极材料必须满足电催化活性高,使用寿命长等条件。
  22. The anode has a higher oxygen evolution potential, long service life, low-cost advantages of preparation, particularly good catalytic activity in dyes wastewater treatment, but anode is brittleness.
    该阳极对染料废水有良好的催化活性,并具有析氧电位高、使用寿命长、制备成本低等优点,尚存在着阳极脆性较大等不足。
  23. The full cell with LTO/ TEG as anode material and lithium iron phosphate nanoparctiles/ carbon ( LFP/ C) as cathode material also showed good rate capability and cycle life. 2.
    以LTO/TEG作为负极,碳包覆磷酸铁锂纳米颗粒(LFP/C)作为正极的全电池,也表现出很好的倍率性能和循环寿命。
  24. New anode materials for lithium-ion batteries with long cycle life and high capacity are urgently needed to meet the increasing demands of portable electronic device and electric vehicles ( or hybrid electric vehicles).
    近年来,便携式电子设备和电动汽车(混合动力汽车)的高速发展对于锂离子电池的性能提出了更高的要求,从而推动了研究高比容量、长寿命锂离子电池负极材料的研究。
  25. For different discharge voltage anode quality and flow channels under the wall of a corrosion research, analysis and quality of the discharge voltage flow of these two parameters on the operation of the engine life of the law, and from the analysis carried out on the mechanism.
    针对不同放电电压和阳极质量流量下的通道器壁的腐蚀进行了研究,分析了放电电压和质量流量这两个运行参数对发动机寿命的影响的规律,并从机理上进行了分析。
  26. Carbon materials are utilized as anode materials for the improvement of safety and cycle life in lithium batteries.
    碳材料作为锂离子电池负极材料,具有很好的循环寿命和安全性。