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Factors Affecting the Thermal Conductivity of Vacuum-Insulated Panels:a Review 被引量:1
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作者 RONG Xian YANG Yuqi ZHANG Jianxin 《材料导报》 北大核心 2025年第13期278-290,共13页
In recent years,there has been a growing global demand for carbon neutrality and energy efficiency,which are expected to become long-term trends.In the field of architecture,an effective approach to achieve this is to... In recent years,there has been a growing global demand for carbon neutrality and energy efficiency,which are expected to become long-term trends.In the field of architecture,an effective approach to achieve this is to reduce heat loss in buildings.Vacuum insulation panels(VIPs),a type of high-performance insulation material,have been increasingly utilised in the construction industry and have played an increa-singly important role as their performance and manufacturing processes continue to improve.This paper provides a review of the factors affecting the thermal conductivity of VIPs and presents a detailed overview of the research progress on core materials,barrier films,and getters.The current research status of VIPs is summarised,including their thermal conductivity,service life,and thermal bridging effects,as well as their applications in the field of architecture.This review aims to provide a comprehensive understanding for relevant practitioners on the factors influencing the thermal conductivity of VIPs,and based on which,measures can be taken to produce VIPs with lower thermal conductivity and longer service life. 展开更多
关键词 vacuum insulation panel thermal conductivity thermal insulation energy conservation
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Syntheses,proton conduction,and transport mechanism of two three‑dimensional lanthanum phosphite‑oxalates
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作者 LU Yang HUANG Liangliang +2 位作者 ZHAO Wei WANG Xin BI Yanfeng 《无机化学学报》 北大核心 2025年第10期2127-2137,共11页
To develop proton-conducting materials with high hydrothermal and acid-base stability and to elucidate the proton-transport mechanism through visualized structural analysis,two new lanthanum phosphite-oxalates with 3D... To develop proton-conducting materials with high hydrothermal and acid-base stability and to elucidate the proton-transport mechanism through visualized structural analysis,two new lanthanum phosphite-oxalates with 3D frameworks,designated as[La(HPO_(3))(C_(2)O_(4))0.5(H_(2)O)_(2)](La‑1)and(C_(6)H_(16)N_(2))(H_(3)O)[La_(2)(H_(2)PO_(3))_(3)(C_(2)O_(4))_(3)(H_(2)O)](La‑2)(C_(6)H_(14)N_(2)=cis-2,6-dimethylpiperazine),were prepared by hydrothermal and solvothermal conduction,respectively.La‑1 was constructed with lanthanum phosphite 2D layers and C_(2)O_(4)^(2-)groups,whereas La‑2 was constructed with lanthanum oxalate 2D layers and H_(2)PO^(3-)groups.Alternating current(AC)impedance spectra indicate that the pro-ton conductivities of both compounds could reach 10^(-4)S·cm^(-1)and remain highly durable at 75℃and 98%of rela-tive humidity(RH).Due to the abundance of H-bonds in La‑2,theσof La‑2 was higher than that of La‑1.La‑1 exhibited excellent water and pH stability.CCDC:2439965,La‑1;443776,La‑2. 展开更多
关键词 OPEN-FRAMEWORK lanthanum phosphite-oxalate proton conductivity stability
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Advances of carbon nanotubes in lithium-ion batteries for the era of carbon neutrality
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作者 HE Zi-ying YU Xing-wei +3 位作者 LV Qing-long WANG Xin-ping ZHANG Chen-xi WEI Fei 《新型炭材料(中英文)》 北大核心 2025年第4期766-781,共16页
