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整合EVE-NG、GNS3及HCL搭建多厂商网络仿真实验平台
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作者 孙光懿 《新疆师范大学学报(自然科学版)》 2025年第2期1-7,19,共8页
文章针对EVE-NG、GNS3仿真平台主要仿真思科设备,HCL仿真平台只能仿真H3C设备,而实际工程项目往往涵盖多厂商设备的问题,探讨将EVE-NG、GNS3、HCL等网络模拟器通过与本地物理网卡桥接的方法进行整合,搭建集成多厂商设备,可用于实际网络... 文章针对EVE-NG、GNS3仿真平台主要仿真思科设备,HCL仿真平台只能仿真H3C设备,而实际工程项目往往涵盖多厂商设备的问题,探讨将EVE-NG、GNS3、HCL等网络模拟器通过与本地物理网卡桥接的方法进行整合,搭建集成多厂商设备,可用于实际网络工程项目的网络仿真实验平台。文章不仅给出了上述三款网络模拟器桥接整合的基本原理,还给出了与本地物理网卡的具体桥接过程。测试后证实,整合后的网络仿真实验平台可兼容模拟多厂商网络设备运行。 展开更多
关键词 EVE-NG GNS3 hcl Pemu DYNAMIPS
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一种镍基高温合金的高温HCl腐蚀行为
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作者 周一鸣 韩勇军 +4 位作者 谢光 郑伟 肖炎彬 潘阳 张健 《金属学报》 北大核心 2025年第5期770-782,共13页
针对极端环境中材料面临的高温、高浓度HCl的苛刻工况,采用XRD、SEM、EDS和EPMA等研究手段,研究了一种镍基高温合金在960℃、5%HCl+0.5%O_(2)+Ar(体积分数)气氛条件下的热腐蚀行为,腐蚀时间长达200 h。通过对比不同时间的腐蚀动力学曲... 针对极端环境中材料面临的高温、高浓度HCl的苛刻工况,采用XRD、SEM、EDS和EPMA等研究手段,研究了一种镍基高温合金在960℃、5%HCl+0.5%O_(2)+Ar(体积分数)气氛条件下的热腐蚀行为,腐蚀时间长达200 h。通过对比不同时间的腐蚀动力学曲线、腐蚀产物种类及分布、截面腐蚀层结构及元素分布,在分析高温合金腐蚀规律的基础上,初步探讨了高温HCl腐蚀机理。结果表明,960℃高温下,合金动力学曲线可分为2段:0~75 h及75~200 h,随时间延长,2段曲线均呈先上升后下降的趋势,生成了大量含Mo、Ti、Cr的挥发性氯化物;腐蚀层中,外层富Cr和Ti的氧化物层保护性较差;没有形成连续的Al_(2)O_(3)层;富Ta尖晶石相层具有降低金属离子外扩散的作用;未在试片截面腐蚀层中观察到明显的氯化物富集。研究表明,960℃高温下,除了气氛中的HCl、O_(2)以外,通过氯化-氧化过程,而非中温下的活化氧化过程,生成的Cl_(2)同样参与了反应,并起到加速氧化的作用。 展开更多
关键词 镍基高温合金 高温hcl腐蚀 氯化 氧化 氯化物
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用HCl-H_(2)SO_(4)协同分解白钨矿试验研究 被引量:2
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作者 徐国钻 张代彬 +2 位作者 黄成龙 张龙辉 刘德刚 《湿法冶金》 北大核心 2025年第1期45-51,共7页
研究了采用HCl-H_(2)SO_(4)协同分解白钨矿,考察了各工艺参数对分解效果的影响,并探讨了分解过程动力学。结果表明:在盐酸浓度22%、浓硫酸用量0.5%、液固体积质量比2.5∶1、分解温度85℃、分解时间2 h、搅拌速率360 r/min优化条件下,白... 研究了采用HCl-H_(2)SO_(4)协同分解白钨矿,考察了各工艺参数对分解效果的影响,并探讨了分解过程动力学。结果表明:在盐酸浓度22%、浓硫酸用量0.5%、液固体积质量比2.5∶1、分解温度85℃、分解时间2 h、搅拌速率360 r/min优化条件下,白钨矿中钨酸钙分解率达99.6%,分解率较高;HCl-H_(2)SO_(4)协同分解白钨矿过程受化学反应和固体膜层混合控制,表观活化能为45.52 kJ/mol,白钨矿中的钨酸钙可高效转变为钨酸,从而使白钨矿中钨提取率得到有效提升。 展开更多
关键词 白钨矿 hcl H_(2)SO_(4) 协同分解 动力学
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钼铋混合精矿HCl-NaCl体系浸出工艺优化与机理研究
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作者 朱安宇 沈裕军 +3 位作者 彭俊 张喜龙 蔡云卓 王俊龙 《稀有金属与硬质合金》 北大核心 2025年第3期1-7,共7页
针对传统钼铋混合精矿选矿工艺流程长、成本高、精矿互含等问题,采用HCl-NaCl体系浸出提取钼铋混合精矿中的铋来实现钼铋分离,对浸出过程进行了热力学分析;考察了盐酸浓度、浸出温度、浸出时间、液固比和氯化钠浓度对铋浸出率的影响;根... 针对传统钼铋混合精矿选矿工艺流程长、成本高、精矿互含等问题,采用HCl-NaCl体系浸出提取钼铋混合精矿中的铋来实现钼铋分离,对浸出过程进行了热力学分析;考察了盐酸浓度、浸出温度、浸出时间、液固比和氯化钠浓度对铋浸出率的影响;根据浸出实验数据进行动力学分析,确定了反应控制步骤。结果表明:在不加氧化剂的情况下,硫化铋与盐酸反应后Bi和S的形态分别为BiCl_(4)^(-)和H_(2)S;各因素对铋浸出率的影响大小顺序为:浸出温度>盐酸浓度>液固比>氯化钠浓度>浸出时间;在盐酸浓度4 mol/L、液固比2.0、反应温度90℃、反应时间8 h及氯化钠浓度4 mol/L的优化条件下,铋平均浸出率达到97.90%;该浸出反应表观活化能为84.55 kJ/mol,主要受界面化学反应步骤控制,升高温度有利于铋浸出。 展开更多
关键词 钼铋混合精矿 hcl-NaCl体系 铋浸出 工艺优化 热力学 动力学
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高炉煤气中HCl脱除研究现状与展望 被引量:1
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作者 陆钢 邢奕 +6 位作者 周华龙 钱李潜馨 丁林 张秋林 冷廷双 苏伟 赵荣志 《工程科学学报》 北大核心 2025年第4期875-883,共9页
为明确高炉煤气中的氯元素对高炉附属设备的影响,本文论述了高炉煤气中氯元素的来源和赋存形态,归纳了氯离子对高炉TRT叶片、煤气管网和附属设备以及热风炉耐火材料所造成的积盐结垢、腐蚀等危害.针对高炉煤气中氯离子所造成的危害,在... 为明确高炉煤气中的氯元素对高炉附属设备的影响,本文论述了高炉煤气中氯元素的来源和赋存形态,归纳了氯离子对高炉TRT叶片、煤气管网和附属设备以及热风炉耐火材料所造成的积盐结垢、腐蚀等危害.针对高炉煤气中氯离子所造成的危害,在不改变高炉炼铁工艺的前提下,从高炉入炉原料源头控制,改善高炉操作工艺、开发管道防腐和TRT阻垢技术,TRT后喷碱脱氯以及TRT前干法脱氯这几个方面进行了深入研究.通过对上述工艺优缺点的对比,提出了以TRT前管道喷吹脱氯为主,关键设备防腐为辅,二者相结合的工艺,将是今后高炉煤气脱氯的重点研究方向. 展开更多
关键词 高炉煤气 氯化氢 腐蚀 积盐结垢 脱氯
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扁竹根提取物对Q420钢在HCl中的缓蚀性能研究
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作者 陈书军 陈思屹 +2 位作者 张海 伍远辉 郑燕 《电镀与精饰》 北大核心 2025年第5期1-8,29,共9页
结合实验测试与理论计算的方法研究了扁竹根提取物(ICF)在1 mol·L^(-1)的HCl中对Q420钢的缓蚀性能与机理。电化学测试结果显示,ICF在HCl中对Q420钢的缓蚀效率随着ICF浓度的提高而增大,随着温度的上升而降低。添加0.8g·L^(-1)... 结合实验测试与理论计算的方法研究了扁竹根提取物(ICF)在1 mol·L^(-1)的HCl中对Q420钢的缓蚀性能与机理。电化学测试结果显示,ICF在HCl中对Q420钢的缓蚀效率随着ICF浓度的提高而增大,随着温度的上升而降低。添加0.8g·L^(-1)的ICF,在298K下,对Q420钢的缓蚀效率高达92.95%。形貌分析也进一步证实了ICF的缓蚀性能。等温吸附模拟表明,ICF能自发地在Q420钢表面吸附,且遵循朗格缪尔(Langmuir)单层吸附模型。借助量子化学计算分析了ICF在的Q420钢表面的吸附与缓蚀机理。 展开更多
