期刊文献+
共找到305篇文章
< 1 2 16 >
每页显示 20 50 100
Recycling of Cobalt by Liquid Leaching from Waste 18650-Type Lithium-Ion Batteries
1
作者 Liangmou Yu Bo Shu Shiwen Yao 《Advances in Chemical Engineering and Science》 2015年第4期425-429,共5页
In this work, we recover cobalt from waste 18650-type lithiumion batteries by acid leaching. The cathode material is completely dissolved, after leaching waste batteries by using 10 mol/L industrial sulfuric acid at 7... In this work, we recover cobalt from waste 18650-type lithiumion batteries by acid leaching. The cathode material is completely dissolved, after leaching waste batteries by using 10 mol/L industrial sulfuric acid at 70℃ for 1 h. The rate of cobalt leaching is nearly 100%. Removal of sodium carbonate, iron, aluminum and other impurities from the leaching solution was well performed by adjusting the pH to 2-3 with stirring vigorously. Finally, under the conditions of 55℃-60℃ of 240 A/m2 current density, electrodeposition current efficiency was 90.01%, the quality of the electrical output achieved cobalt 1A standard electrolytic cobalt, cobalt until greater than 90% yield. The process is easy and suitable for large-scale lithiumion batteries used in the recovery of valuable metals. 展开更多
关键词 Component COBALT 18650-type LITHIUM-ION Battery LEACHING ELECTRODEPOSITION
在线阅读 下载PDF
Insights into the effect of Y substitution on superlattice structure and electrochemical performance of A_(5)B_(19)-type La-Mg-Ni-based hydrogen storage alloy for nickel metal hydride battery 被引量:5
2
作者 Yanan Guo Wenfeng Wang +5 位作者 Huanhuan Su Hang Lu Yuan Li Qiuming Peng Shumin Han Lu Zhang 《Journal of Materials Science & Technology》 2025年第4期60-69,共10页
La-Mg-Ni-based hydrogen storage alloys with superlattice structures are the new generation anode material for nickel metal hydride(Ni-MH)batteries owing to the advantages of high capacity and exceptional activation pr... La-Mg-Ni-based hydrogen storage alloys with superlattice structures are the new generation anode material for nickel metal hydride(Ni-MH)batteries owing to the advantages of high capacity and exceptional activation properties.However,the cycling stability is not currently satisfactory enough which plagues its application.Herein,a strategy of partially substituting La with the Y element is proposed to boost the capacity durability of La-Mg-Ni-based alloys.Furthermore,phase structure regulation is implemented simultaneously to obtain the A5 B19-type alloy with good crystal stability specifically.It is found that Y promotes the phase formation of the Pr5 Co19-type phase after annealing at 985℃.The alloy containing Y contributes to the superior rate capability resulting from the promoted hydrogen diffusion rate.Notably,Y substitution enables strengthening the anti-pulverization ability of the alloy in terms of increasing the volume match between[A_(2)B_(4)]and[AB5]subunits,and effectively enhances the anti-corrosion ability of the alloy due to high electronegativity,realizing improved long-term cycling stability of the alloy from 74.2%to 78.5%after cycling 300 times.The work is expected to shed light on the composition and structure design of the La-Mg-Ni-based hydrogen storage alloy for Ni-MH batteries. 展开更多
关键词 Nickel metal hydride battery Y element La-Mg-Ni-based alloy A5 B19-type superlattice structure Electrochemical performance
原文传递
One-step synthesis of ThMn_(12)-type Sm_(0.8)Zr_(0.2)Fe_(11)SiB_(x)(x=0-0.2)ribbon magnets via rapid solidification
3
作者 Chi Zhang Hui-Dong Qian +3 位作者 Wenyun Yang Jingzhi Han Xuegang Chen Jinbo Yang 《Chinese Physics B》 2025年第7期566-571,共6页