Energy storage is a key factor in the drive for carbon neutrality and carbon nanotubes(CNTs)may have an important role in this.Their intrinsic sp2 covalent structure gives them excellent electrical conductivity,mechan... Energy storage is a key factor in the drive for carbon neutrality and carbon nanotubes(CNTs)may have an important role in this.Their intrinsic sp2 covalent structure gives them excellent electrical conductivity,mechanical strength,and chemical stability,making them suitable for many uses in energy storage,such as lithium-ion batteries(LIBs).Currently,their use in LIBs mainly focuses on conductive networks,current collectors,and dry electrodes.The review outlines advances in the use of CNTs in the cathodes and anodes of LIBs,especially in the electrode fabrication and mechanical sensors,as well as providing insights into their future development. 展开更多
关键词 Carbon nanotubes Conductive additives Lithium-ion batteries Carbon neutrality Energy storage
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Novel thermal interface materials based on mesocarbon microbeads with a high through-plane thermal conductivity
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作者 SUN Zhi-peng MA Cheng +2 位作者 WANG Ji-tong QIAO Wen-ming LING Li-cheng 《新型炭材料(中英文)》 北大核心 2025年第2期440-455,共16页
The rapid development of the information era has led to in-creased power consumption,which generates more heat.This requires more efficient thermal management systems,with the most direct ap-proach being the developme... The rapid development of the information era has led to in-creased power consumption,which generates more heat.This requires more efficient thermal management systems,with the most direct ap-proach being the development of su-perior thermal interface materials(TIMs).Mesocarbon microbeads(MCMBs)have several desirable properties for this purpose,includ-ing high thermal conductivity and excellent thermal stability.Although their thermal conductivity(K)may not be exceptional among all carbon materials,their ease of production and low cost make them ideal filler materials for developing a new generation of carbon-based TIMs.We report the fabrication of high-performance TIMs by incorporating MCMBs in a polyimide(PI)framework,producing highly graphitized PI/MCMB(PM)foams and anisotropic polydimethylsiloxane/PM(PDMS/PM)composites with a high thermal conductivity using directional freezing and high-temperature thermal annealing.The resulting materials had a high through-plane(TP)K of 15.926 W·m^(−1)·K^(−1),4.83 times that of conventional thermally conductive silicone pads and 88.5 times higher than that of pure PDMS.The composites had excellent mechanical properties and thermal stability,meeting the de-mands of modern electronic products for integration,multi-functionality,and miniaturization. 展开更多
关键词 Thermal interface material Mesocarbon microbeads Through-plane thermal conductivity
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Efficiently enhancing thermal conductivity of polymer bonded explosives via the construction of primary-secondary thermal conductivity networks
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作者 Xunyi Wang Peng Wang +4 位作者 Jie Chen Zhipeng Liu Yuxin Luo Wenbin Yang Guansong He 《Defence Technology(防务技术)》 2025年第6期95-103,共9页
Realizing effective enhancement in the thermally conductive performance of polymer bonded explosives(PBXs) is vital for improving the resultant environmental adaptabilities of the PBXs composites. Herein, a kind of pr... Realizing effective enhancement in the thermally conductive performance of polymer bonded explosives(PBXs) is vital for improving the resultant environmental adaptabilities of the PBXs composites. Herein, a kind of primary-secondary thermally conductive network was designed by water-suspension granulation, surface coating, and hot-pressing procedures in the graphene-based PBXs composites to greatly increase the thermal conductive performance of the composites. The primary network with a threedimensional structure provided the heat-conducting skeleton, while the secondary network in the polymer matrix bridged the primary network to increase the network density. The enhancement efficiency in the thermally conductive performance of the composites reached the highest value of 59.70% at a primary-secondary network ratio of 3:1. Finite element analysis confirmed the synergistic enhancement effect of the primary and secondary thermally conductive networks. This study introduces an innovative approach to designing network structures for PBX composites, significantly enhancing their thermal conductivity. 展开更多