关键词 扁竹根 Q420钢 hcl 缓蚀剂 量子化学计算
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Müller cells are activated in response to retinal outer nuclear layer degeneration in rats subjected to simulated weightlessness conditions 被引量:1
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作者 Yuxue Mu Ning Zhang +7 位作者 Dongyu Wei Guoqing Yang Lilingxuan Yao Xinyue Xu Yang Li Junhui Xue Zuoming Zhang Tao Chen 《Neural Regeneration Research》 SCIE CAS 2025年第7期2116-2128,共13页
A microgravity environment has been shown to cause ocular damage and affect visual acuity,but the underlying mechanisms remain unclear.Therefore,we established an animal model of weightlessness via tail suspension to ... A microgravity environment has been shown to cause ocular damage and affect visual acuity,but the underlying mechanisms remain unclear.Therefore,we established an animal model of weightlessness via tail suspension to examine the pathological changes and molecular mechanisms of retinal damage under microgravity.After 4 weeks of tail suspension,there were no notable alterations in retinal function and morphology,while after 8 weeks of tail suspension,significant reductions in retinal function were observed,and the outer nuclear layer was thinner,with abundant apoptotic cells.To investigate the mechanism underlying the degenerative changes that occurred in the outer nuclear layer of the retina,proteomics was used to analyze differentially expressed proteins in rat retinas after 8 weeks of tail suspension.The results showed that the expression levels of fibroblast growth factor 2(also known as basic fibroblast growth factor)and glial fibrillary acidic protein,which are closely related to Müller cell activation,were significantly upregulated.In addition,Müller cell regeneration and Müller cell gliosis were observed after 4 and 8 weeks,respectively,of simulated weightlessness.These findings indicate that Müller cells play an important regulatory role in retinal outer nuclear layer degeneration during weightlessness. 展开更多
关键词 glial fibrous acidic protein GLIOSIS Müller cells nerve growth factor neural differentiation neurodegeneration proteomic retinal degeneration retinal outer nuclear layer simulated weightlessness
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在HCl-H_(2)O_(2)体系中全湿法短流程高效分离回收废旧银铜焊条中的铜银
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作者 卞国军 《湿法冶金》 北大核心 2025年第1期32-39,共8页
含银二次资源的高效利用对于弥补我国银矿资源不足、缓解供需矛盾、保障国家战略金属供给安全具有重要意义。针对废旧银铜焊条,研究了在HCl-H_(2)O_(2)体系中浸出分离铜银,并制备高纯AgCl,考察了各因素对铜银分离效果的影响。结果表明:... 含银二次资源的高效利用对于弥补我国银矿资源不足、缓解供需矛盾、保障国家战略金属供给安全具有重要意义。针对废旧银铜焊条,研究了在HCl-H_(2)O_(2)体系中浸出分离铜银,并制备高纯AgCl,考察了各因素对铜银分离效果的影响。结果表明:在H_(2)O_(2)过量系数为1.3、HCl过量系数为1.4、液固质量比为11∶1、浸出温度40℃、浸出时间3 h优化条件下,铜浸出率达99.38%;浸出渣为粒径2~4μm不规则的球状颗粒,主要物相为AgCl,主要成分为Ag和Cl,总质量分数占99%以上。 展开更多
关键词 废旧银铜焊条 hcl H_(2)O_(2) 分离 回收 氯化银
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Absorption-Reflection-Transmission Power Coefficient Guiding Gradient Distribution of Magnetic MXene in Layered Composites for Electromagnetic Wave Absorption 被引量:2
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作者 Yang Zhou Wen Zhang +7 位作者 Dong Pan Zhaoyang Li Bing Zhou Ming Huang Liwei Mi Chuntai Liu Yuezhan Feng Changyu Shen 《Nano-Micro Letters》 2025年第6期466-481,共16页
