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Cu粉复合球磨处理对V基固溶体型贮氢合金电化学性能的影响 被引量:6
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作者 陈立新 代发帮 +2 位作者 刘剑 郑坊平 雷永泉 《中国有色金属学报》 EI CAS CSCD 北大核心 2005年第4期661-666,共6页
研究了V基固溶体型贮氢合金(TiV211Ni013和TiV211Ni015)与Cu粉进行复合球磨处理对其相结构及电化学性能的影响。X射线衍射和扫描电镜分析表明,铸态合金均由体心立方(bcc)结构的V基固溶体主相和bcc结构的TiNi基第二相组成;当与Cu粉复合... 研究了V基固溶体型贮氢合金(TiV211Ni013和TiV211Ni015)与Cu粉进行复合球磨处理对其相结构及电化学性能的影响。X射线衍射和扫描电镜分析表明,铸态合金均由体心立方(bcc)结构的V基固溶体主相和bcc结构的TiNi基第二相组成;当与Cu粉复合球磨处理后,合金均变成由V基固溶体主相和体心四方(bct)结构的CuNi2Ti第二相组成,且合金颗粒的表面状态发生改变。电化学测试表明,球磨处理后合金电极的最大放电容量增加了25~39mA·h/g,100次循环容量保持率大幅提高,循环稳定性得到显著改善。结果表明,Cu粉复合球磨处理是通过同时改变V基合金的第二相成分和晶体结构以及合金颗粒的表面状态来改善合金的电极性能,这与其他传统球磨方式仅通过改变合金的表面状态来改善电极性能的作用机制有所不同。 展开更多
关键词 贮氢合金 Ⅴ基固溶体 Cu粉复合球磨处理 相结构 电化学性能
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添加Ti_(0.9)Zr_(0.1)Mn_(1.5)复合球磨对Ti_(9.6)V_(86.4)Fe_4合金储氢性能的影响 被引量:1
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作者 罗翔 郑坊平 +4 位作者 王春涛 杭州明 葛红卫 李寿权 陈立新 《西安交通大学学报》 EI CAS CSCD 北大核心 2007年第12期1491-1494,1502,共5页
系统研究了Ti9.6V86.4Fe4储氢合金中掺入10%(质量分数)的Ti0.9Zr0.1Mn1.5进行复合球磨对其相结构及储氢性能的影响.X射线衍射分析表明,Ti9.6V86.4Fe4铸态合金具有单一的体心立方(BCC)结构固溶体相,当添加10%的Ti0.9Zr0.1Mn1.5复合球磨后... 系统研究了Ti9.6V86.4Fe4储氢合金中掺入10%(质量分数)的Ti0.9Zr0.1Mn1.5进行复合球磨对其相结构及储氢性能的影响.X射线衍射分析表明,Ti9.6V86.4Fe4铸态合金具有单一的体心立方(BCC)结构固溶体相,当添加10%的Ti0.9Zr0.1Mn1.5复合球磨后,复合物由BCC主相和C14型Laves第2相组成.扫描电子显微镜及X射线能量色散谱仪分析表明,Ti9.6V86.4Fe4合金粉颗粒表面包覆了一层Ti0.9Zr0.1Mn1.5微粒.储氢性能测试表明,Ti9.6V86.4Fe4中掺入10%的Ti0.9Zr0.1Mn1.5复合球磨后,虽然室温最大吸氢量(质量分数)从3.86%略微降低至3.61%,但其有效储氢量(质量分数)由2.01%提高到2.11%,活化性能和P-C-T曲线平台特性都得到了明显改善. 展开更多
关键词 储氢合金 复合 复合球磨 相结构
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导电炭黑/磁性氧化物复合吸波剂的制备与表征 被引量:7
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作者 胡书春 黄真浩 +4 位作者 金佥 陈晓浪 王良辉 陈海路 张楠 《材料导报》 EI CAS CSCD 北大核心 2011年第2期135-138,共4页
分别选用Fe3O4、Co2O3和NiO粉末与导电炭黑(V7-CB)复配,制得了3类复合吸波剂。对3类产物的吸波性能进行了综合研究,结果表明,在所选用的3种磁性氧化物中,Fe3O4是改善V7-CB吸波性能的最佳材料。在此基础上,进一步研究了复合工艺对V7-CB/F... 分别选用Fe3O4、Co2O3和NiO粉末与导电炭黑(V7-CB)复配,制得了3类复合吸波剂。对3类产物的吸波性能进行了综合研究,结果表明,在所选用的3种磁性氧化物中,Fe3O4是改善V7-CB吸波性能的最佳材料。在此基础上,进一步研究了复合工艺对V7-CB/Fe3O4复合吸波剂的物相组成、微观形貌和吸波性能的影响,结果表明,与手工复合工艺相比,球磨复合工艺可显著提升Fe3O4与V7-CB的复合均匀性及复合产物的吸波效能。 展开更多
关键词 导电炭黑 磁性氧化物 V7-CB/Fe3O4复合吸波剂 手工复合 球磨复合
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锆基纳米复合储氢材料HTQAB_(2.1)/Mg的微结构与电化学性能 被引量:2
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作者 陈东 马常祥 +1 位作者 陈廉 陈德敏 《东北大学学报(自然科学版)》 EI CAS CSCD 北大核心 2003年第1期79-82,共4页
采用球磨复合+烧结处理(BMS)及机械复合+烧结处理(MMS)两种方法制备了Zr0.9Ti0.1(Ni0.57V0.10Mn0.28Co0.05)2.1 X%Mg(X=10,20)锆基纳米复合储氢材料·经XRD、TEM SAED分析表明,BMS和MMS的复合储氢材料皆由MgCu2型立方结构的单一C15 ... 采用球磨复合+烧结处理(BMS)及机械复合+烧结处理(MMS)两种方法制备了Zr0.9Ti0.1(Ni0.57V0.10Mn0.28Co0.05)2.1 X%Mg(X=10,20)锆基纳米复合储氢材料·经XRD、TEM SAED分析表明,BMS和MMS的复合储氢材料皆由MgCu2型立方结构的单一C15 Laves相Zr基合金和密排六方结构的Mg金属构成,未发现两者之间的合金化效应·电化学测试表明,在60mA/g电流密度下,复合材料(MMS、BMS)活化性能好·MMS电极的最大放电容量为410mAh/g(X=20),而BMS的放电容量为360mAh/g(X=20)·在大电流密度下(≥3000mA/g),BMS电极的容量明显高于MMS电极,以BMS(HTQAB2 1 10%Mg)电极的大电流放电性能为最好·因此,HTQAB2 1锆基纳米复合材料不仅适用于高能量型NiMH动力电池而且更适用于高功率型NiMH动力电池· 展开更多
