期刊文献+
共找到15,434篇文章
< 1 2 250 >
每页显示 20 50 100
Simulation and Thermal Runaway Experiment Study on Immersion and Cold Plate Cooling with 4680 Cylindrical Battery Pack
1
作者 Wan Fulai Zhao Qingliang +2 位作者 Luo Yitao Zhang Feng Li Guangjun 《汽车技术》 北大核心 2025年第10期10-20,共11页
This study focuses on the thermal management of 4680-type cylindrical lithium-ion battery packs utilizing NCM811 chemistry.It establishes coupled multi-physics models for both immersion and serpentine cold plate cooli... This study focuses on the thermal management of 4680-type cylindrical lithium-ion battery packs utilizing NCM811 chemistry.It establishes coupled multi-physics models for both immersion and serpentine cold plate cooling systems.Through a combination of numerical simulation and experimental validation,the technical advantages and mechanisms of immersion cooling are systematically explored.Simulation results indicate that under a 3C fast-charging condition(inlet temperature 20℃,flow rate 36 L/min),the immersion cooling structure 3demonstrates a triple enhancement in thermal performance compared to the cold plate structure 1:a 13.06%reduction in peak temperature,a 31.67%decrease in overall maximum temperature difference,and a 47.62%decrease in single-cell temperature deviation,while also reducing flow resistance by 33.61%.Furthermore,based on the immersion cooling model,a small battery module comprising seven cylindrical cells was designed for thermal runaway testing via nail penetration.The results show that the peak temperature of the triggered cell was limited to 437.6℃,with a controllable temperature rise gradient of only 3.35℃/s and a rapid cooling rate of 0.6℃/s.The maximum temperature rise of adjacent cells was just 64.8℃,effectively inhibiting thermal propagation.Post-test disassembly revealed that the non-triggered cells retained>99.2%of their original voltage and>99%structural integrity,confirming the module’s ability to achieve“localized failure with global stability.” 展开更多
关键词 Immersion cooling 4680 battery Thermal runaway Numerical simulation
在线阅读 下载PDF
Flow and heat transfer characteristics of regenerative cooling parallel channel
2
作者 JU Yinchao LIU Xiaoyong +1 位作者 XU Guoqiang DONG Bensi 《推进技术》 北大核心 2025年第1期163-171,共9页
Due to the complex high-temperature characteristics of hydrocarbon fuel,the research on the long-term working process of parallel channel structure under variable working conditions,especially under high heat-mass rat... Due to the complex high-temperature characteristics of hydrocarbon fuel,the research on the long-term working process of parallel channel structure under variable working conditions,especially under high heat-mass ratio,has not been systematically carried out.In this paper,the heat transfer and flow characteristics of related high temperature fuels are studied by using typical engine parallel channel structure.Through numeri⁃cal simulation and systematic experimental verification,the flow and heat transfer