ThMn_(12)-type iron-rich rare-earth permanent magnetic materials have garnered significant attention due to their exceptional intrinsic magnetic properties.However,challenges such as the metastable nature of the ThMn1... ThMn_(12)-type iron-rich rare-earth permanent magnetic materials have garnered significant attention due to their exceptional intrinsic magnetic properties.However,challenges such as the metastable nature of the ThMn12-type phase,excessively small single-domain grain size,and complex fabrication processes have hindered the achievement of high phase purity,uniform microstructure,and desirable extrinsic performance.In this study,we directly synthesized ThMn_(12)-type Sm_(0.8)Zr_(0.2)Fe_(11)SiB_(x)(x=0-0.2)ribbon magnets via boron doping combined with a one-step rapid solidification method.This approach not only simplifies the fabrication process but also enhances phase stability and achieves a uniform microstructure with high ThMn12-type phase purity.By optimizing the boron content and cooling rate,the resulting magnets exhibit a coercivity(H_(c))of 6222 Oe,a remanence(M_(r))of 80 emu/g,and a remanence ratio(M_(r)/M_(s))of 0.71.This work demonstrates a streamlined approach to producing high-performance ThMn12-type magnets and provides insights into their practical application potential. 展开更多
关键词 ThMn12-type permanent magnet rapid solidification phase stabilization microstructure
原文传递
Springback Behavior and Biocompatibility inβ-Type Ti-Mo-O Alloys
4
作者 Cheng Ren Xiaohua Min +1 位作者 Sujie Zhang Weiqiang Wang 《Acta Metallurgica Sinica(English Letters)》 2025年第2期313-326,共14页
Ti-Mo-O alloys were used to analyze the effect of Mo and O contents on the mechanical compatibility and biocompatibility.The bending modulus,bending yield strength and springback ratio of the alloys were evaluated by ... Ti-Mo-O alloys were used to analyze the effect of Mo and O contents on the mechanical compatibility and biocompatibility.The bending modulus,bending yield strength and springback ratio of the alloys were evaluated by using three-point bending tests and bending load-unloading tests.The biocompatibility was investigated by the adhesion,proliferation and the alkaline phosphatase(ALP)activity of mouse osteoblast-like cells(MC3T3-E1).The results showed that the bending modulus and bending yield strength first were increased and then decreased with the increase in Mo content,while the springback ratio exhibited an opposite trend to the bending modulus.With the increase in O content,the bending modulus remained almost constant,while the bending yield strength was increased.The springback ratio exhibited a similar trend to the bending yield strength.The in vitro biological experiments showed that the Ti-Mo-O alloys had excellent biocompatibility due to the formed stable oxide films on their surface.With the increase in O and Mo contents,the TiO_(2)-MoO_(2)oxide film became denser.Combining with mechanical compatibility and biocompatibility,the Ti-15Mo-0.2O and Ti-15Mo-0.3O alloys were more suitable for the biomedical application of spinal fixation device. 展开更多
关键词 β-type titanium alloys Bending modulus Bending yield strength SPRINGBACK BIOCOMPATIBILITY
原文传递
Quantum Fisher information of a◇-type fourlevel atom interacting with a single-mode quantized field in an optomechanical cavity
5
作者 Fatemeh Daneshmand Hamid Reza Baghshahi Sayyed Yahya Mirafzali 《Communications in Theoretical Physics》 2025年第4期55-64,共10页
