What is the translation of " ANODE " in Chinese?
S

['ænəʊd]
Noun
['ænəʊd]
一个阳极

Examples of using Anode in English and their translations into Chinese

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Anode Rod.
布拉德福德白水加热.
Nano Silicon Carbon Anode Materials.
纳米硅碳负极材料.
Anode Saturable.
阳极饱和.
The replacement of anode materials has achieved a better result.
负极材料的更新换代则取得了更好的成果。
But it also limits theamount of lithium that can be stored in the anode.
但它也限制了可以储存在正极的锂数量。
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The lithium-ion battery anode material specific capacity is 430mAh/g;
锂离子电池负极材料比容量为430mAh/g;.
The anode of a lithium battery is usually made of graphite or a similar carbon based material.
锂电池的负极通常由石墨或类似的碳基材料制成。
All electrochemical corrosion will include at least an anode reaction and a cathode reaction.
任何一种电化学腐蚀反应都至少包含一个阳极反应和一个阴极反应。
The nickel anode is dissolved into the electrolyte in form of nickel ions.
的阳极溶解到电解液中镍离子的形式。
Briefly, here's the issue: Every battery has a cathode and an anode, in a substance called the electrolyte.
简而言之,问题在于:每个电池都有一个阴极和一个阳极,称为电解质。
The anode pulse rise time is 2.2 nanoseconds, while the electron transit time is 22 nanoseconds.
阳极脉冲上升时间为2.2纳秒,而电子运输时间为22纳秒。
AM0030 PFC emission reductions from anode effect mitigation at primary aluminium smelting facilities.
AM0030原铝熔炼设施通过缓和阳极效应减少PFC排放.
The anode material is generally made of carbon material, and the current development is relatively mature.
负极材料一般选用碳材料,目前的发展比较成熟。
At present, domestic packaging materials and graphite anode technology is relatively mature, the proportion of cost is not high.
目前国内包装材料和石墨负极技术相对成熟,成本占比不高。
Among the anode materials, the current anode materials are mainly natural graphite and artificial graphite.
负极材料当中,目前负极材料主要以天然石墨和人造石墨为主。
In addition, they incorporated graphene or multi-walled carbon nanotubes into the anode or cathode, respectively to help boost the battery's electrical conductivity.
此外,他们将石墨烯或多壁碳纳米管分别加入阳极或阴极,以帮助提高电池的导电性。
The anode material will continue to be the main carbon material will fully benefit from the release of lithium battery capacity.
负极材料仍将以碳材料为主将全面受益于锂电池新产能释放.
At the same time electrons move from the anode(graphite) to the cathode(LiCoO2) which are connected via an external circuit.
同时,电子从阳极(石墨)移动到阴极(LiCoO2),它们通过外部电路连接。
And titanate LTO anode materials is in the lithium battery, so it is named after the cathode material special case of the battery.
而钛酸锂电池中LTO是负极材料,因此这算是以负极材料命名电池的特例。
Advanced battery technology based on silicon anode lithium ion batteries accelerates the progress of this important social development.
以硅负极锂离子电池为基础的先进电池技术加速了社会发展的重要进程。
Still, silicon anode batteries have one potential drawback: Silicon material swells, which means every charge causes the battery to deteriorate.
不过,硅阳极电池有一个潜在的缺点:硅材料膨胀,这意味着每次充电都会导致电池变质。
This means that a pure silicon anode could theoretically store over 10 times the energy of graphite.
这意味着硅负极理论上可以储存石墨材料的10倍能量。
And development of the“Mod Anode Pulser” for UHF TV transmitters in 1981, a simple technique that reduced power consumption in UHF TV.
与“国防部脉冲发生器阳极”的UHF电视发射机在1981年,一个简单的技术,降低功耗的UHF电视的发展。
Professor Sun's constant research on battery anode materials was linked to 599 SCI-level papers and 456 domestic and foreign patents as of 1919.
宣教授对电池正极材料的不断研究(以2019年为准)与599篇SCI级论文和456项国内外专利联系在一起。
The OH- ions migrate to the anode through the electrolyte and through the membrane, where they are oxidized through the OER(oxygen evolution reaction).
OH-离子通过电解质和膜迁移到阳极,在那里它们通过OER(析氧反应)被氧化。
The advanced leadacid battery has carbon coatings on the anode plate, which eliminates the requirement of cleaning the lead sulfate deposition on the electroplate.
此外,先进的铅酸电池在阳极板上具有碳涂层,这消除了清洁电镀上的硫酸铅沉积的要求。
This allows contact between the anode and cathode, which can cause the battery to short circuit and, in the worst case, catch fire.
这允许阳极和阴极之间的接触,这可能导致电池短路,并且在最坏的情况下,着火。
At the same time, the life of the anode electrode is enhanced, eventually increasing the overall life of the battery set.
同时,增强了阳极电极的寿命,最终增加了电池组的整体寿命。
Depending on the application, use of this anode material will boost battery capacity initially by about 20 percent and eventually by 40 percent or better.
使用这种负极材料一开始可将电池容量提高约20%,最终将提高40%甚至更高,具体取决于应用情况。
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