characteristics of parallel chan⁃nels under typical working conditions are obtained,and the effectiveness of high-precision calculation method is preliminarily established.It is known that the stable time required for hot start of regenerative cooling engine is about 50 s,and the flow resistance of parallel channel structure first increases and then decreases with the in⁃crease of equivalence ratio(The following equivalence ratio is expressed byΦ),and there is a flow resistance peak in the range ofΦ=0.5~0.8.This is mainly caused by the coupling effect of high temperature physical proper⁃ties,flow rate and pressure of fuel in parallel channels.At the same time,the cooling and heat transfer character⁃istics of parallel channels under some conditions of high heat-mass ratio are obtained,and the main factors affect⁃ing the heat transfer of parallel channels such as improving surface roughness and strengthening heat transfer are mastered.In the experiment,whenΦis less than 0.9,the phenomenon of local heat transfer enhancement and deterioration can be obviously observed,and the temperature rise of local structures exceeds 200℃,which is the risk of structural damage.Therefore,the reliability of long-term parallel channel structure under the condition of high heat-mass ratio should be fully considered in structural design. 展开更多
关键词 Regenerative cooling Heat transfer Flow resistance ENGINE Parallel channel
在线阅读 下载PDF
An optimal design of the liquid-cooling plate channel in a power battery based on response surface methodology
3
作者 Jinbo Zheng Jibin Jiang +2 位作者 Xiwei Yu Bingjun Yan Guofu Lian 《中国科学技术大学学报》 北大核心 2025年第2期52-65,51,I0002,共16页
The work takes a new liquid-cooling plate in a power battery with pin fins inside the channel as the object.A mathematical model is established via the central composite design of the response surface to study the rel... The work takes a new liquid-cooling plate in a power battery with pin fins inside the channel as the object.A mathematical model is established via the central composite design of the response surface to study the relationships among the length,width,height,and spacing of pin fins;the maximum temperature and temperature difference of the battery module;and the pressure drop of the liquid-cooling plate.Model accuracy is verified via variance analysis.The new liquid-cooling plate enables the power battery to work within an optimal temperature range.Appropriately increasing the length,width,and height and reducing the spacing of pin fins could reduce the temperature of the power battery module and improve the temperature uniformity.However,the pressure drop of the liquid-cooling plate increases.The structural parameters of the pin fins are optimized to minimize the maximum temperature and the temperature difference of the battery module as well as the pressure drop of the liquid-cooling plate.The errors between the values predicted and actual by the simulation test are 0.58%,4%,and 0.48%,respectively,which further verifies the model accuracy.The results reveal the influence of the structural parameters of the pin fins inside the liquid-cooling plate on its heat dissipation performance and pressure drop characteristics.A theoretical basis is provided for the design of liquid-cooling plates in power batteries and the optimization of structural parameters. 展开更多