In science and technology,precision measurement of physical quantities is crucial,and the quantum Fisher information(QFI)plays a significant role in the study of quantum systems.In this work,we explore the dynamics of... In science and technology,precision measurement of physical quantities is crucial,and the quantum Fisher information(QFI)plays a significant role in the study of quantum systems.In this work,we explore the dynamics of QFI in a hybrid optomechanical system,which consists of a◇-type four-level atom interacting with a single-mode quantized field via a multi-photon process.We account for various sources of dissipation,including the decay rates of the atom,the cavity and the mechanical modes.Using an effective Hamiltonian,we analytically derive the explicit form of the state vector of the entire system via the time-dependent Schr?dinger equation.We then investigate the atomic QFI for the estimation precision of the decay rate of the mechanical oscillator.Furthermore,we examine how optomechanical and atom-field coupling strengths,dissipation parameters and multi-photon transition influence the dynamics of atomic QFI.Our numerical results suggest that the estimation precision of the decay rate of the mechanical oscillator can be controlled by these parameters. 展开更多
关键词 quantum fisher information multi-photon transition -type four-level atom optomechanical cavity DISSIPATION
原文传递
Understanding of TiO_(2)/Co_(3)O_(4)-modified configuration strategy for stabilizing O3-type NaNi_(0.4)Fe_(0.2)Mn_(0.4)O_(2) cathodes with enhanced long-term and rate performance
6
作者 Zidong Yu Xiaojuan Liu +5 位作者 Zhicheng Liu Ye Liu Chao Su Zhi Sun Jilei Du Tao Wei 《International Journal of Minerals,Metallurgy and Materials》 2025年第11期2806-2813,共8页
Sodium-ion batteries(SIBs)have recently gained wildly interest due to the abundance of sodium,lower production costs,and better low-temperature performance compared to lithium-ion batteries(LIBs).Among various cathode... Sodium-ion batteries(SIBs)have recently gained wildly interest due to the abundance of sodium,lower production costs,and better low-temperature performance compared to lithium-ion batteries(LIBs).Among various cathode materials of SIBs,O_(3)-type NaNi_(0.4)Fe_(0.2)Mn_(0.4)O_(2)(NFM424)demonstrates high capacity and ease of synthesis,yet suffers from structural degradation and sluggish Na^(+)kinetics caused by large ionic radius and strong electrostatic interactions.To overcome these issues,a configuration strategy combined with TiO_(2) and Co_(3)O_(4) by a simple solid-state reaction method was introduced to improve structural and electrochemical stability.XRD,SEM,TEM,and various electrochemical characterizations as well as TGA/DSC tests were conducted.The resulting NaNi_(0.4)Fe_(0.2)Mn_(0.3)Co_(0.05)Ti_(0.05)O_(2)(NFMCT)cathode mitigated Jahn-Teller distortions and Na^(+)/vacancy ordering while enhancing phase integrity and diffusion pathways.The obtained NFMCT maintained 93.7 mAh·g^(−1) after 550 cycles at 1 C,with superior rate capabilities at 2 C and 5 C.These findings deepen the understanding of configuration strategy by using multi-element oxide and highlight a practical strategy for designing high-performance SIB cathodes. 展开更多
关键词 sodium-ion batteries layered oxides structural instability configuration strategy O3-type
在线阅读 下载PDF
Manipulating local electronic and interfacial structure of O_(3)-type layered oxides for high-rate sodium-ion battery cathodes
7
作者 Yong Li Lanlan Lei +10 位作者 Jie Hou Guangming Wang Qinhui Ren Qinhao Shi Juan Wang Liping Chen Guannan Zu Shuyue Li Jianghua Wu Yunhua Xu Yufeng Zhao 《Journal of Energy Chemistry》 2025年第6期224-232,I0006,共10页