关键词 Thermally conductive performance Primary-secondary thermally conductive networks Network density Polymer-bonded explosives
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Size-dependent heat conduction of thermal cellular structures: A surface-enriched multiscale method
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作者 Xiaofeng Xu Junfeng Li +2 位作者 Xuanhao Wu Ling Ling Li Li 《Defence Technology(防务技术)》 2025年第7期50-67,共18页
This paper examined how microstructure influences the homogenized thermal conductivity of cellular structures and revealed a surface-induced size-dependent effect.This effect is linked to the porous microstructural fe... This paper examined how microstructure influences the homogenized thermal conductivity of cellular structures and revealed a surface-induced size-dependent effect.This effect is linked to the porous microstructural features of cellular structures,which stems from the degree of porosity and the distri-bution of the pores.Unlike the phonon-driven surface effect at the nanoscale,the macro-scale surface mechanism in thermal cellular structures is found to be the microstructure-induced changes in the heat conduction path based on fully resolved 3D numerical simulations.The surface region is determined by the microstructure,characterized by the intrinsic length.With the coupling between extrinsic and intrinsic length scales under the surface mechanism,a surface-enriched multiscale method was devel-oped to accurately capture the complex size-dependent thermal conductivity.The principle of scale separation required by classical multiscale methods is not necessary to be satisfied by the proposed multiscale method.The significant potential of the surface-enriched multiscale method was demon-strated through simulations of the effective thermal conductivity of a thin-walled metamaterial struc-ture.The surface-enriched multiscale method offers higher accuracy compared with the classical multiscale method and superior efficiency over high-fidelity finite element methods. 展开更多
关键词 Thermal conductivity Surface-enriched multiscale method METAMATERIAL Surface effect Multi-scale modeling
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A self-sensing HTPB liner for non-destructive monitoring nitroglycerin(NG)migration at the interface between double base propellant and the HTPB liner
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作者 Jie Wang Bo Liu +4 位作者 Yanchun Li Mengqi Chen Qian Guo Dongming Song Aifeng Jiang 《Defence Technology(防务技术)》 2025年第8期166-175,共10页
During the storage of composite propellants, the migration of plasticizers and other unbonded additives at the interfaces of liner adhesives has garnered significant attention in understanding liner failure mechanisms... During the storage of composite propellants, the migration of plasticizers and other unbonded additives at the interfaces of liner adhesives has garnered significant attention in understanding liner failure mechanisms, aging processes, and safety performance. However, there is currently no non-destructive and quantitative detection method for migration of plasticizers in propellant liner. In this study, we developed a HTPB sensing liner by incorporating conductive fillers-namely carbon black(CB), carbon nanotubes(CNTs), and graphene nanoplatelets(GNP)-into the HTPB matrix. The synergistic interaction between CNTs and GNP facilitates the formation of a tunneling conductive network that imparts electrical conductivity to the HTPB liner. To elucidate the functional relationship between conductivity and nitroglycerin(NG) migration, we applied the HTPB sensing liner onto double base propellant surfaces and measured both the conductivity of the sensing layer and NG migration during a 71°C accelerated aging experiment. The results shows that when CNTs/GNP content reaches 3wt%, there is