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學(xué)習(xí)啦>學(xué)習(xí)英語(yǔ)>英語(yǔ)口語(yǔ)>

鋰電池用英語(yǔ)怎么說(shuō)

時(shí)間: 焯杰674 分享

  隨著科學(xué)技術(shù)的發(fā)展,現(xiàn)在鋰電池的應(yīng)用十分廣泛,成為了主流。那么你知道鋰電池用英語(yǔ)怎么說(shuō)嗎?下面學(xué)習(xí)啦小編為大家?guī)?lái)鋰電池的英語(yǔ)說(shuō)法和例句,希望對(duì)你有所幫助。

  鋰電池的英語(yǔ)說(shuō)法1:

  lithium battery

  英 [ˈlɪθi:əm ˈbætəri] 美 [ˈlɪθiəm ˈbætəri]

  鋰電池的英語(yǔ)說(shuō)法2:

  lithium cell[電工]

  英 [ˈlɪθi:əm sel] 美 [ˈlɪθiəm sɛl]

  鋰電池的相關(guān)英語(yǔ)表達(dá):

  鋰水電池 lithium water cell

  鋰硫電池 lithium sulphur battery

  鋰氯電池 lithium-chlorine battery

  鋰電池的英語(yǔ)說(shuō)法例句:

  在當(dāng)前鋰電池技術(shù)的發(fā)展?fàn)顟B(tài)下,只這輛車的電池設(shè)備就得用40000歐元,而且其重量超過(guò)半噸。

  At the current state of lithium battery technology, just the vehicle's batteryset-up would cost €40, 000 and weigh more than half a ton.

  這款背包在表面上縫有100塊硅片,通過(guò)之間的傳導(dǎo)刺繡圖案連接在一起,能夠搜集功率為2瓦的電力,儲(chǔ)存在鋰電池中。

  The Solar Handbag has 100 silicon solar cells into woven into conductiveembroidery, that collect sunlight and generat 2 Watts of usable energystored on a lithium-ion battery.

  費(fèi)萊徹描述到發(fā)展下一代鋰電池的激烈競(jìng)爭(zhēng),但是可能更多的人選擇現(xiàn)有的技術(shù)。

  Fletcher describes the fierce competition to develop the next generation oflithium batteries, but could have given more people their due for theexisting technology.

  車子依然鎖著,但是有人撬開(kāi)了座位弄走了我那的青便的鋰電池。

  The bike was locked up as usual, but someone had pried up the seat and made off with my convenient new lithium battery.

  鋰電池也用于電動(dòng)汽車,一次充電在家中需要一個(gè)晚上的時(shí)間,就是在電動(dòng)車充電站也需一個(gè)小時(shí)來(lái)完成充電。

  Lithium-ion batteries also power EVs, which can take all night to charge athome and up to an hour to charge at EV stations.

  在綠色能源中,鋰電池也受到了新的挑戰(zhàn)。

  And new challenges for lithium batteries are opening up in green energy.

  能重復(fù)充電的鋰電池的技術(shù)進(jìn)步讓幾乎所有便攜電子設(shè)備受益。

  ALMOST every portable device that uses electricity has benefited from thedevelopment of rechargeable lithium-ion batteries.

  另外,鋰電池足夠堅(jiān)固耐用以適應(yīng)世界各地的列車也是一個(gè)問(wèn)題。

  There is also the question of whether lithium-ion batteries are tough enoughfor the world of railways.

  A123公司的工程師已經(jīng)開(kāi)發(fā)了制造鋰電池的新方法,這種方法比傳統(tǒng)的方法要更安全且利用更少的昂貴的原材料。

  Engineers at A123 have developed ways to manufacture new types oflithium-ion batteries that are safer than conventional versions and use lessexpensive elements.

  現(xiàn)在還不清楚鋰電池單元能不能長(zhǎng)期經(jīng)受得了這樣的力量。

  It is not clear that lithium-ion cells can withstand such forces for long.

  可能對(duì)制造電動(dòng)汽車產(chǎn)生麻煩的因素有三:電動(dòng)汽車所需的稀土金屬,鋰電池所需的鋰,燃料電池所需的鉑。

  Three components could pose challenges for building millions of electricvehicles: rare-earth metals for electric motors, lithium for lithium-ionbatteries and platinum for fuel cells.

  電力由內(nèi)部充電電池(圓柱形鋰電池)、外接電源或USB主機(jī)提供。

  Power is supplied by an internal rechargeable battery (lithium-ion prismaticcell), by an external voltage, or through the USB host.

  先進(jìn)的鋰電池仍然十分昂貴,除非它們大幅度降價(jià)或者石油價(jià)格大幅度上升,否則充電式汽車還是無(wú)法與普通汽車有很強(qiáng)的競(jìng)爭(zhēng)力。

  The advanced lithium-ion battery packs are still costly, and until they fallsignificantly or the cost of gasoline jumps – the TCO for plug-ins will not compare favorably with conventional cars.

  我們的大容量、高倍率放電能力、高安全性的聚合物鋰電池技術(shù)在業(yè)界已遙遙領(lǐng)先。

  We take a leading place in manufacturing polymer lithium cell with great capability, high-ratio discharge and absolute security.

  在這個(gè)方面,位于美國(guó)田納西州士麥那的日產(chǎn)(Nissan)全新鋰電池工廠以其實(shí)驗(yàn)室般的整潔環(huán)境更進(jìn)一步。

  Nissan Motor Co. 's new lithium-ion battery plant in Smyrna, Tenn. goes one step further with an atmosphere reminiscent of a laboratory.

  該負(fù)極活性材料可提供具有高容量和優(yōu)良的循環(huán)壽命以及電池效率的可充電鋰電池。

  The negative active material may provide a rechargeable lithium battery having high capacity and excellent cycle-life and cell efficiency.

  磷酸鐵鋰電池在變電站系統(tǒng)應(yīng)用的可行性分析

  Feasibility of applying ferric phosphate lithium cells to substation systems

  綜述了三氧化鉬及其水合物在用作鋰電池陰極材料、電化學(xué)顯色材料和電催化材料方面的研究進(jìn)展。

  Recent progress in the research on molybdenum trioxide and its hydrates used as lithium cell cathodic materials, electrochromic materials and electrocatalytic materials is reviewed in this paper.

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