The morphological distribution of absorbent in composites is equally important with absorbents for the overall electromagnetic properties,but it is often ignored.Herein,a comprehensive consideration including electrom... The morphological distribution of absorbent in composites is equally important with absorbents for the overall electromagnetic properties,but it is often ignored.Herein,a comprehensive consideration including electromagnetic component regulation,layered arrangement structure,and gradient concentration distribution was used to optimize impedance matching and enhance electromagnetic loss.On the microscale,the incorporation of magnetic Ni nanoparticles into MXene nanosheets(Ni@MXene)endows suitable intrinsic permittivity and permeability.On the macroscale,the layered arrangement of Ni@MXene increases the effective interaction area with electromagnetic waves,inducing multiple reflection/scattering effects.On this basis,according to the analysis of absorption,reflection,and transmission(A-R-T)power coefficients of layered composites,the gradient concentration distribution was constructed to realize the impedance matching at low-concentration surface layer,electromagnetic loss at middle concentration interlayer and microwave reflection at high-concentration bottom layer.Consequently,the layered gradient composite(LG5-10-15)achieves complete absorption coverage of X-band at thickness of 2.00-2.20 mm with RL_(min) of-68.67 dB at 9.85 GHz in 2.05 mm,which is 199.0%,12.6%,and 50.6%higher than non-layered,layered and layered descending gradient composites,respectively.Therefore,this work confirms the importance of layered gradient structure in improving absorption performance and broadens the design of high-performance microwave absorption materials. 展开更多
关键词 Magnetic MXene layered and gradient structure Power coefficient Electromagnetic wave absorption
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Layered Double Hydroxide Nanosheets Incorporated Hierarchical Hydrogen Bonding Polymer Networks Coatings 被引量:1
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作者 Bifan Guo Yimin He +6 位作者 Yongming Chen Tianci Yang Chaohua Peng Weiang Luo Birong Zeng Yiting Xu Lizong Dai 《Nano-Micro Letters》 2025年第5期374-390,共17页
In recent decades,annual urban fire incidents,including those involving ancient wooden buildings burned,transportation,and solar panels,have increased,leading to significant loss of human life and property.Addressing ... In recent decades,annual urban fire incidents,including those involving ancient wooden buildings burned,transportation,and solar panels,have increased,leading to significant loss of human life and property.Addressing this issue without altering the surface morphology or interfering with optical behavior of flammable materials poses a substantial challenge.Herein,we present a transparent,low thickness,ceramifiable nanosystem coating composed of a highly adhesive base(poly(SSS1-co-HEMA1)),nanoscale layered double hydroxide sheets as ceramic precursors,and supramolecular melamine di-borate as an accelerator.We demonstrate that this hybrid coating can transform into a porous,fire-resistant protective layer with a highly thermostable vitreous phase upon exposure to flame/heat source.A nanosystem coating of just~100μm thickness can significantly increase the limiting oxygen index of wood(Pine)to 37.3%,dramatically reduce total heat release by 78.6%,and maintain low smoke toxicity(CIT_G=0.016).Detailed molecular force analysis,combined with a comprehensive examination of the underlying flame-retardant mechanisms,underscores the effectiveness of this coating.This work offers a strategy for creating efficient,environmentally friendly coatings with fire safety applications across various industries. 展开更多
关键词 NANOCOMPOSITES SUPRAMOLECULAR Flame retardancy Ceramic-like char layer Fire protection
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Research on Multi-Level Automatic Filling Optimization Design Method for Layered Cross-Sectional Layout of Umbilical 被引量:1
