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Impact-induced energy release of typical HCP metal/PTFE/W reactive materials:Experimental study and predictive modeling via machine learning
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作者 Zhenwei Zhang Weixi Tian +7 位作者 Tianyi Wang Zhiyuan Liu Yansong Yang Chao Ge Lei Guo Yuan He Chuanting Wang Yong He 《Defence Technology(防务技术)》 2025年第5期124-138,共15页
Zirconium,titanium,and other hexagonally close-packed(HCP)metals and their alloys are representative high specific strength,high reaction enthalpy,and high thermal conductivity structural materials.In this study,two t... Zirconium,titanium,and other hexagonally close-packed(HCP)metals and their alloys are representative high specific strength,high reaction enthalpy,and high thermal conductivity structural materials.In this study,two typical HCP metals,zirconium,and titanium,were applied to reactive materials(RMs)to prepare Zr/PTFE/W RMs and Ti/PTFE/W RMs,validating the feasibility of HCP metal/PTFE/W RMs.The impact response process of typical HCP metal/PTFE/W RMs under high-velocity dynamic loads was studied using shock equations of state(EOS)based on porous mixtures and chemical reaction kinetics equations.An improved hemispherical quasi-sealed test chamber was employed to measure the energy release characteristic curves of 10 types of Zr/PTFE/W RMs and Ti/PTFE/W RMs under impact velocities ranging from 500 m/s to 1300 m/s.The datasets of the impact-induced energy release characteristics of HCP metal/PTFE/W RMs were established.Additionally,the energy release efficiency of HCP metal/PTFE/W RMs under impact was predicted using the support vector regression(SVR)kernel function model.The datasets of Zr/PTFE/W RMs and Ti/PTFE/W RMs with W contents of 0%,25%,50%,and 75%were used as test sets,respectively.The model predictions showed a high degree of agreement with the experimental data,with mean absolute errors(MAE)of 4.8,6.5,4.6,and 4.1,respectively. 展开更多
关键词 Impact-induced energy release Reactive materials HCP metal/PTFE/W Energy release efficiency Support vector regression
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Capillary Property of Entangled Porous Metallic Wire materials and Its Application in Fluid Buffers:Theoretical Analysis and Experimental Study
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作者 Yu Tang Yiwan Wu +1 位作者 Hu Cheng Rong Liu 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第1期400-416,共17页
Strong impact does serious harm to the military industries so it is necessary to choose reasonable cushioning material and design effective buffers to prevent the impact of equipment.Based on the capillary property en... Strong impact does serious harm to the military industries so it is necessary to choose reasonable cushioning material and design effective buffers to prevent the impact of equipment.Based on the capillary property entangled porous metallic wire materials(EPMWM),this paper designed a composite buffer which uses EPMWM and viscous fluid as cushioning materials under the low-speed impact of the recoil force device of weapon equipment(such as artillery,mortar,etc.).Combined with the capillary model,porosity,hydraulic diameter,maximum pore diameter and pore distribution were used to characterize the pore structure characteristics of EPMWM.The calculation model of the damping force of the composite buffer was established.The low-speed impact test of the composite buffer was conducted.The parameters of the buffer under low-speed impact were identified according to the model,and the nonlinear model of damping force was obtained.The test results show that the composite buffer with EPMWM and viscous fluid can absorb the impact energy from the recoil movement effectively,and provide a new method for the buffer design of weapon equipment(such as artillery,mortar,etc.). 展开更多
