The core of each sphere is a crystal of lithium iron phosphate. 球体的核心是一组磷酸亚铁锂晶体,这相当于标准电池材料。
The study of the cycle difference property of commercial lithium iron phosphate 镍离子掺杂磷酸亚铁锂的电化学性能商业化磷酸铁锂材料循环差异性研究
Synthesis and performance of Mg~ ( 2+)-doped lithium vanadium phosphate in pilot plant test 镁离子掺杂磷酸钒锂的中试合成及性能研究
Synthesis of Lithium Cobalt Phosphate as Cathode Material for Lithium Ion Batteries via Low-Heating Solid-State Reaction 低热固相合成锂离子电池正极材料磷酸钴锂
Industry: lithium iron phosphate, cobalt acid lithium materials, etc. 电池行业:磷酸铁锂、钴酸锂材料等;
A white or gray mineral consisting of lithium aluminum phosphate; a source of lithium. 一种白色或灰色的矿石,含锂、铝、磷酸盐,是锂的重要来源。
The influences of metal ion doping on the structure and performances for lithium iron phosphate 掺杂金属离子对磷酸铁锂结构及性能的影响
Synthesis of Positive Materials of Modified Lithium Iron Phosphate& Negative Material of Modified Tin Alloy and Their Electrochemical Performance 改性磷酸亚铁锂正极材料和改性锡合金负极材料的制备及电化学性能
Lithium iron phosphate batteries are new materials, environmental protection, environmental pollution, has passed ROHS testing; 磷酸铁锂电池是新材料,绿色环保,对环境无污染,已通过ROHS检测;
The main content is as follows: 1. Three methods were used to prepare basic lithium phosphate, of which the deposition-precipitation method using sodium phosphate as raw material and the mixing method was better. 用三种方法制备碱性磷酸锂催化剂,其中以磷酸钠为原料的沉积沉淀法与机械混合法制备的催化剂性能较好。
Synthesis and Research of Lithium Iron Phosphate as Cathode Material 磷酸亚铁锂正极材料的制备及研究
A new method for the synthesis of lithium zinc phosphate crystals was studied. 对合成磷酸锌锂的新方法进行了研究。
Basis of the application of uniform experimental design and the date mining technology, the influence of grinding time, baking time and baking temperature on the synthesis of lithium zinc phosphate crystals were investigated. 基于均匀设计试验方案以及数据挖掘技术的应用,研究了研磨时间、保温时间、保温温度对磷酸锌锂晶体合成的影响。
The Synthesis and Property Study of Doping Lithium Iron Phosphate 掺杂磷酸铁锂的合成与性能研究
The aim of this article is to build a system of determination of chemical components in lithium ferric phosphate, and the method can be used in researching and producing of battery and material. 建立了一套可用于实际电池及材料生产、研制的磷酸铁锂主体、杂质和添加剂的测定方法。
Results IPS Empress 2 glass ceramic mainly consisted of lithium disilicate crystal, lithium phosphate and glass matrix, which formed a continuous interlocking structure. 结果IpsEmpress2玻璃陶瓷主要由二硅酸锂晶体和磷酸锂晶体组成,二者形成相互交错的三维网络式结构;
Determination of Potassium, Calcium and Magnesium Present as Impurities in Lithium Phosphate by Ion-Chromatography 离子色谱法测定磷酸锂中微量的杂质元素
Lithium iron phosphate LiFePO_4 was synthesized by microwave heating method using a domestic microwave oven. 采用微波合成技术合成了磷酸亚铁锂LiFePO4。
The neutralization reaction of lithium hydroxide and phosphoric acid is adopted to produce lithium phosphate. 采用氢氧化锂与磷酸中和反应制得磷酸锂。
Influence of carbon doping method on the electrochemical performances of lithium iron phosphate 碳掺杂方式对磷酸铁锂电化学性能的影响
The crystal phases and the DTA curves of the catalysts calcined at different temperatures were different from that of the lithium phosphate agent and the DTA curves of the deactivated catalyst were also different; 催化剂使用前后晶型不发生变化,在不同温度煅烧所得的晶型及差热曲线与试剂磷酸锂不同,与失活催化剂DTA曲线差别也很明显;
Lithium iron phosphate group can fast charge in a safe range, demonstrated the feasibility and superiority of charge. 磷酸铁锂电池组可以在安全范围内快速充电,验证了该方案的可行性和充电优越性。
The prepared CNT conductive slurry was used as conductive additive for lithium iron phosphate battery, which achieved good results. 最后,将所制备的碳纳米管导电浆料应用于磷酸铁锂正极材料中,测试了其对电池各方面电化学性能的影响,取得了良好的实验结果。
At the same time, another cathode material, lithium vanadium phosphate [ Li3V2 ( PO4)], was also pretreated by hydrothermal method, and then carbon coated by carbon thermal reduction. 同时,用水热法对反应原料进行了预处理,制备了碳包覆的磷酸钒锂[Li3V2(PO4)3/C]正极材料。
Based on the charging requirements of 48V lithium iron phosphate battery pack, designed a rapid charging main circuit topology and its control method, built charging experimental platform and completed the battery fast charging experiment. 论文根据48V磷酸铁锂电池组充电技术要求,设计了快速充电主电路拓扑及其控制方式,搭建了充电实验平台,完成了对电池组的快速充电实验。
Based on this study group on the balance of lithium iron phosphate do some summary and prospect late. 基于本论文的研究对磷酸铁锂电池组的均衡做了一些总结与后期展望。
Olivine-structured lithium iron phosphate is the most promising cathode material for Li-ion dynamic batteries. 橄榄石型磷酸铁锂是目前最有应用前景的一种锂离子动力电池正极材料。
A group of Lithium iron phosphate batteries has been charged by different current, experimental results showed that this method can output constant large current realize the electric car batteries rapid charging. 对磷酸铁锂电池组进行了不同电压等级的充电实验,实验结果显示该方法可以输出恒定的充电电流,可实现电动车电池组的快速充电。
Respectively, directly paralleled Supercapacitor/ Battery hybrid energy storage and based on the paralleled Buck-Boost power converter with the pulse discharging was simulation analyzed and experimental studied; This paper also specifically carries experimental analysis on supercapacitor and lithium iron phosphate batteries direct parallel hybrid. 分别对超级电容与蓄电池的直接并联和基于Buck-Boost变换器并联的方式进行了脉冲式放电的仿真分析和实验研究;论文还特别针对超级电容与磷酸铁锂电池的直接并联混合进行了实验分析。