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作者 YIN Xu FAN Zhi-rui +4 位作者 CAO Dong-hui LIU Yu-jie LI Meng-shu YAN Jun YANG Zhi-xun 《China Ocean Engineering》 2025年第5期891-903,共13页
The umbilical,a key component in offshore energy extraction,plays a vital role in ensuring the stable operation of the entire production system.The extensive variety of cross-sectional components creates highly comple... The umbilical,a key component in offshore energy extraction,plays a vital role in ensuring the stable operation of the entire production system.The extensive variety of cross-sectional components creates highly complex layout combinations.Furthermore,due to constraints in component quantity and geometry within the cross-sectional layout,filler bodies must be incorporated to maintain cross-section performance.Conventional design approaches based on manual experience suffer from inefficiency,high variability,and difficulties in quantification.This paper presents a multi-level automatic filling optimization design method for umbilical cross-sectional layouts to address these limitations.Initially,the research establishes a multi-objective optimization model that considers compactness,balance,and wear resistance of the cross-section,employing an enhanced genetic algorithm to achieve a near-optimal layout.Subsequently,the study implements an image processing-based vacancy detection technique to accurately identify cross-sectional gaps.To manage the variability and diversity of these vacant regions,the research introduces a multi-level filling method that strategically selects and places filler bodies of varying dimensions,overcoming the constraints of uniform-size fillers.Additionally,the method incorporates a hierarchical strategy that subdivides the complex cross-section into multiple layers,enabling layer-by-layer optimization and filling.This approach reduces manufac-turing equipment requirements while ensuring practical production process feasibility.The methodology is validated through a specific umbilical case study.The results demonstrate improvements in compactness,balance,and wear resistance compared with the initial cross-section,offering novel insights and valuable references for filler design in umbilical cross-sections. 展开更多
关键词 UMBILICAL cross-sectional layout multi-level filling layered layout optimization design
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Parameter optimization of the observation system for the South Yellow Sea strong shielding layer based on seismic illumination analysis 被引量:1
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作者 Yang Jia-Jia Chen Jian-Wen +5 位作者 Huang Fu-Qiang Yan Zhong-Hui Lei Bao-Hua Wang Xiao-Jie Xu Hua-Ning Liu Hong 《Applied Geophysics》 2025年第1期84-98,233,共16页
The seismic data of the Laoshan Uplift in the South Yellow Sea Basin reveal a low signal-tonoise ratio and low refl ection signal energy in the deep Mesozoic–Paleozoic strata.The main reason is that the Mesozoic-Pale... The seismic data of the Laoshan Uplift in the South Yellow Sea Basin reveal a low signal-tonoise ratio and low refl ection signal energy in the deep Mesozoic–Paleozoic strata.The main reason is that the Mesozoic-Paleozoic marine carbonate rock strata are directly covered by the Cenozoic terrestrial clastic rock strata,which form a strong shielding layer.To obtain the reflection signals of the strata below the strong shielding layer,a one-way wave equation bidirectional illumination analysis of the main observation system parameters was conducted by analyzing the mechanism of the strong shielding layer.Low-frequency seismic sources are assumed to have a high illumination intensity on the reflection layer below the strong shielding layer.Accordingly,optimized acquisition parameter suggestions were proposed,and reacquisition was performed at the existing survey line locations in the Laoshan Uplift area.The imaging of the newly acquired data in the middle and deep layers was drastically improved.It revealed the unconformity between the Sinian and Cambrian under the strong shielding layer.The study yielded new insights into the tectonic and sedimentary evolution of the Lower Paleozoic in the South Yellow Sea. 展开更多