关键词 Entangled porous metallic wire materials Capillary property Viscousfluid Low-speed impact Damping force
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A review of anode materials for sodium ion batteries 被引量:2
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作者 Syed Ali Riza XU Ri-gan +6 位作者 LIU Qi Muhammad Hassan YANG Qiang MU Dao-bin LI Li WU Feng CHEN Ren-jie 《新型炭材料(中英文)》 SCIE EI CAS CSCD 北大核心 2024年第5期743-769,共27页
Lithium-ion batteries(LIBs)are used in electric vehicles and portable smart devices,but lithium resources are dwindling and there is an increasing demand which has to be catered for.Sodium ion batteries(SIBs),which ar... Lithium-ion batteries(LIBs)are used in electric vehicles and portable smart devices,but lithium resources are dwindling and there is an increasing demand which has to be catered for.Sodium ion batteries(SIBs),which are less costly,are a promising replacement for LIBs because of the abundant natural reserves of sodium.The anode of a SIB is a necessary component of the battery but is less understood than the cathode.This review outlines the development of various types of anodes,including carbonbased,metallic and organic,which operate using different reaction mechanisms such as intercalation,alloying and conversion,and considers their challenges and prospects.Strategies for modifying their structures by doping and coating,and also modifying the solid electrolyte interface are discussed.In addition,this review also discusses the challenges encountered by the anode of SIBs and the solutions. 展开更多
关键词 Sodium ion batteries ANODE Carbon material metallic compound ORGANIC
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Metal magnetic memory testing for early damage assessment in ferromagnetic materials 被引量:3
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作者 董丽虹 徐滨士 +5 位作者 董世运 陈群志 王愈涯 张蕾 王丹 尹大伟 《Journal of Central South University》 SCIE EI CAS 2005年第S2期102-106,共5页
In order to investigate the physical mechanism of metal magnetic memory testing, both the influences of earth magnetic field and applied stress on magnetic domain structure were discussed. Static tension and fatigue t... In order to investigate the physical mechanism of metal magnetic memory testing, both the influences of earth magnetic field and applied stress on magnetic domain structure were discussed. Static tension and fatigue tests for low carbon steel plate specimens were carried out on hydraulic servo testing machine of MTS810 type and magnetic signals were measured during the processes by the type of EMS-2003 instrument. The results indicate that the initial magnetic signals of specimens are different before loading. The magnetic signals curves are transformed from initial random to regular pattern due to the effect of two types of loads. However, the shape and distribution of magnetic signal curves in the elastic region are different from that of plastic region in tension test. While in fatigue test those magnetic signals curves corresponding to different cycles are similar. The H_p(y) value of magnetic signals on the fracture zone increases dramatically at the breaking transient time and positive-negative magnetic poles occur on the two parts of fracture zone. 展开更多
关键词 metal MAGNETIC MEMORY testing FERROMAGNETIC materials MAGNETIC LEAKAGE SIGNALS EARLY damage
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Modeling and finite element analysis of transduction process of electromagnetic acoustic transducers for nonferromagnetic metal material testing 被引量:13
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作者 郝宽胜 黄松岭 +2 位作者 赵伟 段汝娇 王珅 《Journal of Central South University》 SCIE EI CAS 2011年第3期749-754,共6页