03-type layered oxide serves as dominant components in sodium ion batteries;however,the unstable electronic structure between transition metal and oxygen inevitably induces framework instability and severe kinetic hin... 03-type layered oxide serves as dominant components in sodium ion batteries;however,the unstable electronic structure between transition metal and oxygen inevitably induces framework instability and severe kinetic hindrance.In this study,a two-in-one approach to synergistically modulate the local electro nic and interfacial structure of NaNi_(1/3)Fe_(1/3)Mn_(1/3)O_(2)by Ce modification is proposed.We present an indepth study to reveal the strong-covalent Ce-O bonds,which make local charge around oxygen more negative,enhance O 2p-Mn 3d hybridization,and preserve the octahedral structural integrity.This modification tailors local electronic structure between the octahedral metal center and oxygen,thus enhancing reversibility of 03-P3-03 phase transition and expanding Na+octahedral-tetrahedral-octahedral transport channel.Additionally,the nanoscale perovskite layer induced by Ce element is in favor of minimizing interfacial side reaction as well as enhancing Na^(+)diffusivity.As a result,the designed 03-NaNi_(0.305)Fe_(0.33)Mn_(0.33)Ce_(0.025)O_(2)material delivers an exceptionally low volume variation,an ultrahigh rate capacity of 76.9 mA h g^(-1)at 10 C,and remarkable cycling life over 250 cycles with capacity retention of 80% at 5 C. 展开更多
关键词 Sodium ion batteries O3-type layered oxide Kinetic hindrance Phase transition Electronic structure
在线阅读 下载PDF
Insights into magnesium and titanium co-doping to stabilize the O3-type NaCrO_(2) cathode material for sodium-ion batteries
8
作者 Wenya Li Yuanqi Yang +8 位作者 Yuqing Yang Min Liang Huizi Li Xi Ke Liying Liu Yan Sun Chunsheng Li Zhicong Shi Su Ma 《Chinese Chemical Letters》 2025年第10期612-615,共4页
The development of high-performance cathode materials is critical to the practical application of sodiumion batteries(SIBs).O3-type NaCrO_(2)(NCO)is one of the most competitive cathodes,but it suffers from rapid capac... The development of high-performance cathode materials is critical to the practical application of sodiumion batteries(SIBs).O3-type NaCrO_(2)(NCO)is one of the most competitive cathodes,but it suffers from rapid capacity decay caused by severe irreversible structural evolution.An Mg-Ti co-doped Na_(0.99)Cr_(0.95)Mg_(0.02)Ti_(0.03)O_(2)(NCO-MT)cathode material is designed and synthesized via a facile solid-state reaction to enhance the cyclability of NCO.A capacity retention of 71.6%after 2500 cycles with the capacity fade rate of 0.011%per cycle is achieved for NCO-MT at 5 C,which is attributed to the highly reversible crystal structure during cycling.Our findings offer a novel insight into the high-performance O3-type layered cathode materials for SIBs and are beneficial to promote the development of high-rate SIBs. 展开更多
关键词 Sodium-ion batteries O3-type NaCrO_(2) Mg-Ti co-doping Cycling stability Structural reversibility
原文传递
Enhanced performance of Ni-MOFs-based O3-type NaNi_(0.5)Mn_(0.5)O_(2)cathode material for sodium-ion batteries
9
作者 Bo Yang Sheng-Kui Zhong +6 位作者 Zhuo-Kui Zhong Jie-Qun Liu Shi-Wei Bai Qian-Hui Wu Zhi-Jian Liao Shi-He Shi Zhi-Yuan Zhang 《Rare Metals》 2025年第7期4609-4620,共12页
One prominent cathode material utilized in commercial sodium-ion batteries is the O3-type NaNi_(0.5)Mn_(0.5)O_(2).The application of this material is hindered by multistage phase transitions and insufficient air stabi... One prominent cathode material utilized in commercial sodium-ion batteries is the O3-type NaNi_(0.5)Mn_(0.5)O_(2).The application of this material is hindered by multistage phase transitions and insufficient air stability.In this study,an innovative O3-type NaNi_(0.5)Mn_(0.5)O_(2),derived from Ni-MOFs (referred to as M-NNMO),has been developed as a cathode material for sodium-ion batteries.The M-NNMO cathode exhibits a discharge specific capacity of 124 mAh·g^(-1)at a rate of0.1C within 2.0 to 4.0 V.Furthermore,this material demonstrates an impressive capacity retention of 75%after undergoing 100 cycles.Complex phase transitions can be inhibited and ion diffusion rates can be increased simultaneously by Ni-MOFs through the enhancement of transition metal-oxygen bonding and the rise n Na layer gap,which are in charge of the remarkable performance improvement.Importantly,the enhanced stability of the M-NNMO transition metal layer based on the uniquestructural properties of Ni-MOFs in air stability tests.This work will provide theoretical guidance to design sodiumion battery cathode materials with superior performance. 展开更多
