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circle life
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  循环寿命
     The results indicate that the crystallinity decrease after doping titanium, And the channels for ions injecting and extracting increase. Accordingly, the responding speed of doping 5.1% of titanium gets faster and its circle life increases more than four times.
     实验结果表明,钛掺杂薄膜在相同的热处理条件下晶化程度降低,晶粒细化,离子抽出和注入的通道增多,钛掺杂5.1%的着色响应速度的提高,循环寿命提高了4倍以上。
短句来源
     The secondary Lithium battery with a high bit capacity and long circle life is the object researched by electric - chemical experts.
     高比能量、长循环寿命的二次电池是电化学界专家致力研制对象。
短句来源
     Test of circle life indicates that the described desalinator not only has effective desalination but also a long cycle period.
     同时文中也对脱盐器循环寿命进行了测试,结果表明:这种新型脱盐器脱盐效率高、循环周期长.
短句来源
     The results shown that the relative small charge current is favorable to improve electrode properties including capacity,circle life and discharge stability.
     结果表明:小电流活化有利于提高电池的容量、循环寿命和放电性能的稳定性.
短句来源
  “circle life”译为未确定词的双语例句
     The results show that the substituent effect of Cu, Cr, Si for Co in circle life is Si>Cr>Cu, and in discharge capacity and active property is Cu>Cr>Si.
     结果表明:3种取代元素在寿命方面的效果依次为Si>Cr>Cu,在放电容量和活化性能方面依次是Cu>Cr>Si。
短句来源
     This thesis examines the existence of the communication sub-circle of campus network by demonstration analysis and puts forward that the communication sub-circle of campus network is embodied in university students’ information circle, life circle, contact circle, public opinion circle, and has the basic characteristics of coherence, reality, comprehensiveness, controllability, variability.
     论文通过实证分析检验了校园网络亚传播圈的存在性,并认为,校园网络亚传播圈具体表现为大学生的信息圈、生活圈、交往圈、舆论圈,具有凝聚性、现实性、综合性、可控性、变异性等基本特性。
短句来源
     When A. nichosi fed with pollen of sponge gourd, the circle, life span of both female and male,and mean oviposition amount of the mites were 5. 13 days, 60. 33 days, 5. 29 days, 1. 41 egg per day, respectively.
     雌雄成螨寿命分别为60.33天和5.29天,日平均产卵量达1.41粒;
短句来源
     The charging and discharging characteristics of MgNiCu electrodes,the relation of the discharging capacity of MgNiCu electrodes to different milling time,the relation of the discharging capacity of MgNiCu electrodes to the discharging current and the circle life of the MgNiCu electrodes were studied emphatically.
     着重研究了MgNiCu贮氢电极的充放电特性、放电容量与球磨时间之间的关系、放电容量与放电电流之间的关系,以及循环工作寿命。
短句来源
     The results show that the negative electrode made of the coated alloy with 10%( w )Pd has better anti pulverization ability and longer circle life.
     结果表明 ,10 % (质量分数 )包覆量的效果理想 ,减轻了储氢合金的粉化程度 ,延长了电极的寿命
短句来源
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  相似匹配句对
     CIRCLE OF LIFE
     生命的轮回
短句来源
     LIFE
     生活新知
短句来源
     Life
     人生
短句来源
     Study On Life Circle Assessment
     生命周期评价研究
短句来源
     Circle of Friends
     朋友圈
短句来源
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The MgNiCu (atom ratio was 20.750.25) hydrogen storage alloys were made by mechanical alloying, By X-ray diffraction, phase analysis was performed on the samples. The characteristics by hydriding and electro-chemistry of the MgNiCu alloys with different milling time were studied. The results showed that the storage capacities increased in the initial stage of milling time, and then decreased after long period of milling, and that the discharge capacities of MgNiCu electrodes increased with increasing the milling...

The MgNiCu (atom ratio was 20.750.25) hydrogen storage alloys were made by mechanical alloying, By X-ray diffraction, phase analysis was performed on the samples. The characteristics by hydriding and electro-chemistry of the MgNiCu alloys with different milling time were studied. The results showed that the storage capacities increased in the initial stage of milling time, and then decreased after long period of milling, and that the discharge capacities of MgNiCu electrodes increased with increasing the milling time. Increasing the milling time improved the circle life. The paper studied how oxidizing influenced storage hydrogen characteristics too. As a rule, the powder which had been exposed in air for a long time could be completly active again by absorbing and deabsorbing hydrogen.

采用机械合金化方法由Mg、Ni和Cu单质粉末(按原子比20.750.25混粉)合成MgNiCu贮氢材料。通过X-射线衍射测试了粉末材料的物相组织,并测试了不同球磨时间下材料的贮氢性能和电化学性能。结果表明:贮氢容量随球磨时间的延长出现了一个极大值,MgNiCu合金贮氢电极的放电容量随球磨时间的增加而增加,抗衰减能力也随之增强。还研究了氧化对其贮氢性能的影响,一般地,在空气中长时间暴露而氧化严重的粉末,经十次吸放氢循环才能完全活化。

The MgNiCu hydrogen storage alloys were made of Mg,Ni,Cu elemental powder by mechanical alloying.The charging and discharging characteristics of MgNiCu electrodes,the relation of the discharging capacity of MgNiCu electrodes to different milling time,the relation of the discharging capacity of MgNiCu electrodes to the discharging current and the circle life of the MgNiCu electrodes were studied emphatically.The results showed that,with increasing the milling time,the discharging capacity of the MgNiCu...

The MgNiCu hydrogen storage alloys were made of Mg,Ni,Cu elemental powder by mechanical alloying.The charging and discharging characteristics of MgNiCu electrodes,the relation of the discharging capacity of MgNiCu electrodes to different milling time,the relation of the discharging capacity of MgNiCu electrodes to the discharging current and the circle life of the MgNiCu electrodes were studied emphatically.The results showed that,with increasing the milling time,the discharging capacity of the MgNiCu electrodes increased linearly,the property of attenuation resistance was improved, and the discharging characteristic by high electric current was also improved.

采用机械合金化工艺由Mg、Ni、Cu元素粉末按选定比例合成MgNiCu贮氢合金。着重研究了MgNiCu贮氢电极的充放电特性、放电容量与球磨时间之间的关系、放电容量与放电电流之间的关系,以及循环工作寿命。结果表明:MgNiCu贮氢电极的容量随球磨时间的延长呈线性增加,抗衰减能力增强,且耐大电流放电性能也提高。

To improve the ability of anti oxidation and anti pulverization of rare earth/nickel base hydrogen storage alloy, palladium was coated by electroless plating, and the influence of the coated palladium on the properties of the alloy with different Pd contents was investigated.The results show that the negative electrode made of the coated alloy with 10%( w )Pd has better anti pulverization ability and longer circle life.

利用化学镀的方法 ,在储氢合金粉末表面包覆金属钯 ,以改善稀土 镍基储氢合金的抗氧化和抗粉化能力 ,并研究了不同的钯包覆量对合金性能的影响。结果表明 ,10 % (质量分数 )包覆量的效果理想 ,减轻了储氢合金的粉化程度 ,延长了电极的寿命

 
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