关键词 response surface methodology power battery cooling channel optimal design
在线阅读 下载PDF
Effect of start cooling temperature on microstructure,crystallographic orientation and ductile-to-brittle transition behavior of high strength steel
4
作者 LIU Wen-jian LI Hong-ying +5 位作者 KONG Yao-jie LIU Ji-wen LIU Dan GAO Qing PENG Ning-qi XIONG Xiang-jiang 《Journal of Central South University》 2025年第3期776-788,共13页
The ductile-to-brittle transition temperature(DBTT)of high strength steels can be optimized by tailoring microstructure and crystallographic orientation characteristics,where the start cooling temperature plays a key ... The ductile-to-brittle transition temperature(DBTT)of high strength steels can be optimized by tailoring microstructure and crystallographic orientation characteristics,where the start cooling temperature plays a key role.In this work,X70 steels with different start cooling temperatures were prepared through thermo-mechanical control process.The quasi-polygonal ferrite(QF),granular bainite(GB),bainitic ferrite(BF)and martensite-austenite constituents were formed at the start cooling temperatures of 780℃(C1),740℃(C2)and 700℃(C3).As start cooling temperature decreased,the amount of GB decreased,the microstructure of QF and BF increased.Microstructure characteristics of the three samples,such as high-angle grain boundaries(HAGBs),MA constituents and crystallographic orientation,also varied with the start cooling temperatures.C2 sample had the lowest DBTT value(−86℃)for its highest fraction of HAGBs,highest content of<110>oriented grains and lowest content of<001>oriented grains parallel to TD.The high density of{332}<113>and low density of rotated cube{001}<110>textures also contributed to the best impact toughness of C2 sample.In addition,a modified model was used in this paper to quantitatively predict the approximate DBTT value of steels. 展开更多
关键词 X70 steel start cooling temperature ductile-to-brittle transition martensite-austenite islands crystallographic orientation ductile-to-brittle transition temperature(DBTT) prediction model
在线阅读 下载PDF
Numerical investigation of particle deposition on converging slot-hole film-cooled wall 被引量:1
5
作者 ZHOU Jun-hui ZHANG Jing-zhou 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第12期2819-2828,共10页