Facing the problems lack of considering the non-uniform distribution of the static bias magnetic field and computing the panicle displacements in the simulation model of electromagnetic acoustic transducer (EMAT), a... Facing the problems lack of considering the non-uniform distribution of the static bias magnetic field and computing the panicle displacements in the simulation model of electromagnetic acoustic transducer (EMAT), a multi-field coupled model was established and the finite element method (FEM) was presented to calculate the entire transduction process. The multi-field coupled model included the static magnetic field, pulsed eddy current field and mechanical field. The FEM equations of the three fields were derived by Garlerkin FEM method. Thus, the entire transduction process of the EMAT was calculated through sequentially coupling the three fields. The transduction process of a Lamb wave EMAT was calculated according to the present model and method. The results show that, by the present method, it is valid to calculate the particle displacement under the given excitation signal and non-uniformly distributed static magnetic field. Calculation error will be brought about if the non-uniform distribution of the static bias magnetic field is neglected. 展开更多
关键词 metal material nondestructive testing electromagnetic acoustic transducer multi-field coupling Garlerkin method finite element
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Numerical and experimental evaluation for density-related thermal insulation capability of entangled porous metallic wire material 被引量:2
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作者 Tao Zhou Rong-zheng Fang +3 位作者 Di Jia Pei Yang Zhi-ying Ren Hong-bai Bai 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2023年第5期177-188,共12页
Entangled porous metallic wire material(EPMWM)has the potential as a thermal insulation material in defence and engineering.In order to optimize its thermophysical properties at the design stage,it is of great signifi... Entangled porous metallic wire material(EPMWM)has the potential as a thermal insulation material in defence and engineering.In order to optimize its thermophysical properties at the design stage,it is of great significance to reveal the thermal response mechanism of EPMWM based on its complex structural effects.In the present work,virtual manufacturing technology(VMT)was developed to restore the physics-based 3D model of EPMWM.On this basis,the transient thermal analysis is carried out to explore the contact-relevant thermal behavior of EPMWM,and then the spiral unit containing unique structural information are further extracted and counted.In particular,the thermal resistance network is numerically constructed based on the spiral unit through the thermoelectric analogy method to accurately predict the effective thermal conductivity(ETC)of EPMWM.Finally,the thermal diffusivity and specific heat of the samples were obtained by the laser thermal analyzer to calculate the ETC and thermal insulation factor of interest.The results show that the ETC of EPMWM increases with increasing temperature or reducing density under the experimental conditions.The numerical prediction is consistent with the experimental result and the average error is less than 4%. 展开更多
关键词 Entangled porous metallic wire material (EPMWM) Virtual manufacturing technology(VMT) Thermal resistance network Effective thermal conductivity(ETC) Thermal insulation factor
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Comments on "Equivalent Currents on an Anisotropic Material Backed by a Metal Surface and Their Relation 被引量:1
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《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2001年第3期97-97,共1页
关键词 Equivalent Currents on an Anisotropic material Backed by a metal Surface and Their Relation
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Use of Intermetallic Alloys as Reactive Materials for Warhead Applications
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作者 Jürgen Evers Thomas M.Klaptke 《火炸药学报》 EI CAS CSCD 北大核心 2015年第6期8-10,共3页