关键词 储氢材料 锆基纳米复合材料 HTQAB2.1/Mg 球磨复合 烧结处理 微结构 电化学性能 电动汽车 动力电池 蓄电池
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GeP_(3)/Ketjen Black Composite:Preparation via Ball Milling and Performance as Anode Material for Sodium-ion Batteries
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作者 YANG Shuqi YANG Cunguo +2 位作者 NIU Huizhu SHI Weiyi SHU Kewei 《无机材料学报》 北大核心 2025年第3期329-336,I0010,I0011,共10页
Metal phosphides have been studied as prospective anode materials for sodium-ion batteries(SIBs)due to their higher specific capacity compared to other anode materials.However,rapid capacity decay and limited cycle li... Metal phosphides have been studied as prospective anode materials for sodium-ion batteries(SIBs)due to their higher specific capacity compared to other anode materials.However,rapid capacity decay and limited cycle life caused by volume expansion and low electrical conductivity of phosphides in SIBs remain still unsolved.To address these issues,GeP_(3) was first prepared by high-energy ball milling,and then Ketjen black(KB)was introduced to synthesize composite GeP_(3)/KB anode materials under controlled milling speed and time by a secondary ball milling process.During the ball milling process,GeP_(3) and KB form strong chemical bonds,resulting in a closely bonded composite.Consequently,the GeP_(3)/KB anodes was demonstrated excellent sodium storage performance,achieving a high reversible capacity of 933.41 mAh·g^(–1) at a current density of 0.05 A·g^(–1) for a special formula of GeP_(3)/KB-600-40 sample prepared at ball milling speed of 600 r/min for 40 h.Even at a high current density of 2 A·g^(–1) over 200 cycles,the capacity remains 314.52 mAh·g^(–1) with a retention rate of 66.6%.In conclusion,this work successfully prepares GeP_(3)/KB anode-carbon composite for electrodes by high-energy ball milling,which can restrict electrode volume expansion,enhance capacity,and improve cycle stability of SIBs. 展开更多
关键词 sodium-ion battery GeP_(3)/C composite Ketjen black ball milling
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Na2FePO4F/C composite synthesized via a simple solid state route for lithium-ion batteries 被引量:4
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作者 HU Hai WANG Yu +2 位作者 HUANG Yan SHU Hong-bo WANG Xian-you 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第6期1521-1529,共9页