Numerical research on the dilute particles movement and deposition characteristics in the vicinity of converging slot-hole(console) was carried out, and the effect of hole shape on the particle deposition characterist... Numerical research on the dilute particles movement and deposition characteristics in the vicinity of converging slot-hole(console) was carried out, and the effect of hole shape on the particle deposition characteristics was investigated. The EI-Batsh deposition model was used to predict the particle deposition characteristics. The results show that the console hole has an obvious advantage in reducing particle deposition in comparison with cylindrical hole, especially under higher blowing ratio. The coolant jet from console holes can cover the wall well. Furthermore, the rotation direction of vortices near console hole is contrary to that near cylindrical hole. For console holes, particle deposition mainly takes place in the upstream area of the holes. 展开更多
关键词 gas-solid flow particle deposition film-cooled wall converging slot film cooling hole numerical simulation
在线阅读 下载PDF
Influence of Different Vortex Generators on Heat Transfer in Direct Air-Cooled Condensers 被引量:17
6
作者 ZHOU Guobing YANG Laishun 《中国电机工程学报》 EI CSCD 北大核心 2012年第5期I0001-I0020,共20页
通过数值模拟研究了矩形小翼、三角小翼、梯形小翼、柱面梯形翼、柱面三角翼和柱面矩形翼等6种涡流发生器分别安装于直接空冷凝汽器单排蛇形翅片扁管中的压降和换热性能。Re数在600~1800范围内,涡流发生器采用相同高宽比、尾高、攻角以... 通过数值模拟研究了矩形小翼、三角小翼、梯形小翼、柱面梯形翼、柱面三角翼和柱面矩形翼等6种涡流发生器分别安装于直接空冷凝汽器单排蛇形翅片扁管中的压降和换热性能。Re数在600~1800范围内,涡流发生器采用相同高宽比、尾高、攻角以及安装位置。结果表明:矩形小翼的换热及压降增大最多,Re=1729时,相比平直翅片分别增加了14.27%和18.32%。Re=1 729时,柱面梯形翼的压力损失比矩形小翼少4.7%,换热低1.5%。当以(j/j0)/(f/f0)1/3作为综合换热性能评价标准时,柱面梯形翼的综合换热性能最好。另外,考察了柱面梯形翼倾角的影响(0°、6°、12°、20°、24°和26°),相同工况下,倾角为12°的柱面梯形翼换热最好(较平直翅片增强4.29%~14.1%)、压降最小(增大7.5%~12.8%)且综合换热性能最好。柱面梯形翼因其迎流面积与斜边长度的匹配以及流线型柱面,具有良好的强化传热效果以及较小的压降。 展开更多
关键词 直接空冷凝汽器 涡发生器 传热 涡流发生器 风冷冷凝器 空气冷却 化学工业 热交换器
在线阅读 下载PDF
Analysis of Heat Transfer in Actively Cooled Compound Gun Barrel 被引量:1
7
作者 吴斌 夏伟 《Defence Technology(防务技术)》 SCIE EI CAS 2005年第1期29-36,共8页
when a gun fires, a large amount of heat is brought in the barrel. Erosion/wear and security problems(self ignition of the propellant) associated with this high thermal energy have to be solved owing to the use of hig... when a gun fires, a large amount of heat is brought in the barrel. Erosion/wear and security problems(self ignition of the propellant) associated with this high thermal energy have to be solved owing to the use of higher combustion gas temperature for improved cannon performance and firing at the sustained high rates. Barrel cooling technologies are the effective measures for addressing this issue. In view of the importance of having knowledge of the heat flux, an approach to calculate heat flux based on measurements was presented and validated. The calculated heat flux is used as the inner boundary condition for modeling heat transfer in a 155 mm mid-wall cooled compound gun barrel. Theoretical analysis and simulated results show that natural air cooling is dramatically slower than the forced liquid mid-wall cooling, accordingly wear life of actively cooled barrel is increased and barrel overheating is prevented. 展开更多
关键词 热转换 主动冷却 磨损性质 炮管腐蚀
在线阅读 下载PDF
Effect of quenching cooling rate on residual stress and microstructure evolution of 6061 aluminum alloy