With this communication we want to suggest the system ZrW2,a high-density and very hard intermetallic compound that reacts/burns highly exothermic with air at high temperature.This intermetallic phase should provide a... With this communication we want to suggest the system ZrW2,a high-density and very hard intermetallic compound that reacts/burns highly exothermic with air at high temperature.This intermetallic phase should provide a very suitable reactive material for warhead applications. 展开更多
关键词 Cermisch metal INTERmetalLIC PHASE thermites REACTIVE structure material WARHEAD
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Platinum Group Metals New Material
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作者 XIE Ming WANG Saibei +7 位作者 HU Jieqiong LIU Manmen CHEN Yongtai ZHANG Jiming YANG Youcai YANG Yunfeng ZHANG Guoquan ZHANG Jiankang 《贵金属》 CAS CSCD 北大核心 2012年第A01期159-172,共14页
Platinum group metals (PGM) include six elements, namely Pt, Pd, Rh, Ir, Os and Ru. PGM and their alloys are the important fundamental materials for modern industry and national defense construction, they have special... Platinum group metals (PGM) include six elements, namely Pt, Pd, Rh, Ir, Os and Ru. PGM and their alloys are the important fundamental materials for modern industry and national defense construction, they have special physical and chemical properties, widely used in metallurgy, chemical, electric, electronic, information, energy, environmental protection, aviation, aerospace, navigation and other high technology industry. Platinum group metals and their alloys, which have good plasticity and processability, can be processed to electrical contact materials, resistance materials, solder, electronic paste, temperature-measurement materials, elastic materials, magnetic materials and high temperature structural materials. 展开更多
关键词 platinum group metals physical properties mechanical properties new materials
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Metal Nitrides as Cathode Hosts for Lithium-Sulfur Batteries
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作者 Hai-Ji Xiong Cheng-Wei Zhu +1 位作者 Ding-Rong Deng Qi-Hui Wu 《电化学(中英文)》 北大核心 2025年第2期1-16,共16页
Lithium-sulfur batteries are considered as one of the potential solutions as integrating renewable energy systems for large-scale energy storage because of their high theoretical energy density(2600 Wh·kg^(-1))an... Lithium-sulfur batteries are considered as one of the potential solutions as integrating renewable energy systems for large-scale energy storage because of their high theoretical energy density(2600 Wh·kg^(-1))and specific capacity(1675 mAh·g^(-1)).Currently,various strategies have been proposed to overcome the technical barriers,e.g.,“shuttle effect”,capacity decay and volumetric change,which impede the successful commercialization of lithium-sulfur batteries.This paper reviews the applications of metal nitrides as the cathode hosts for high-performance lithium-sulfur batteries,summa-rizes the design strategies of different host materials,and discusses the relationship between the properties of metal nitrides and their electrochemical performances.Finally,reasonable suggestions for the design and development of metal nitrides,along with ideas to promote future breakthroughs,are proposed.We hope that this review could attract more attention to metal nitrides and their derivatives,and further promote the electrochemical performance of lithium-sulfur batteries. 展开更多
关键词 Lithium-sulfur batteries metal nitride Host material
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Mechanical behavior of entangled metallic wire materials-polyurethane interpenetrating composites
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作者 Xiao-yuan Zheng Zhi-ying Ren +2 位作者 Hong-bai Bai Zhang-bin Wu You-song Guo 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2023年第2期120-136,共17页