an exponential correlation between conductivity and NG migration with a fitting degree of 0.9652;the average response sensitivity of ΔR/R0 relative to NG migration is calculated as 41.69, with an average deviation of merely5.67% between NG migrations derived from conductivity fittings compared to those obtained via TGA testing results. Overall, this sensing liner exhibits excellent capabilities for detecting NG migration nondestructively and quantitatively while offering a novel approach for assessing interfacial component migrations as well as debonding defects in propellants-a promising avenue for future self-monitoring strategies regarding propellant integrity. 展开更多
关键词 Sensing liner Electrical conductivity Nitroglycerine migration Non-destructive detection
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Study on the reaction kinetics mechanism and properties of RDX/ADN/FKM2602 composite microspheres
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作者 Cenlin Pan Zhenhua Liu +5 位作者 Yubing Zhao Ning Liu Taixing Liang Xiaodong Li Jingyu Wang Xiaofeng Shi 《Defence Technology(防务技术)》 2025年第6期131-140,共10页
This study prepared a class of RDX-based composite microspheres(RAF)containing ADN and FKM2602.The reaction kinetics of RAF composite microspheres were effectively improved by maintaining the system's high energy ... This study prepared a class of RDX-based composite microspheres(RAF)containing ADN and FKM2602.The reaction kinetics of RAF composite microspheres were effectively improved by maintaining the system's high energy and safety performance.In the close packing state,when the heating rate is rapid,the thermal stability of RAF composite microspheres is better than that of RDX;the close packing state will reduce the degree of freedom of RDX and ADN reaction but will increase the degree of freedom of RAF composite microsphere reaction.The thermal conductivity of RAF composite microspheres is close to that of RDX.In the ignition experiment,the flame of RAF composite microspheres can be maintained without the external heat source.Regarding safety,the H50of RAF composite microspheres was 274.04%higher than that of RDX.The detonation velocity of RAF composite microspheres is slightly higher than that of raw material RDX.Overall,these findings highlight the effectiveness of ADN in enhancing the reaction kinetics of RDX-based composites. 展开更多
关键词 RDX Thermal analysis kinetics Model reconstruction Thermal conductivity
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Thermal and solutal Marangoni convection in three-layered viscous flows:Insights for liquid metal battery optimization
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作者 SHAHEEN Sidra HUANG Hu-lin +2 位作者 ARAIN Muhammad Bilal BHATTI Muhammad Mubashir KHALIQUE Chaudry Masood 《Journal of Central South University》 2025年第6期2087-2100,共14页
This study examines the intricate occurrences of thermal and solutal Marangoni convection in three-layered flows of viscous fluids,with a particular emphasis on their relevance to renewable energy systems.This researc... This study examines the intricate occurrences of thermal and solutal Marangoni convection in three-layered flows of viscous fluids,with a particular emphasis on their relevance to renewable energy systems.This research examines the flow of a three-layered viscous fluid,considering the combined influence of heat and solutal buoyancy driven Rayleigh-Bénard convection,as well as thermal and solutal Marangoni convection.The homotopy perturbation method is used to examine and simulate complex fluid flow and transport phenomena,providing important understanding of the fundamental physics and assisting in the optimization of various battery configurations.The inquiry examines the primary elements that influence Marangoni convection and its impact on battery performance,providing insights on possible enhancements in energy storage devices.The findings indicate that the velocity profiles shown graphically exhibit a prominent core zone characterized by the maximum speed,which progressively decreases as it approaches the walls of the channel.This study enhances our comprehension of fluid dynamics and the transmission of heat and mass in intricate systems,which has substantial ramifications for the advancement of sustainable energy solutions. 展开更多