关键词 Ni-MOFs Sodium-ion batteries O3-type NaNi_(0.5)Mn_(0.5)O_(2) Air stability
原文传递
Highlighting the electrochemical performance of AB_(4)-type single-phase La_(0.6)0Sm_(0.22)Mg_(0.18)Ni_(4.09)Al_(0.09)Mn_(0.10) hydrogen storage alloy for nickel metal hydride batteries
10
作者 Ning Zhang Hang Lu +6 位作者 Wen-Feng Wang Qiu-Yue Jia An-Yi Zhang Yuan Li Ning Xi Shu-Min Han Lu Zhang 《Rare Metals》 2025年第5期3392-3404,共13页
Rare earth-Mg-Ni-based superlattice structure alloys have garnered recognition as promising materials for hydrogen storage.However,their application is impeded by suboptimal cycling longevity.The novel AB_(4)-type all... Rare earth-Mg-Ni-based superlattice structure alloys have garnered recognition as promising materials for hydrogen storage.However,their application is impeded by suboptimal cycling longevity.The novel AB_(4)-type alloy emerges as an attractive candidate,distinguished by its good structure stability,high rate capability,and long-term durability.Herein,we designed an AB_(4)-type La_(0.6)0Sm_(0.22)Mg_(0.18)Ni_(4.09)Al_(0.09)Mn_(0.10)alloy that manifests superior electrochemical performance.The obtained AB_(4)-type single-phase alloy delivers a high discharge capacity of 375.2 mAh·g^(-1)and features outstanding discharge ability at high rates,maintaining 121 mAh·g^(-1)even at a discharge rate of 6C.The excellent high-rate discharge performance can be attributed to its fast charge transfer and hydrogen diffusion kinetics.Moreover,the AB_(4)-type alloy maintains a capacity retention of 84.5%after 200 cycles and retains 55.7%of its capacity retention even after 500 cycles.This work provides a good alternative to hydrogen storage alloy with high power and long cycling durability performance for nickel metal hydride batteries. 展开更多
关键词 Nickel metal hydride batteries RE-Mg-Ni-based alloys Hydrogen storage alloys AB_(4)-type superlattice structure Cyclic stability High rate discharge ability
原文传递
First-Principles Study of P2-Type Na_(x)NiO_(2)and Na_(x)Ni_(0.75)M_(0.25)O_(2)(M=Fe,Cu,Mn)Cathode Materials for Sodium-Ion Battery
11
作者 Xiaoyue He Genqiang Zhang 《Chinese Journal of Chemical Physics》 2025年第6期917-925,I0240,共10页
The development of affordable,high-efficiency sodium-ion batteries is primarily dependent on the advancement of cathode materials.These materials need to exhibit a high cell voltage,significant storage capacity,and qu... The development of affordable,high-efficiency sodium-ion batteries is primarily dependent on the advancement of cathode materials.These materials need to exhibit a high cell voltage,significant storage capacity,and quick diffusion of sodium ions to fulfill the requirements for efficient and ecofriendly energy storage systems.In this vein,density functional theory(DFT)calculation has become instrumental in advancing the study of battery materials.This study presents a firstprinciples investigation of P2-type Na_(x)NiO_(2)and Na_(x)Ni_(0.75)M_(0.25)O_(2)(M=Cu,Fe,Mn)cathode materials for sodium-ion batteries(SIBs),focusing on Na content variation and its impact on the battery performance.For NaNiO_(2),we replaced part of the expensive Ni element with lower-cost Cu,Fe,and Mn in hopes of reducing costs and improving material performance.By employing density functional theory(DFT),we explore the relationship between lattice constants,cell volume,enthalpy of formation,and cell voltage,and how these factors influence sodium ion insertion/extraction.We provide insights into the diffusion paths and activation energies for Na ions,and assess the influence of transition metal(TM)substitution on the structural stability and electrochemical properties of the materials.Additionally,the study delves into the electronic structure,highlighting how Cu and Fe integration refines the band gap of the spin-down bands.The findings reveal that certain transition metal substitutions can enhance performance,offering a pathway to optimize sodium-ion battery electrode materials. 展开更多