Composite materials exhibit the impressive mechanical properties of high damping and stiffness,which cannot be attained by employing conventional single materials.Along these lines,a novel material architecture is pre... Composite materials exhibit the impressive mechanical properties of high damping and stiffness,which cannot be attained by employing conventional single materials.Along these lines,a novel material architecture is presented in this work in order to fabricate composites with enhanced mechanical characteristics.More specifically,entangled metallic wire materials were used as the active matrix,whereas polyurethane was employed as the reinforcement elements.As a result,an entangled metallic wire material-polyurethane composite with high damping and stiffness was prepared by enforcing the vacuum infiltration method.On top of that,the mechanical properties(loss factor,energy consumption,and average stiffness)of the proposed composite materials were characterized by performing dynamic tests,and its fatigue characteristics were verified by the micro-interface bonding,as well as the macro-damage factor.The impact of the density,preloading spacing,loading amplitude,and exciting frequency on the mechanical properties of the composites were also thoroughly analyzed.The extracted results indicate that the mechanical properties of the composites were significantly enhanced than those of the pure materials due to the introduction of interface friction.Moreover,the average stiffness of the composites was about 10 times the respective value of the entangled metallic wire material.Interestingly,a rise in the loading period leads to some failure between the composite interfaces,which reduces the stiffness property but enhances the damping dissipation properties.Finally,a comprehensive dynamic mechanical model of the composites was established,while it was experimentally verified.The proposed composites possess higher damping features,i.e.,stiffness characteristics,and maintain better fatigue characteristics,which can broaden the application range of the composites.In addition,we provide a theoretical and experimental framework for the research and applications in the field of metal matrix composites. 展开更多
关键词 Entangled metallic wire material Composites materials Damping property STIFFNESS Fatigue characteristics
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Quasi-static and low-velocity impact mechanical behaviors of entangled porous metallic wire material under different temperatures
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作者 Yi-wan Wu Hu Cheng +3 位作者 Shang-zhou Li Yu Tang Hong-bai Bai Chun-hong Lu 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2023年第1期143-152,共10页
To improve the defense capability of military equipment under extreme conditions,impact-resistant and high-energy-consuming materials have to be developed.The damping characteristic of entangled porous metallic wire m... To improve the defense capability of military equipment under extreme conditions,impact-resistant and high-energy-consuming materials have to be developed.The damping characteristic of entangled porous metallic wire materials(EPMWM)for vibration isolation was previously investigated.In this paper,a study focusing on the impact-resistance of EPMWM with the consideration of ambient temperature is presented.The quasi-static and low-velocity impact mechanical behavior of EPMWM under different temperatures(25℃-300℃)are systematically studied.The results of the static compression test show that the damping energy dissipation of EPMWM increases with temperature while the nonlinear damping characteristics are gradually enhanced.During the impact experiments,the impact energy loss rate of EPMWM was between 65%and 85%,while the temperatures increased from 25℃to 300℃.Moreover,under the same drop impact conditions,the overall deformation of EPMWM decreases in the temperature range of 100℃-200℃.On the other hand,the impact stiffness,energy dissipation,and impact loss factor of EPMWM significantly increase with temperature.This can be attributed to an increase in temperature,which changes the thermal expansion coefficient and contact state of the internal wire helixes.Consequently,the energy dissipation mode(dry friction,air damping,and plastic deformation)of EPMWM is also altered.Therefore,the EPMWM may act as a potential candidate material for superior energy absorption applications. 展开更多