8
作者 HUANG Ke YI You-ping +4 位作者 HUANG Shi-quan HE Hai-lin LIU Jie HUA Hong-en TANG Yun-jian 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第7期2167-2180,共14页
In this study,the cooling rate was manipulated by quenching with water of different temperatures(30,60 and 100℃).Surface and internal residual stresses in the quenched 6061 aluminum alloy samples were measured using ... In this study,the cooling rate was manipulated by quenching with water of different temperatures(30,60 and 100℃).Surface and internal residual stresses in the quenched 6061 aluminum alloy samples were measured using hole-drilling and crack compliance methods,respectively.Then,the processability of the quenched samples was evaluated at cryogenic temperatures.The mechanical properties of the as-aged samples were assessed,and microstructure evolution was analyzed.The surface residual stresses of samples W30℃,W60℃and W100℃is−178.7,−161.7 and−117.2 MPa,respectively along x-direction,respectively;and−191.2,−172.1 and−126.2 MPa,respectively along y-direction.The sample quenched in boiling water displaying the lowest residual stress(~34%and~60%reduction in the surface and core).The generation and distribution of quenching residual stress could be attributed to the lattice distortion gradient.Desirable plasticity was also exhibited in the samples with relatively low quenching cooling rates at cryogenic temperatures.The strengthes of the as-aged samples are 291.2 to 270.1 MPa as the quenching water temperature increase from 30℃to 100℃.Fine and homogeneous β"phases were observed in the as-aged sample quenched with boiling water due to the clusters and Guinier-Preston zones(GP zones)premature precipitated during quenching process. 展开更多
关键词 6061 aluminum alloy residual stress cooling rate cryogenic cooling mechanical properties microstructure evolution
在线阅读 下载PDF
Thermo-Mechanical Analysis of Water-Cooled Gun Barrel During Burst Firing 被引量:1
9
作者 樊黎霞 胡志刚 赵建波 《Defence Technology(防务技术)》 SCIE EI CAS 2006年第1期1-6,共6页
The thermo-mechanical stress and deformation of water-cooled gun barrel during burst firing are studied by finite element analysis (FEA). The problem is modeled in two steps: 1) A transient heat transfer analysis is f... The thermo-mechanical stress and deformation of water-cooled gun barrel during burst firing are studied by finite element analysis (FEA). The problem is modeled in two steps: 1) A transient heat transfer analysis is first carried out in order to determine temperature evolution and to predict the residual temperatures during the burst firing event; 2) The thermo-mecha- nical stresses and deformation caused by both the residual temperature field and the gas pressure are then calculated. The results show that the residual temperature field tends to a steady state with the increasing of rounds. The residual temperature field has much effect on the gun barrel stress and deformation, especially on the assembly area between barrel and water jacket. The gage between the barrel and water jacket is the critical factor to the thermo- mechanical stress and deformation. The results of this analysis will be very useful to develop the new strength design theory of the liquid-cooled gun barrel. 展开更多