关键词 Cathode Density functional theory calculation Sodium-ion battery Ab initio molecular dynamics P2-type Na_(x)NiO_(2)
在线阅读 下载PDF
Breaking boundaries in O_(3)-type NaNi_(1/3)Fe_(1/3)Mn_(1/3)O_(2)cathode materials for sodium-ion batteries:An industrially scalable reheating strategy for superior electrochemical performance
12
作者 Manman Chen Cai Zhao +10 位作者 Yan Li Hui Wang Kaihang Wang Shengchen Yang Yue Gao Wenjuan Zhang Chun Chen Tao Zhang Lei Wen Kehua Dai Jing Mao 《Journal of Energy Chemistry》 2025年第3期107-119,共13页
To address the challenges of air stability and slurry processability in layered transition metal oxide O_(3)-type NaNi_(1/3)Fe_(1/3)Mn_(1/3)O_(2)(NFM)for sodium-ion batteries(SIBs),we have designed an innovative 500℃... To address the challenges of air stability and slurry processability in layered transition metal oxide O_(3)-type NaNi_(1/3)Fe_(1/3)Mn_(1/3)O_(2)(NFM)for sodium-ion batteries(SIBs),we have designed an innovative 500℃reheating strategy.This method improves the surface properties of NFM without the need for additional coating layers,making it more efficient and suitable for large-scale applications.Pristine NFM(NFM-P)was first synthesized through a high-temperature solid-state method and then modified using this reheating approach(NFM-HT).This strategy significantly enhances air stability and electrochemical performance,yielding an initial discharge specific capacity of 151.46 mAh/g at 0.1C,with a remarkable capacity retention of 95.04%after 100 cycles at 0.5C.Additionally,a 1.7 Ah NFM‖HC(hard carbon)pouch cell demonstrates excellent long-term cycling stability(94.64%retention after 500 cycles at 1C),superior rate capability(86.48%retention at 9C),and strong low-temperature performance(77%retention at-25℃,continuing power supply at-40℃).Notably,even when overcharged to 8.29 V,the pouch cell remained safe without combustion or explosion.This reheating strategy,which eliminates the need for a coating layer,offers a simpler,more scalable solution for industrial production while maintaining outstanding electrochemical performance.These results pave the way for broader commercial adoption of NFM materials. 展开更多
关键词 Sodium-ion batteries O_(3)-type layered oxide cathode REHEATING Al_(2)O_(3)coating Pouch full cells
在线阅读 下载PDF
Occupied Outer Cationic Orbitals in Dimeric MX_(2)-Type BaSe_(2) Compound Lead to Reduced Thermal Conductivity and High Thermoelectric Performance
13
作者 Jie Zhang Li Zhou +2 位作者 Xiaohong Xia Yun Gao Zhongbing Huang 《Energy & Environmental Materials》 2025年第1期203-214,共12页
Decoupling electrical and thermal properties to enhance the figure of merit of thermoelectric materials underscores an in-depth understanding of the mechanisms that govern the transfer of charge carriers.Typically,a f... Decoupling electrical and thermal properties to enhance the figure of merit of thermoelectric materials underscores an in-depth understanding of the mechanisms that govern the transfer of charge carriers.Typically,a factor that contributes to the optimization of thermal conductivity is often found to be detrimental to the electrical transport properties.Here,we systematically investigated 26 dimeric MX_(2)-type compounds(where M represents a