关键词 Entangled porous metallic wire material Low-velocity impact High temperature Energy dissipation characteristics Mechanical behavior
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Materials Studio在金属有机框架材料中气体吸附的应用 被引量:6
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作者 王宪飞 田林宇 +2 位作者 李潘之 陈小平 任万忠 《现代化工》 CAS CSCD 北大核心 2021年第11期34-38,43,共6页
综述了全尺度材料模拟软件(materials studio,MS)在MOFs中气体吸附方面的研究进展,重点介绍了MOFs中气体吸附模拟计算时MS软件各个模块的应用。对采用MS软件模拟计算MOFs中气体吸附性能提出了一些建议。
关键词 materials Studio软件 金属有机框架材料 吸附 分离 分子模拟
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Material flow control technology of ironmaking and steelmaking interface 被引量:4
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作者 黄帮福 田乃媛 +1 位作者 施哲 丁跃华 《Journal of Central South University》 SCIE EI CAS 2014年第9期3559-3567,共9页
In order to achieve higher efficient cohesion match of procedure and equipment between ironmaking and steelmaking interface, the theory of multi-dimensional material flow control was applied to analyze torpedo ladle-i... In order to achieve higher efficient cohesion match of procedure and equipment between ironmaking and steelmaking interface, the theory of multi-dimensional material flow control was applied to analyze torpedo ladle-iron ladle transportation process between blast furnace and basic oxygen furnace. Moreover, basic parameters of material flow were analyzed and optimized, such as time, temperature and material quantity. Based on operating principles of material flow, control methods were optimized, such as product organization mode, scheduling discipline and scheduling plan of hot metal ladle. Finally, the material flow control technology of ironmaking and steelmaking interface was integrated. Satisfactory effects are obtained after applying the technology in practice. The total turnover number of torpedo ladle decreases from 20 to 18, the hot metal temperature of 1# BF torpedo ladle decreases from 36 °C to 19.5 °C, the hot metal temperature of 2# BF torpedo ladle decreases from 36.6 °C to 19.8 °C, the temperature drop of desulfurization hot metal decreases by 4 °C, and the temperature drop of non-desulfurization hot metal decreases by 2.8 °C. Furthermore, the ironmaking and steelmaking interface system will realize high-efficiency control by using this control technology. 展开更多
关键词 ironmaking and steelmaking interface torpedo ladle hot metal ladle material flow control control technology
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The effect of the carbon components on the performance of carbonbased transition metal electrocatalysts for the hydrogen evolution reaction
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作者 LI Guo-hua WANG Jing +6 位作者 REN Jin-tian LIU Hong-chen QIAN Jin-xiu CHENG Jia-ting ZHAO Mei-tong YANG Fan LI Yong-feng 《新型炭材料(中英文)》 SCIE EI CAS CSCD 北大核心 2024年第5期946-972,共27页
The hydrogen evolution reaction(HER)is a promising way to produce hydrogen,and the use of non-precious metals with an excellent electrochemical performance is vital for this.Carbon-based transition metal catalysts hav... The hydrogen evolution reaction(HER)is a promising way to produce hydrogen,and the use of non-precious metals with an excellent electrochemical performance is vital for this.Carbon-based transition metal catalysts have high activity and stability,which are important in reducing the cost of hydrogen production and promoting the development of the hydrogen production industry.However,there is a lack of discussion regarding the effect of carbon components on the performance of these electrocatalysts.This review of the literature discusses the choice of the carbon components in these catalysts and their impact on catalytic performance,including electronic structure control by heteroatom doping,morphology adjustment,and the influence of self-supporting materials.It not only analyzes the progress in HER,but also provides guidance for synthesizing high-performance carbon-based transition metal catalysts. 展开更多