关键词 illumination analysis acquisition parameters Laoshan Uplift strong shielding layer
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Insights into chemical-mechanical degradation and modification strategies of layered oxide cathode materials of sodium ion batteries 被引量:1
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作者 Tong Zhang Yuesen Li +4 位作者 Zihao Song Yaohui Huang Fei Li Shaoan Cheng Fujun Li 《Journal of Energy Chemistry》 2025年第4期294-315,共22页
Sodium-ion batteries(SIBs)have attracted significant attention in large-scale energy storage system because of their abundant sodium resource and cost-effectiveness.Layered oxide materials are particularly promising a... Sodium-ion batteries(SIBs)have attracted significant attention in large-scale energy storage system because of their abundant sodium resource and cost-effectiveness.Layered oxide materials are particularly promising as SIBs cathodes due to their high theoretical capacities and facile synthesis.However,their practical applications are hindered by the limitations in energy density and cycling stability.The comprehensive understanding of failure mechanisms within bulk structure and at the cathode/electrolyte interface of cathodes is still lacking.In this review,the issues related to bulk phase degradation and surface degradation,such as irreversible phase transitions,cation migration,transition metal dissolution,air/moisture instability,intergranular cracking,interfacial reactions,and reactive oxygen loss,are discussed.The latest advances and strategies to improve the stability of layered oxide cathodes and full cells are provided,as well as our perspectives on the future development of SIBs. 展开更多
关键词 layered oxide cathode Failure mechanism Intercalation chemistry Sodium-ion batteries Sustainability
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Achievable dual-strategy to stabilize Li-rich layered oxide interface by a one-step wet chemical reaction towards long oxygen redox reversibility 被引量:2
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作者 Bin He Yujie Dai +7 位作者 Shuai Jiang Dawei Chen Xilong Wang Jie Song Dan Xiao Qian Zhao Yan Meng Wei Feng 《Journal of Energy Chemistry》 2025年第2期120-131,I0004,共13页
Oxygen release and electrolyte decomposition under high voltage endlessly exacerbate interfacial ramifications and structu ral degradation of high energy-density Li-rich layered oxide(LLO),leading to voltage and capac... Oxygen release and electrolyte decomposition under high voltage endlessly exacerbate interfacial ramifications and structu ral degradation of high energy-density Li-rich layered oxide(LLO),leading to voltage and capacity fading.Herein,the dual-strategy of Cr,B complex coating and local gradient doping is simultaneously achieved on LLO surface by a one-step wet chemical reaction at room temperature.Density functional theory(DFT)calculations prove that stable B-O and Cr-O bonds through the local gradient doping can significantly reduce the high-energy O 2p states of interfacial lattice O,which is also effective for the near-surface lattice O,thus greatly stabilizing the LLO surface,Besides,differential electrochemical mass spectrometry(DEMS)indicates that the Cr_(x)B complex coating can adequately inhibit oxygen release and prevents the migration or dissolution