关键词 有限元分析 机械分析 武器
在线阅读 下载PDF
A review on the cooling of energy conversion and storage systems using thermoelectric modules
10
作者 Amirreza IJADI Mehran Rajabi ZARGARABADI +1 位作者 Saman RASHIDI Amir Mohammad JADIDI 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第6期1998-2026,共29页
Exploitation of sustainable energy sources requires the use of unique conversion and storage systems,such as solar panels,batteries,fuel cells,and electronic equipment.Thermal load management of these energy conversio... Exploitation of sustainable energy sources requires the use of unique conversion and storage systems,such as solar panels,batteries,fuel cells,and electronic equipment.Thermal load management of these energy conversion and storage systems is one of their challenges and concerns.In this article,the thermal management of these systems using thermoelectric modules is reviewed.The results show that by choosing the right option to remove heat from the hot side of the thermoelectric modules,it will be a suitable local cooling,and the thermoelectric modules increase the power and lifespan of the system by reducing the spot temperature.Thermoelectric modules were effective in reducing panel temperature.They increase the time to reach a temperature above 50℃ in batteries by 3 to 4 times.Also,in their integration with fuel cells,they increase the power density of the fuel cell. 展开更多
关键词 coolING PHOTOVOLTAIC lithium-ion batteries fuel cell electronic equipment thermoelectric modules
在线阅读 下载PDF
Impact of cooling rate on exfoliation corrosion resistance of a Li-containing 7xxx aluminum alloy
11
作者 JIANG Ke-da LIAO Ze-xin +2 位作者 CHEN Ming-yang LIU Sheng-dan TANG Jian-guo 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第7期2225-2236,共12页
The impact of cooling rate after solution heat treatment on exfoliation corrosion resistance of a Li-containing 7xxx aluminum alloy was investigated by accelerated immersion and electrochemical impedance spectroscopy ... The impact of cooling rate after solution heat treatment on exfoliation corrosion resistance of a Li-containing 7xxx aluminum alloy was investigated by accelerated immersion and electrochemical impedance spectroscopy test,optical microscope,electron backscatter diffraction and scanning transmission electron microscope.With the decrease of cooling rate from 1700℃/s to 4℃/s,exfoliation corrosion resistance of the aged specimens decreases with rating changing from EA to EC and the maximum corrosion depth increasing from about 169.4μm to 632.1μm.Exfoliation corrosion tends to develop along grain boundaries in the specimens with cooling rates higher than about 31℃/s and along both grain boundaries and sub-grain boundaries in the specimens with lower cooling rates.The reason has been discussed based on the changes of the microstructure and microchemistry at grain boundaries and sub-grain boundaries due to slow cooling. 展开更多