Using low-cost FePO4·2H2O as iron source,Na2FePO4F/C composite is prepared by alcohol-assisted ball milling and solid-state reaction method.The XRD pattern of Na2FePO4F/C composite demonstrates sharp peaks,indica... Using low-cost FePO4·2H2O as iron source,Na2FePO4F/C composite is prepared by alcohol-assisted ball milling and solid-state reaction method.The XRD pattern of Na2FePO4F/C composite demonstrates sharp peaks,indicating high crystalline and phase purity.The SEM and TEM images reveal that diameter of the spherical-like Na2FePO4F/C particles ranges from 50 to 300 nm,and HRTEM image shows that the surface of Na2FePO4F/C composite is uniformly coated by carbon layer with a average thickness of about 3.6 nm.The carbon coating constrains the growth of the particles and effectively reduces the agglomeration of nanoparticles.Using lithium metal as anode,the composite delivers a discharge capacities of 102.8,96.4 and 90.3 mA·h/g at rates of 0.5C,1C and 2C,respectively.After 100 cycles at 0.5C,a discharge capacity of 98.9 mA·h/g is maintained with capacity retention of 96.2%.The Li+diffusion coefficient(D)of Na2FePO4F/C composite is calculated as 1.71×10^–9 cm^2/s.This study reveals that the simple solid state reaction could be a practical and effective synthetic route for the industrial production of Na2FePO4F/C material. 展开更多
关键词 lithium-ion batteries Na2FePO4F/C composite alcohol-assisted ball milling solid state reaction spherical-like particles
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Phase transformation of nano-grained W(Co, C) composite powder and its phase constitute 被引量:1
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作者 曹顺华 蔡志勇 +2 位作者 周建华 李炯义 林信平 《Journal of Central South University of Technology》 EI 2006年第6期603-607,共5页
A new process of WC-Co cemented carbide was developed by using nano-grained W(Co, C) composite powders as raw materials processed by high-energy ball milling. X-ray diffraetion(XRD), differential thermal analysis ... A new process of WC-Co cemented carbide was developed by using nano-grained W(Co, C) composite powders as raw materials processed by high-energy ball milling. X-ray diffraetion(XRD), differential thermal analysis (DTA), thermo-gravimetrie (TG) analysis and coercive forces of the sintered samples were adopted to analyze the phase transformation and constitution, and the microstructures of sintered samples were characterized by scanning electron microscopy(SEM). The results show that the as-milled powders are transformed into transitional phases W2C and η (Co3W3C or Co6W6C) during sintering, and finally transformed into WC and Co phases completely at 1 250℃ for 30 min, and a large number of fibrous WC grains with about 1.2μm in length and 100 nm in radial dimension are formed in the sintered body at 1 300 ℃. 展开更多
关键词 cemented carbide phase transformation high-energy ball milling fibrous WC grain
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