of transition metal ions,including allowing speedy Li^(+)migration,The voltage and capacity fading of the modified cathode(LLO-C_(r)B)are adequately suppressed,which are benefited from the uniformly dense cathode electrolyte interface(CEI)composed of balanced organic/inorganic composition.Therefore,the specific capacity of LLO-CrB after 200 cycles at 1C is 209.3 mA h g^(-1)(with a retention rate of 95.1%).This dual-strategy through a one-step wet chemical reaction is expected to be applied in the design and development of other anionic redox cathode materials. 展开更多
关键词 Lithium-rich layered oxide cathode One-step wet chemical reaction Surface coating Local gradient doping Interfacial oxygen
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Exploring corrosion protection evolution of rust layer on high -Cr-content weathering bridge steel in simulated tropical marine atmosphere 被引量:1
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作者 Bingxiao Shi Lizhi Qin +5 位作者 Di Xu Xuequn Cheng Chao Liu Guowei Yang Feifan Xu Xiaogang Li 《International Journal of Minerals,Metallurgy and Materials》 2025年第8期1913-1928,共16页
The rust layer is a critical factor in determining the corrosion resistance performance of weathering bridge steel.Understanding the evolution mechanism of this rust layer is fundamental for the design and optimizatio... The rust layer is a critical factor in determining the corrosion resistance performance of weathering bridge steel.Understanding the evolution mechanism of this rust layer is fundamental for the design and optimization of such steel.This study investigates the evolu-tion of the rust layer on high-Cr-content weathering bridge steel,using an atmospheric corrosion monitoring(ACM)sensor and big data mining techniques in a simulated tropical marine atmosphere.Results reveal that the protective properties of the rust layer follow a peri-odic pattern of“ascending–constant”rather than a continuous ascending.Correlation analysis indicates that this phenomenon is attributed to the introduction of Cr,which promotes the formation of FeCr_(2)O_(4) in the rust layer.FeCr_(2)O_(4) helps prevent chloride ions from penetrating the rust layer,exerting a protective effect.These findings provide a strong scientific foundation for the design and improvement of new high-Cr-content weathering bridge steels. 展开更多
关键词 high-Cr-content steel rust layer bridge steel corrosion chloride corrosion corrosion rate
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Influence of surface layer slurry temperature on surface cracks and holes of ZTC4 titanium alloy by investment casting 被引量:1
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作者 Wei-dong Li Xu-na Shi 《China Foundry》 2025年第1期90-98,共9页
In this work,the influences of surface layer slurry at different temperatures(10℃,14℃,18℃,22℃)on wax patterns deformation,shrinkage,slurry coating characteristics,and the surface quality of the casting were invest... In this work,the influences of surface layer slurry at different temperatures(10℃,14℃,18℃,22℃)on wax patterns deformation,shrinkage,slurry coating characteristics,and the surface quality of the casting were investigated by using a single factor variable method.The surface morphologies of the shell molds produced by different temperatures of the surface(first)layer slurries were observed via electron microscopy.Furthermore,the microscopic composition of these shell molds was obtained by EDS,and the osmotic effect of the slurry on the wax patterns at different temperatures was also assessed by the PZ-200 Contact Angle detector.The forming reasons for the surface cracks and holes of thick and large ZTC4 titanium alloy by investment casting were analyzed.The experimental results show