关键词 viscous fluid three-layered closed geometries electrical conductivity thermal convection solutal convection mass diffusivity homotopy perturbation methods
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处理走航式海洋多参数剖面测量系统(MVP)温度和电导率滞后效应的方法 被引量:10
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作者 任强 于非 +2 位作者 刁新源 司广成 魏传杰 《海洋科学》 CAS CSCD 北大核心 2014年第8期59-66,共8页
走航式海洋多参数剖面测量系统(moving vessel profiler,MVP)是一种集成程度和自动化程度都较高的海洋调查设备,能对海洋多要素进行同时观测,获得水平方向的高分辨率数据资料。由于温度和电导率传感器响应时间的不匹配,MVP下放速度过快... 走航式海洋多参数剖面测量系统(moving vessel profiler,MVP)是一种集成程度和自动化程度都较高的海洋调查设备,能对海洋多要素进行同时观测,获得水平方向的高分辨率数据资料。由于温度和电导率传感器响应时间的不匹配,MVP下放速度过快(峰值速度4 m/s)而造成非常明显的盐度尖峰现象。本研究结合Fofonoff(F)法、时间常数指数递归数字滤波(Giles and McDougall,GM)法和Grose提出的盐度尖峰订正方案,提出了一种新的方法,即MCT(match conductivity and temperature response time)法,通过对压力、温度和电导率传感器进行响应时间的匹配来减弱盐度尖峰。将SBE-9型CTD资料作为标准,发现订正后的资料与CTD盐度曲线的互相关系数为0.917,误差比订正前减小80%。对比35°N断面修正前后的盐度资料,订正后温盐跃层处出现的低盐区域消失。MVP的应用比常规海洋调查仪器CTD对于海洋现象的观测更有优势。 展开更多
关键词 走航式海洋多参数剖面测量系统MVP 盐度尖峰 MCT(match CONDUCTIVITY and temperature RESPONSE time)'~r
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高热阻端头型管状绝热材料测定装置
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作者 戴锅生 《东南大学学报(自然科学版)》 EI CAS CSCD 1994年第S1期103-105,共3页
高热阻端头型管状绝热材料测定装置戴锅生(东南大学动力工程系,南京210018)目前国内外通常使用的防护端头型管状绝热材料测定装置测量准确,但它有3个加热器和3套带有调节器的电源。测量前主测试段和防护端头间的隔缝温差必... 高热阻端头型管状绝热材料测定装置戴锅生(东南大学动力工程系,南京210018)目前国内外通常使用的防护端头型管状绝热材料测定装置测量准确,但它有3个加热器和3套带有调节器的电源。测量前主测试段和防护端头间的隔缝温差必须被控制到接近于零[1~3],且结... 展开更多
关键词 LABYRINTH THERMAL CONDUCTIVITY THERMAL resistance/lineal THERMAL TRANSFERENCE
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铁成分对硫化锌精矿的半导体性质及化学反应性的影响 被引量:6
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作者 熊小勇 Michelle JACOB-DULERE 《有色金属》 CSCD 1989年第4期55-67,共13页
硫化锌精矿(以下简称精矿)除含有主要元素锌与硫外,还含有其它元素,尤其是含有相当多的铁。在湿法处理精矿时,其铁成分的行为取决于铁的矿物存在形式。精矿中的铁可以铁闪锌矿[(Zn,Fe)S)、黄铁矿、黄铜矿的形式存在。铁闪锌矿的铁含量... 硫化锌精矿(以下简称精矿)除含有主要元素锌与硫外,还含有其它元素,尤其是含有相当多的铁。在湿法处理精矿时,其铁成分的行为取决于铁的矿物存在形式。精矿中的铁可以铁闪锌矿[(Zn,Fe)S)、黄铁矿、黄铜矿的形式存在。铁闪锌矿的铁含量可在很大的范围内变化,其物理化学性质也随铁含量而变化,因此对精矿的湿法直接处理产生很大的影响。本文研究出一种可靠的、确定精矿矿物组成的化学分析方法,着重于测定铁在精矿各矿物中的分布,及铁闪锌矿铁含量的变化规律。在此基础上,实验研究了精矿中的铁(尤其是铁闪锌矿中的铁)对精矿的半导体性质的影响规律,应用半导体电化学原理讨论了精矿铁含量对精矿的直接浸出(常压、硫酸介质)的影响机理。 展开更多
关键词 Blende SPHALERITE MARMATITE Zinc concentrate GOETHITE HEMATITE Mineralogical analysis Electric conductivity Reactivity Direct leaching Iron precipitation
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感温电阻式热导量热计的研制
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作者 秦自明 陈民助 邓郁 《化学研究与应用》 CAS CSCD 1991年第1期58-61,共4页
目前国内外生产和应用的热导量热计其感温系统多为热电堆。这种类型的量热计由于涉及几十对甚至几百对热电偶的焊接和安装,难于做到处于孪生体系的两个量热单元完全对称,热电偶金属的长短、焊点的大小和形状、绝缘层的厚薄和安装松紧等... 目前国内外生产和应用的热导量热计其感温系统多为热电堆。这种类型的量热计由于涉及几十对甚至几百对热电偶的焊接和安装,难于做到处于孪生体系的两个量热单元完全对称,热电偶金属的长短、焊点的大小和形状、绝缘层的厚薄和安装松紧等都是造成不对称的根源。这就容易使量热计的稳定性受到影响。 展开更多
关键词 Conduction Catorimeter RESISTANCE htermometer
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抑制型电导检测离子交换色谱法测定1,4-丁烷二磺酸盐 被引量:2
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作者 樊慧 丁明玉 《色谱》 CAS CSCD 北大核心 2006年第5期535-536,共2页
关键词 离子交换色谱法(ion exchange CHROMATOGRAPHY IEC) 抑制型电导检测(suppressed CONDUCTIVITY detection) 1 4-丁烷二磺酸盐(1 4-butanedisulphonate) 思美泰(Transmetil) 腺苷蛋氨酸(S—adenosyl-L-metionine)
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离子色谱法测定生产废水中的毕克草
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作者 陈岚 王翔 +2 位作者 唐建华 李峰峰 谢家理 《色谱》 CAS CSCD 北大核心 2007年第6期950-950,共1页
建立了用离子色谱测定毕克草含量的方法。选用NJ-SA-4A型阴离子分析柱,以7.2mmol/L碳酸钠-1.5mmol/L碳酸氢钠作淋洗液,流速为1.5mL/min,电导检测器检测。该方法具有良好的线性关系,精密度高,检出限为0.026mg/L,两个加标水平下的回收率... 建立了用离子色谱测定毕克草含量的方法。选用NJ-SA-4A型阴离子分析柱,以7.2mmol/L碳酸钠-1.5mmol/L碳酸氢钠作淋洗液,流速为1.5mL/min,电导检测器检测。该方法具有良好的线性关系,精密度高,检出限为0.026mg/L,两个加标水平下的回收率分别为99.88%和99.78%,相对标准偏差分别为0.27%和0.34%。 展开更多
关键词 离子色谱(ion chromatography) 电导检测(conductive detection) 毕克草(clopyralid)