关键词 7xxx aluminum alloy cooling rate exfoliation corrosion microstructure
在线阅读 下载PDF
热管理策略对电池储能系统性能影响综述 被引量:1
12
作者 吉鹏霄 郭丽娜 陶海军 《电池》 北大核心 2025年第1期178-185,共8页
深入分析电池储能系统(BESS)热管理策略的现状与挑战,旨在明确现有策略在保障系统性能、延长电池寿命与安全操作中的作用与局限。回顾空气冷却、液冷及相变冷却等主流热管理技术,总结各自的技术特点与实际应用案例,并详细论述电池在低... 深入分析电池储能系统(BESS)热管理策略的现状与挑战,旨在明确现有策略在保障系统性能、延长电池寿命与安全操作中的作用与局限。回顾空气冷却、液冷及相变冷却等主流热管理技术,总结各自的技术特点与实际应用案例,并详细论述电池在低温和热失控情况下的性能衰减机制。分析电池组设计改进、冷却通道优化等实际措施,强调在现有技术框架内挖掘创新潜力的具体路径,如通过优化现有电池组设计,结合相变材料(PCM)与其他冷却系统来增强散热效果。同时,探索智能控制算法、改进材料,以进一步提升系统的热管理效率和适应性。 展开更多
关键词 电池热管理 储能系统 空气冷却 液冷 相变冷却
在线阅读 下载PDF
辐射制冷材料及其应用研究进展 被引量:1
13
作者 郭三刺 王蕾 +3 位作者 袁洪跃 杨怡丹 刘宪虎 潘亚敏 《中国塑料》 北大核心 2025年第1期132-140,共9页
随着全球变暖加剧和极端高温天气频发,人体、建筑、设备等的降温需求日益迫切。而传统降温方法(如空调系统等)消耗大量能源,导致温室气体排放显著提升,严重阻碍“双碳”目标的实现。基于结构和材料设计的辐射制冷技术,通过对太阳光和中... 随着全球变暖加剧和极端高温天气频发,人体、建筑、设备等的降温需求日益迫切。而传统降温方法(如空调系统等)消耗大量能源,导致温室气体排放显著提升,严重阻碍“双碳”目标的实现。基于结构和材料设计的辐射制冷技术,通过对太阳光和中红外波段光谱进行选择性精准调控,为可持续碳中和提供一种零能耗、生态友好的冷却策略。本文综述了辐射制冷材料的研究现状及其在不同领域的研究进展,并从不同角度对其应用前景进行了展望。 展开更多
关键词 辐射制冷 材料选择 应用研究进展 应用前景
在线阅读 下载PDF
钠冷快堆技术发展综述 被引量:5
14
作者 杨红义 周培德 +4 位作者 王明政 刘一哲 杨勇 颜寒 阿热爱·努尔兰 《原子能科学技术》 北大核心 2025年第S1期1-14,共14页
钠冷快堆是以液态金属钠作为冷却剂的快中子核反应堆。本文系统地阐述了钠冷快堆技术的发展历程与现状。首先回顾了钠冷快堆早期在国际范围内的发展情况,探讨了第四代核能系统的核心技术概念,并对21世纪以来钠冷快堆的发展现状进行了分... 钠冷快堆是以液态金属钠作为冷却剂的快中子核反应堆。本文系统地阐述了钠冷快堆技术的发展历程与现状。首先回顾了钠冷快堆早期在国际范围内的发展情况,探讨了第四代核能系统的核心技术概念,并对21世纪以来钠冷快堆的发展现状进行了分析;然后总结了钠冷快堆技术发展的主要趋势以及关键技术发展路线;最后对中国钠冷快堆未来的发展趋势进行了分析与展望。通过对钠冷快堆技术的系统性总结,揭示了其未来发展的方向和潜力,为后续科学研究和工程实践提供了理论支持与参考依据。 展开更多
关键词 第四代核能系统 钠冷快堆 闭式燃料循环后处理 一体化快堆
在线阅读 下载PDF
基于PSO−SVR的掘进工作面风温预测 被引量:1
15
作者 李延河 万志军 +6 位作者 于振子 苟红 赵万里 周嘉乐 师鹏 甄正 张源 《煤炭科学技术》 北大核心 2025年第1期183-191,共9页
随着我国浅部煤炭资源的逐渐枯竭,矿井开采深度日益增大,热害问题也随之加剧。采掘作业空间是井下的主要热害场所,对其进行热害防治是矿井安全高效生产的重要基础。矿井热害治理的前提是明确其冷负荷,因此对采掘作业空间风温进行精准预... 随着我国浅部煤炭资源的逐渐枯竭,矿井开采深度日益增大,热害问题也随之加剧。采掘作业空间是井下的主要热害场所,对其进行热害防治是矿井安全高效生产的重要基础。矿井热害治理的前提是明确其冷负荷,因此对采掘作业空间风温进行精准预测意义重大。建立了基于PSO-SVR(基于粒子群的支持向量回归)的掘进工作面风温预测模型,利用模型中的惩罚因子C和核函数参数g对模型进行了寻优。通过现场实测及文献调研,建立了掘进工作面风温预测训练样本集。通过与最小二乘法估计MLR模型和经“试错法”标定参数的常规SVR模型进行对比,分析了PSO-SVR算法的优势。将PSO-SVR算法模型应用于平煤十矿己-24120保护层风巷风温预测,并依据风温预测结果,指导了制冷机组的选型和降温方案设计。结果表明:PSO-SVR模型预测性能最优,模型绝对误差百分比仅为1.85%,较常规SVR模型减小了55.9%,可见PSO优化模型参数对于提高SVR拟合度、泛化性及预测精度具有重要作用。巷道每掘进100m,工作面风流平均温升0.16℃,掘进至2000m时巷道迎头风温升至35.8℃。己-24120保护层风巷需冷量为1083.28kW,设计制冷机组总制冷量为1085 kW。己-24120保护层风巷实施降温后,工作面平均温降8.6℃,降温效果显著,表明了PSO-SVR掘进工作面风温预测模型的可靠性和可行性。 展开更多
关键词 掘进工作面 风温预测 粒子群 支持向量回归 矿井降温
在线阅读 下载PDF
Q355、Q460和Q690钢材火灾降温阶段力学性能对比 被引量:1
16
作者 楼国彪 王梦洁 +1 位作者 李国强 蒋彬辉 《建筑材料学报》 北大核心 2025年第4期350-357,共8页
基于Q355、Q460和Q690钢材在火灾升温和降温全过程中的力学性能试验结果,对3种钢材火灾降温阶段的断口形貌和力学性能进行对比分析.结果表明:当最高受热温度在700℃以内时,Q460和Q690钢材的降温阶段弹性模量折减系数相近,3种钢材屈服强... 基于Q355、Q460和Q690钢材在火灾升温和降温全过程中的力学性能试验结果,对3种钢材火灾降温阶段的断口形貌和力学性能进行对比分析.结果表明:当最高受热温度在700℃以内时,Q460和Q690钢材的降温阶段弹性模量折减系数相近,3种钢材屈服强度f0.2折减系数相差较大,屈服强度f_(2.0)折减系数相近,极限强度折减系数有一定差距;当最高受热温度为800、900℃时,3种钢材降温阶段弹性模量和屈服强度折减系数相差较大,而极限强度折减系数相差较小;将现有规范推荐的钢材高温力学性能与3种钢材降温阶段力学性能进行对比得出,现有规范中钢材升温阶段力学性能折减系数无法系统地预测钢材降温阶段力学性能. 展开更多