metal and X represents a nonmetal element)to explore the influence of the electronic configurations of metal cations on lattice thermal transport and thermoelectric performance using first-principles calculations.A principled scheme has been identified that the filled outer orbitals of the cation lead to a significantly lower lattice thermal conductivity compared to that of the partly occupied case for MX_(2),due to the much weakened bonds manifested by the shallow potential well,smaller interatomic force constants,and higher atomic displacement parameters.Based on these findings,we propose two ionic compounds,BaAs and BaSe_(2),to realize reasonable high electrical conductivities through the structural anisotropy caused by the inserted covalent X_(2) dimers while still maintaining the large lattice anharmonicity.The combined superior electrical and thermal properties of BaSe_(2) lead to a high n-type thermoelectric ZT value of 2.3 at 500 K.This work clarifies the structural origin of the heat transport properties of dimeric MX_(2)-type compounds and provides an insightful strategy for developing promising thermoelectric materials. 展开更多
关键词 anisotropic electrical and thermal transport density functional theory dimeric MX_(2)-type compounds energy materials ionic compound BaSe_(2)and BaAs simulation THERMOELECTRICS
在线阅读 下载PDF
隔膜对18650型锂离子电池性能的影响 被引量:8
14
作者 高洪森 龚金保 +1 位作者 韩恩山 高俊奎 《电池》 CAS CSCD 北大核心 2008年第3期166-168,共3页
用4种隔膜制作了18650型锂离子电池,并测试了电池的安全性能(150℃热箱、冲击和过充实验)和电性能(倍率和循环性能)。隔膜的孔隙率大、熔融温度高,电池的150℃热箱安全性能坚持时间就短,而2C、12 V过充安全性能和倍率放电性能更好。孔... 用4种隔膜制作了18650型锂离子电池,并测试了电池的安全性能(150℃热箱、冲击和过充实验)和电性能(倍率和循环性能)。隔膜的孔隙率大、熔融温度高,电池的150℃热箱安全性能坚持时间就短,而2C、12 V过充安全性能和倍率放电性能更好。孔隙率值合适(约45%)和孔径均匀的隔膜,能提高电池的循环性能。 展开更多
关键词 隔膜 18650型锂离子电池 安全性能 电性能
在线阅读 下载PDF
基于UKF的18650锂离子电池健康状况估计 被引量:8
15
作者 汪秋婷 姜银珠 陆赟豪 《电源技术》 CAS CSCD 北大核心 2016年第3期543-546,共4页
根据18650型锂离子单体电池的特性分析,建立了电路等效模型和电化学模型相结合的电池模型,以实时在线辨识锂离子电池欧姆内阻为目标,利用无迹Kalman(UKF)滤波算法,实现了对电池欧姆内阻的在线辨识,开展了锂离子电池健康状况(SOH)估计实... 根据18650型锂离子单体电池的特性分析,建立了电路等效模型和电化学模型相结合的电池模型,以实时在线辨识锂离子电池欧姆内阻为目标,利用无迹Kalman(UKF)滤波算法,实现了对电池欧姆内阻的在线辨识,开展了锂离子电池健康状况(SOH)估计实验,建立了适用于18650型锂离子电池的SOH估计模型。仿真结果显示,该模型同时考虑电池内阻在不同工况下的变化趋势和充放电电流大小等因素,为实现锂离子电池健康状况精确估计提供了较好的理论基础。 展开更多
关键词 18650锂离子电池 健康状况(SOH) UKF
在线阅读 下载PDF
细水雾抑制18650型锂离子电池热失控实验研究 被引量:10
16
作者 张青松 白伟 +1 位作者 程相静 曹文杰 《火灾科学》 CAS CSCD 北大核心 2018年第3期154-158,共5页
为研究细水雾灭火系统对18650型锂电池热失控的抑制效果,利用自设计实验平台进行抑爆实验,对比初爆与燃爆两个关键点及有无外部热源的温度变化图。研究表明,细水雾能够明显抑制18650型锂电池热失控,但施加细水雾的时间点对抑制效果影响... 为研究细水雾灭火系统对18650型锂电池热失控的抑制效果,利用自设计实验平台进行抑爆实验,对比初爆与燃爆两个关键点及有无外部热源的温度变化图。研究表明,细水雾能够明显抑制18650型锂电池热失控,但施加细水雾的时间点对抑制效果影响较大,初爆后施加细水雾能够有效抑制,在燃爆后施加细水雾10s内温度降低200℃以上,但由于锂电池内部电解液复燃的特点,温度回升。温升速率的变化使得电池初爆的时间和温度分别提前了67.4%和44.4%,据此提出通过探测18650型锂电池初爆释放气体发现热失控发生并在最短时间内移除异常行为电池来控制电池热失控及其热量的异常传播。 展开更多
关键词 细水雾 18650型锂电池 热失控 实验研究
在线阅读 下载PDF
基于18650型磷酸铁锂动力电芯的产热和电化学行为分析 被引量:2
17
作者 张江云 张国庆 +1 位作者 黄启秋 王烨 《广东工业大学学报》 CAS 2018年第4期94-99,共6页
测试某知名进口和国产的A款和B款18650磷酸铁锂动力电芯在室温(25℃)、低温(–20℃)和高温(55℃)下不同放电倍率的温度性能、产热行为和电化学性能,分析两款电芯放电容量、放电电压平台、交流阻抗、电芯过充循环后直流内阻随着荷电状态... 测试某知名进口和国产的A款和B款18650磷酸铁锂动力电芯在室温(25℃)、低温(–20℃)和高温(55℃)下不同放电倍率的温度性能、产热行为和电化学性能,分析两款电芯放电容量、放电电压平台、交流阻抗、电芯过充循环后直流内阻随着荷电状态的变化规律.结果表明环境温度和放电电流越高,电芯最高温度和温升斜率急剧增加;室温10 C放电时,B款最高温度比A款增加13.2%;B款电芯低温工况大电流放电时,电芯仅放出2.65%的电量,几乎失去正常放电电压平台;电芯的直流内阻随着荷电量的增加呈下降的趋势,过充导致电芯的直流内阻最大增加24.19%. 展开更多
关键词 18650磷酸铁锂动力电芯 温度性能 产热行为 电化学性能
在线阅读 下载PDF
Microstructure,mechanical properties and dry wear resistance of β-type Ti-15Mo-xNb alloys for biomedical applications 被引量:7
18
作者 徐丽娟 肖树龙 +1 位作者 田竟 陈玉勇 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2013年第3期692-698,共7页