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Research progress on advanced rail materials for electromagnetic railgun technology 被引量:10
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作者 Hong-bin Xie Hui-ya Yang +5 位作者 Jian Yu Ming-yu Gao Jian-dong Shou You-tong Fang Jia-bin Liu Hong-tao Wang 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2021年第2期429-439,共11页
Electromagnetic railgun attracts more and more attention due to its advantage in speed,cost,and obscurity.It is found that the rail should withstand huge mechanical and thermal shocks during the launching operation.Th... Electromagnetic railgun attracts more and more attention due to its advantage in speed,cost,and obscurity.It is found that the rail should withstand huge mechanical and thermal shocks during the launching operation.The forms of rail failure are accompanied by gouge,grooving,transition,and arc ablation,etc.The service life of the rail has become a bottleneck restricting the development of electromagnetic railgun technology.A series of researches are carried out to solve rail failure,including analysing the failure mechanism and using various advanced rail materials.This paper provides a comprehensive review of rail materials,including material composition,preparation,microstructure,and properties.We begin from a short background of the requirement of the rail material.Then a detailed investigation of rail materials is described,and the performances of those materials are introduced.Finally,further development prospect of rail material is discussed. 展开更多
关键词 STRENGTH CONDUCTIVITY Electromagnetic railgun Copper alloys Rai
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An experimental study on thermal characteristics of nanofluid with graphene and multi-wall carbon nanotubes 被引量:7
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作者 A.K.M Mahmudul Haque Sunghyun Kwon +4 位作者 Junhyo Kim Jungpil Noh Sunchul Huh Hanshik Chung Hyomin Jeong 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第8期3202-3210,共9页
High-thermal conductivity enhancement of nanofluid is one of the promising topics of the nanoscience research field. This work reports the experimental study on the preparation of graphene(GN) and multi-walled carbon ... High-thermal conductivity enhancement of nanofluid is one of the promising topics of the nanoscience research field. This work reports the experimental study on the preparation of graphene(GN) and multi-walled carbon nanotubes(MWCNTs) based nanofluids with the assistance of sodium dodecyl benzene sulfonate(SDBS) and sodium dodecyl sulfate(SDS) surfactants, and their thermal behaviors. The present work suggests not a solution, but a solution approach and deduces a new conclusion by trying to resolve the agglomeration problem and improve the dispersibility of nanoparticles in the base fluid. The analysis results of FESEM, thermal conductivity, diffusivity, effusivity and heat transfer coefficient enhancement ratio of nanofluid with surfactants SDS and SDBS expose strong evidence of the dispersing effect of surfactant on the making of nanofluid. 展开更多
关键词 GRAPHENE carbon nanotube SURFACTANT DISPERSIBILITY thermal conductivity
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Preparation of low-temperature sintered high conductivity inks based on nanosilver self-assembled on surface of graphene 被引量:6
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作者 LIU Piao HE Wen-qiang LU An-xian 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第11期2953-2960,共8页