关键词 Carbon-based transition metal catalysts Heteroatom doping Morphology adjustment Self-supporting materials Hydrogen evolution reaction
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面向精密实验的飞秒激光精密加工技术研究进展 被引量:1
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作者 何煦 马云灿 +10 位作者 马骁 曹柱荣 喻寅 银颖 李晶 杨靖 孟立民 李军 陶天炯 杨昊 蒋均 《强激光与粒子束》 北大核心 2025年第1期134-146,共13页
飞秒激光精密加工技术具备极短脉冲宽度避免或缓解热效应、极高峰值功率密度适用于任意固体材料、极小焦斑尺寸实现微区精准去除或改性等三个方面的特性,满足精密诊断/测量实验涉及的各类难加工及特种材料的安全精密加工需求。高稳定性... 飞秒激光精密加工技术具备极短脉冲宽度避免或缓解热效应、极高峰值功率密度适用于任意固体材料、极小焦斑尺寸实现微区精准去除或改性等三个方面的特性,满足精密诊断/测量实验涉及的各类难加工及特种材料的安全精密加工需求。高稳定性高重复频率飞秒激光器的应用,弥补了低重复频率飞秒激光难以实现高速扫描的不足,这为精密实验所需各类精密样品/样件的高效精密加工提供了重要能量源。以中国工程物理研究院各研究所精密实验对精密样品的安全高效精密加工需求为切入点,分别以激光X射线精密靶材及结构、炸药材料微结构、超硬材料复合折射透镜结构、微型探头光纤精密固定结构、太赫兹滤波器核心结构等典型应用场景为例,介绍了高重频飞秒激光精密加工技术在难加工材料和特种材料安全高效精密加工方面的研究进展。 展开更多
关键词 飞秒激光 精密加工 金属材料 炸药材料 超硬材料
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新工科背景下金属材料工程实践教学改革探索 被引量:1
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作者 孙瑞雪 王兆波 刘欣 《实验室研究与探索》 北大核心 2025年第3期170-173,共4页
为了满足新工科建设对金属材料工程专业人才培养的要求,构建了以培养学生综合实践能力为核心的特色实践教学新模式。提出了深化产教融合,以赛促教、以赛促学,打造行走的“思政大课堂”,构建多元化的实践教学综合考评和反馈机制的新思路... 为了满足新工科建设对金属材料工程专业人才培养的要求,构建了以培养学生综合实践能力为核心的特色实践教学新模式。提出了深化产教融合,以赛促教、以赛促学,打造行走的“思政大课堂”,构建多元化的实践教学综合考评和反馈机制的新思路。实践表明,依托教科产融合基地,大大丰富了实践教学内容和教学形式,赛教融合助力了实践教学改革和学生综合创新能力的提升。通过挖掘实践教学所在企业或所在地的思政资源,让学生在实践教学过程中的思政教育落在实处。建立了基于能力和素质目标的多元化实践教学考评体系,有效提升了学生的创新能力、实践能力和工程素养。 展开更多
关键词 新工科 金属材料工程 实践教学 人才培养
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超级电容器电极材料的研究与发展趋势 被引量:1
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作者 权国辉 张庆莉 邰金华 《电池》 北大核心 2025年第2期360-367,共8页
综述碳基材料、金属氧化物和导电聚合物等超级电容器电极材料。讨论这些材料在结构设计、表面功能化及掺杂改性等方面的进展;总结它们在提高超级电容器的能量密度、功率密度和循环寿命方面的优势与挑战。碳基材料具有优异的比表面积和... 综述碳基材料、金属氧化物和导电聚合物等超级电容器电极材料。讨论这些材料在结构设计、表面功能化及掺杂改性等方面的进展;总结它们在提高超级电容器的能量密度、功率密度和循环寿命方面的优势与挑战。碳基材料具有优异的比表面积和孔隙率,成为提升电容性能的关键;金属氧化物材料凭借良好的电化学性能和化学稳定性,显示出较高的能量储存能力;导电聚合物则因可调性强、环境友好等特点,逐渐成为研究热点。进一步优化电极材料,并结合高效电解液和先进的制造工艺,将有助于实现超级电容器能量密度和功率密度的同步提升,推动商业化应用进程。 展开更多
关键词 超级电容器 碳基材料 金属氧化物 导电聚合物
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泡沫镍/树脂多孔复合材料的压缩强度和比强度
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作者 刘培生 程瑜扬 +2 位作者 程伟 陈斌 李翔宇 《材料工程》 北大核心 2025年第3期153-158,共6页
对泡沫镍(平均孔径约为2.7 mm,孔隙率为93.1%)孔棱进行环氧树脂覆层复合,获得孔棱呈复层结构的泡沫镍/树脂多孔复合材料。对所得复合样品进行压缩性能实验,重点分析复合体的机械强度。结果表明:复合样品的压缩强度和比强度均显著高于原... 对泡沫镍(平均孔径约为2.7 mm,孔隙率为93.1%)孔棱进行环氧树脂覆层复合,获得孔棱呈复层结构的泡沫镍/树脂多孔复合材料。对所得复合样品进行压缩性能实验,重点分析复合体的机械强度。结果表明:复合样品的压缩强度和比强度均显著高于原泡沫镍。当泡沫镍(体密度ρr约0.6 g·cm^(-3))施加覆层制成泡沫镍/树脂复合样品(体密度约0.72~0.82 g·cm^(-3))后,其压缩强度从0.75 MPa提高到2.24~2.68 MPa,其对应比强度从1.23 MPa·cm^(3)·g^(-1)提高到3.09~3.27 MPa·cm^(3)·g^(-1)。复合样品的压缩强度与孔隙率符合基于八面体模型理论得出的对应数理关系。根据对应力学模型可知,复合样品整体失效由孔棱芯部优先破坏造成。 展开更多
关键词 多孔材料 泡沫金属 多孔复合材料 泡沫金属复合材料 力学性能 压缩强度
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木质纤维素调控液态金属构建多功能复合材料的研究进展
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作者 李子江 张洁 +6 位作者 李威 徐婷 龙飞鸿 王滢 王朝辉 郭风军 司传领 《中国造纸》 北大核心 2025年第6期11-22,共12页
木质纤维素调控液态金属作为新兴的功能材料,在各种应用中显示出巨大的潜力。木质纤维素中丰富的羟基、羧基等极性基团与液态金属表面形成强化学键,可显著提升界面润湿性和黏附性,同时优化微观结构定向调控能力,为柔性传感、光热转换等... 木质纤维素调控液态金属作为新兴的功能材料,在各种应用中显示出巨大的潜力。木质纤维素中丰富的羟基、羧基等极性基团与液态金属表面形成强化学键,可显著提升界面润湿性和黏附性,同时优化微观结构定向调控能力,为柔性传感、光热转换等功能化应用领域提供创新解决方案。本文系统综述了木质纤维素调控液态金属制备功能材料的最新研究进展,重点分析了液态金属的结构特点,纤维素、木质素等不同木质纤维素组分调控液态金属的功能化策略;探讨了复合材料在柔性电子领域作为柔性传感基底的潜力,及其通过光热响应特性实现能量转换在太阳能界面蒸发等领域的应用,并对未来发展方向进行了展望。 展开更多
关键词 木质纤维素 液态金属 复合材料 储能 光热材料
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