In order to study the effect of element Nb on the microstructure and properties of the biomedical β-type Ti-Mo based alloys,Ti-15Mo-xNb(x=5,10,15 and 20 in %) alloys were investigated.The dry wear resistance of β-... In order to study the effect of element Nb on the microstructure and properties of the biomedical β-type Ti-Mo based alloys,Ti-15Mo-xNb(x=5,10,15 and 20 in %) alloys were investigated.The dry wear resistance of β-type Ti-15Mo-xNb alloys against Gr15 ball was investigated on CJS111A ball-disk wear instrument.Experimental results indicate that crystal structure and morphology of the Ti-15Mo-xNb alloys are sensitive to their Nb contents.Ti-15Mo-xNb alloys match those for β phase peaks and no any phases are found.The Vickers hardness values of all the Ti-15Mo-xNb alloys are higher than HV200.The compression yield strength of the Ti-15Mo-5Nb alloy is the lowest and that of the Ti-15Mo-10Nb alloy is the highest.For all the Ti-15Mo-xNb alloys,the friction coefficient is not constant but takes a higher value.In dry condition,SEM study reveals deep parallel scars on the wear surfaces of all the Ti-15Mo-xNb alloys under different loads.The friction coefficient of the Ti-15Mo-5Nb alloy under 1 N is the lowest.The wear principal mechanism for Ti-15Mo-xNb alloys is adhesive wear. 展开更多
关键词 β-type Ti-Mo-Nb alloys wear resistance adhesive wear MICROSTRUCTURE mechanical properties
在线阅读 下载PDF
Structures and electrochemical hydrogen storage performance of Si added A_2B_7-type alloy electrodes 被引量:6
19
作者 张羊换 任慧平 +3 位作者 蔡颖 杨泰 张国芳 赵栋梁 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2014年第2期406-414,共9页
In order to ameliorate the electrochemical hydrogen storage performance of La-Mg-Ni system A2B7-type electrode alloys, a small amount of Si was added. The La0.8Mg0.2Ni3.3Co0.2Six (x=0-0.2) electrode alloys were prep... In order to ameliorate the electrochemical hydrogen storage performance of La-Mg-Ni system A2B7-type electrode alloys, a small amount of Si was added. The La0.8Mg0.2Ni3.3Co0.2Six (x=0-0.2) electrode alloys were prepared by casting and annealing. The effects of adding Si on the structure and electrochemical hydrogen storage characteristics of the alloys were investigated systematically. The results indicate that the as-cast and annealed alloys hold multiple structures, involving two major phases of (La, Mg)2Ni7 with a Ce2Ni7-type hexagonal structure and LaNi5 with a CaCu5-type hexagonal structure as well as one residual phase LaNi3. The addition of Si results in a decrease in (La, Mg)2Ni7 phase and an increase in LaNi5 phase without changing the phase structure of the alloys. What is more, it brings on an obvious effect on electrochemical hydrogen storage characteristics of the alloys. The discharge capacities of the as-cast and annealed alloys decline with the increase of Si content, but their cycle stabilities clearly grow under the same condition. Furthermore, the measurements of the high rate discharge ability, the limiting current density, hydrogen diffusion coefficient as well as electrochemical impedance spectra all indicate that the electrochemical kinetic properties of the electrode alloys first increase and then decrease with the rising of Si content. 展开更多
关键词 A2B7-type electrode alloy Si additive STRUCTURE electrochemical characteristics
在线阅读 下载PDF
调控电解液溶剂组分实现LCO/C低温18650电池循环寿命显著提升 被引量:1
20
作者 程广玉 刘新伟 +2 位作者 刘硕 顾海涛 王可 《储能科学与技术》 CAS CSCD 北大核心 2024年第7期2171-2180,共10页
低温18650电池的循环寿命一直是限制其发展的关键因素,为了实现长循环寿命与低温性能的兼顾,通过调控电解液溶剂组分,对比分析了不同电解液对电池倍率性能、高低温放电、荷电保持率、循环寿命、EIS阻抗变化等的影响。结果表明,电解液组... 低温18650电池的循环寿命一直是限制其发展的关键因素,为了实现长循环寿命与低温性能的兼顾,通过调控电解液溶剂组分,对比分析了不同电解液对电池倍率性能、高低温放电、荷电保持率、循环寿命、EIS阻抗变化等的影响。结果表明,电解液组分设计对电池性能有显著影响,通过低熔点的长链线性羧酸酯部分取代碳酸酯及短链羧酸酯,既可以实现较好的低温性能,同时又提升了高温稳定性。EP、PP的比例对于LCO/C电极体系循环稳定性有重要作用。其中溶剂组分EC+EP+PP(质量比2∶5∶3)具备最佳的综合性能,研制的LTB电池5C放电容量保持率达99.86%,-40℃/1C放电容量保持率达92.84%,循环1000次后低温-40℃/1C放电仍然达到初始低温放电容量的90%,常温循环1500次容量保持率达85%,低温-10℃循环500次容量保持率82.4%。 展开更多
关键词 低温 18650电池 电解液 循环寿命 锂离子电池
在线阅读 下载PDF
上一页 1 2 16 下一页 到第
使用帮助 返回顶部