Finer nanoplates of silver are prepared by self-assembly on the surface of graphene,and the low-temperature sintered high conductivity ink containing the silver nanoplates is prepared.Most importantly,graphene is adde... Finer nanoplates of silver are prepared by self-assembly on the surface of graphene,and the low-temperature sintered high conductivity ink containing the silver nanoplates is prepared.Most importantly,graphene is added to the solution before the chemical reduction reaction occurs.Firstly,it is found that silver nanoplates have self-assembly phenomenon on the surface of graphene.Secondly,the Ag nano hexagonal platelets(AgNHPs)with small particle sizes(10 nm),narrow distribution and good dispersion are prepared.Especially,smaller sizes(10 nm)and narrower particle size distribution of AgNHPs particles can be easily controlled by using this process.Finally,the conductivity of the ink is excellent.For example,when the printed patterns were sintering at 150℃,the resistivity of the ink(GE:0.15 g/L)reached the minimum value of 2.2×10^-6 cm.And the resistivity value was 3.7×10^-6Ωcm,when it was sintered at 100℃ for 30 min.The conductive ink prepared can be used for the field of printing electronics as ink-jet printing ink. 展开更多
关键词 Ag nanoparticles GRAPHENE self-assembly conductive ink electrical properties
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Analytical solutions of transient heat conduction in multilayered slabs and application to thermal analysis of landfills 被引量:6
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作者 WU Xun SHI Jian-yong +2 位作者 LEI Hao LI Yu-ping Leslie OKINE 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第11期3175-3187,共13页
The study of transient heat conduction in multilayered slabs is widely used in various engineering fields. In this paper, the transient heat conduction in multilayered slabs with general boundary conditions and arbitr... The study of transient heat conduction in multilayered slabs is widely used in various engineering fields. In this paper, the transient heat conduction in multilayered slabs with general boundary conditions and arbitrary heat generations is analysed. The boundary conditions are general and include various combinations of Dirichlet, Neumann or Robin boundary conditions at either surface. Moreover, arbitrary heat generations in the slabs are taken into account. The solutions are derived by basic methods, including the superposition method, separation variable method and orthogonal expansion method. The simplified double-layered analytical solution is validated by a numerical method and applied to predicting the temporal and spatial distribution of the temperature inside a landfill. It indicates the ability of the proposed analytical solutions for solving the wide range of applied transient heat conduction problems. 展开更多
关键词 heat conduction multilayered slab heat generation analytical solutions LANDFILL
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Effects of TiO2 nanoparticles on thermal conductivity of heat transfer oil 被引量:8
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作者 YIN Xiang KOU Guang-xiao +2 位作者 XU Ai-xiang FU Tao ZHU Jie 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第8期2129-2135,共7页
There is a lack of thermophysical data of heat transfer oil and nano-oil in the high temperature range of 50-300 ℃ for designing and developing heat transfer oil furnace and its heating systems. In the present study,... There is a lack of thermophysical data of heat transfer oil and nano-oil in the high temperature range of 50-300 ℃ for designing and developing heat transfer oil furnace and its heating systems. In the present study, the thermal conductivity values of heat transfer oil and TiO2 nano-oil in the above high temperature range were measured by a newly developed high-temperature thermal conductivity meter. Based on the principle of least square method, the thermal conductivity values obtained from experiments were fitted separately, and the correlation between thermal conductivity and temperature of heat transfer oil and TiO2 nano-oil was obtained. The results show that the thermal conductivity and the increased percentage of thermal conductivity of TiO2 nano-oil are proportional to the increase of particle size and mass fraction of nanoparticles, but thermal conductivity is in reverse proportion to the increase of temperature and the increased percentage of thermal conductivity is less affected by temperature. 展开更多
关键词 TiO2 nano-oil thermal conductivity NANOPARTICLE
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