关键词 热轧结构钢 火灾 降温阶段 力学性能 对比分析
在线阅读 下载PDF
汽车用前保险杠注塑参数田口试验及试验验证 被引量:3
17
作者 黄可 邹华杰 +1 位作者 钱子龙 李兵兵 《塑料工业》 北大核心 2025年第2期90-96,共7页
为了获得低翘曲量的汽车用前保险杠制品,对制品浇口充填方案进行可行性验证。经验证,聚合物链不会断裂,材料不会降解,优化后浇口成型方案合理。选取熔体温度(H)、注射压力(I)、模具表面温度(J)、“辅助流道”直径(K)、浇口宽度(L)、冷... 为了获得低翘曲量的汽车用前保险杠制品,对制品浇口充填方案进行可行性验证。经验证,聚合物链不会断裂,材料不会降解,优化后浇口成型方案合理。选取熔体温度(H)、注射压力(I)、模具表面温度(J)、“辅助流道”直径(K)、浇口宽度(L)、冷却时间(M),为研究对象,构建6因素5水平25次田口试验,当H为225℃,I为60 MPa,J为75℃,K为10 mm,L为20 mm,M为40 s(第6组工艺参数)时,最大翘曲量(20.10 mm)最小。通过极差分析,获得各因素各水平与最大翘曲量的关联,熔体温度、注射压力、“辅助流道”直径,对最大翘曲量的影响起到决定性作用;冷却时间,对最大翘曲量的影响作用不大;浇口宽度及模具表面温度,对最大翘曲量的影响最弱。在H为225℃,I为60 MPa,J为75℃,K为12 mm,L为32 mm,M为30 s参数下最大翘曲量较第6组工艺参数下的最大翘曲量,降低了30.3%。经试验验证,成型后的制品表面光泽均匀,没有出现烧焦、困气、熔接痕等缺陷,成型状态优良,保险杠两端与模具贴合良好,没有发现翘曲现象,验证了工艺参数的准确性,佐证了Moldflow 2024模流数值软件分析的科学性。 展开更多
关键词 前保险杠 熔体温度 注射压力 模具表面温度 “辅助流道”直径 浇口宽度 冷却时间
在线阅读 下载PDF
压差预冷环境因子与蓝莓果实品质耦合效应研究
18
作者 王达 姚超阳 +5 位作者 邓秀丽 吴茂玉 孙占新 赵丽 郑涛 杨相政 《农业机械学报》 北大核心 2025年第6期90-97,129,共9页
针对易腐浆果蓝莓采后冷链中预冷环境因子与果实品质互作机制不明确的问题,本文提出预冷贡献率评价指标,研究延迟预冷时间(0、3、6 h)、环境风速(0.1、0.5、1.0、1.5 m/s)和环境温度(0、5、10、15℃)对蓝莓冷链品质的影响规律,开展以压... 针对易腐浆果蓝莓采后冷链中预冷环境因子与果实品质互作机制不明确的问题,本文提出预冷贡献率评价指标,研究延迟预冷时间(0、3、6 h)、环境风速(0.1、0.5、1.0、1.5 m/s)和环境温度(0、5、10、15℃)对蓝莓冷链品质的影响规律,开展以压差预冷为基础的蓝莓冷链周期内品质评价。结果表明:采后立即预冷可使冷链期间可溶性固形物含量提升2.8个百分点(预冷贡献率为20.49%),商品化率提高6个百分点(预冷贡献率为6.74%),预冷实施越及时越有利于保持果实采后品质;环境风速改善可增强预冷效能,当预冷风速提升至1.0 m/s时,可溶性固形物含量和商品化率分别增加1.75个百分点与4个百分点(预冷贡献率为15.15%和4.34%);预冷处理对果实质地特性具有双面效应,预冷阶段,低环温和高风速会降低果实弹性,增加运输损伤风险;贮运阶段,低环温和高风速有利于保持蓝莓弹性和紧实度,提高果实抗颠簸能力。最佳预冷参数为环境温度5℃,环境风速1.0 m/s。 展开更多
关键词 蓝莓品质 环境因子 压差预冷 预冷贡献率
在线阅读 下载PDF
环境风作用下主辅机共塔型空冷系统的数值模拟研究 被引量:2
19
作者 李高潮 赵强强 +7 位作者 万超 范烨 杨凯旋 荆涛 姚兆林 崔元永 肖文博 师进文 《热力发电》 北大核心 2025年第2期135-144,共10页
通过数值模拟研究主辅机共塔间接空冷塔系统在夏季常规工况下不同环境风向、风速对机组流动换热特性的影响。结果表明:环境风速从4 m/s增至16 m/s,迎风扇段压力增加,两侧扇段则压力降低,背风扇段内侧压力升高形成高温区,并在风速大于8m/... 通过数值模拟研究主辅机共塔间接空冷塔系统在夏季常规工况下不同环境风向、风速对机组流动换热特性的影响。结果表明:环境风速从4 m/s增至16 m/s,迎风扇段压力增加,两侧扇段则压力降低,背风扇段内侧压力升高形成高温区,并在风速大于8m/s时高温区会减少,外侧压力降低,迎风背风段的压力变化大于两侧扇段,主机扇段总换热量降低,辅机扇段缓慢增加且受环境风影响较小;在不同环境风向下,当风向角为0°和180°时被遮挡的塔换热量会大幅升高,风向角为45°和135°时,两塔之间的部分扇段被阻挡,被遮挡的塔换热量会相对小幅降低,主机扇段的换热量最大值出现在环境风被完全遮挡的方位,辅机扇段换热量最大值出现在环境风向角90°处,即正对辅机扇段的方位。 展开更多
关键词 空冷系统 主辅机共塔 环境风速 环境风向 数值模拟
在线阅读 下载PDF
基于双通道并行串联式液冷板下锂电池温升特性数值分析
20
作者 刘顺新 许令平 +2 位作者 张建兴 曾光 李昊阳 《储能科学与技术》 北大核心 2025年第4期1496-1506,共11页
在锂电池储能系统的散热方式中,液冷散热系统具有明显优势,但不同的液冷板、不同的液冷结构形式,对液冷散热系统性能有着显著的影响。为解决锂电池的热安全问题,借助ANSYS FLUENT对容量为280 Ah的锂离子电池进行数值分析,构建起基于Bern... 在锂电池储能系统的散热方式中,液冷散热系统具有明显优势,但不同的液冷板、不同的液冷结构形式,对液冷散热系统性能有着显著的影响。为解决锂电池的热安全问题,借助ANSYS FLUENT对容量为280 Ah的锂离子电池进行数值分析,构建起基于Bernardi生热率、流体动量守恒方程和能量守恒方程的锂电池三维瞬态生热模型,模拟锂电池组高倍率工作状态下温度场的变化,研究在该状态下一种双通道并行串联式液冷板的三种不同连接方式的降温效果,分析冷却液流速、冷却液初始温度以及液冷板流道高度对锂电池组降温效果的影响,获得该液冷板的最优降温方案。结果表明,在三种连接方案中,第三种正反交替式连接方案锂电池组散热性能最佳,且使得电池组受热更均匀;基于第三种连接方案,增加冷却液流速,锂电池组的最高温度随着冷却液流速的增加,由开始阶段的快速下降转变为缓慢下降;降低冷却液进口温度,锂电池组最高温度明显下降;分析对比不同高度的冷却液流道,适当增加流道高度能有效提升液冷系统散热性能。基于本研究,在该液冷板结构作用下,适当增加冷却液流速、降低冷却液进口温度、增加液冷板流道高度能得到在该液冷板结构下的最佳降温方案。 展开更多
关键词 锂电池 液冷板 液冷系统 液冷结构 散热性能
在线阅读 下载PDF
上一页 1 2 250 下一页 到第
使用帮助 返回顶部