that the surface of the shell molds prepared by the surface layer slurry with a low temperature exhibits noticeable damage,which is mainly due to the poor coating performance and the serious expansion and contraction of wax pattern at low temperatures.The second layer shell material(SiO_(2),Al_(2)O_(3))immerses into the crack area of the surface layer,contacts and reacts with the molten titanium to form surface cracks and holes in the castings.With the increase of the temperature of surface layer slurry,the damage to the shell surface tends to weaken,and the composition of the shell molds'surface becomes more uniform with less impurities.The results show that the surface layer slurry at 22℃is evenly coated on the surface of the wax patterns with appropriate thickness,and there is no surface shell mold rupture caused by sliding slurry after sand leaching.The surface layer slurry temperature is consistent with the wax pattern temperature and the workshop temperature,so there is no damage of the surface layer shell caused by expansion and contraction.Therefore,the shell mold prepared by the surface layer slurry at this temperature has good integrity,isolating the contact between the low inert shell material and the titanium liquid effectively,and the ZTC4 titanium alloy cylinder casting prepared by this shell mold is smooth,without cracks and holes. 展开更多
关键词 titanium alloy surface layer slurry surface cracks surface holes investment casting
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Introducing strong metal–oxygen bonds to suppress the Jahn-Teller effect and enhance the structural stability of Ni/Co-free Mn-based layered oxide cathodes for potassium-ion batteries 被引量:1
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作者 Yicheng Lin Shaohua Luo +5 位作者 Pengyu Li Jun Cong Wei Zhao Lixiong Qian Qi Sun Shengxue Yan 《Journal of Energy Chemistry》 2025年第2期713-722,I0015,共11页
Mn-based layered oxides(KMO)have emerged as one of the promising low-cost cathodes for potassiumion batteries(PIBs).However,due to the multiple-phase transitions and the distortion in the MnO6structure induced by the ... Mn-based layered oxides(KMO)have emerged as one of the promising low-cost cathodes for potassiumion batteries(PIBs).However,due to the multiple-phase transitions and the distortion in the MnO6structure induced by the Jahn-Teller(JT)effect associated with Mn-ion,the cathode exhibits poor structural stability.Herein,we propose a strategy to enhance structural stability by introducing robust metal-oxygen(M-O)bonds,which can realize the pinning effect to constrain the distortion in the transition metal(TM)layer.Concurrently,all the elements employed have exceptionally high crustal abundance.As a proof of concept,the designed K_(0.5)Mn_(0.9)Mg_(0.025)Ti_(0.025)Al_(0.05)O_(2)cathode exhibited a discharge capacity of approximately 100 mA h g^(-1)at 20 mA g^(-1)with 79%capacity retention over 50 cycles,and 73%capacity retention over 200 cycles at 200 mA g^(-1),showcased much better battery performance than the designed cathode with less robust M-O bonds.The properties of the formed M-O bonds were investigated using theoretical calculations.The enhanced dynamics,mitigated JT effect,and improved structural stability were elucidated through the in-situ X-ray diffractometer(XRD),in-situ electrochemical impedance spectroscopy(EIS)(and distribution of relaxation times(DRT)method),and ex-situ X-ray absorption fine structure(XAFS)tests.This study holds substantial reference value for the future design of costeffective Mn-based layered cathodes for PIBs. 展开更多
关键词 layered oxide cathodes Potassium-ion batteries Robust M-O bonds Low-cost Jahn-Teller effect
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Study on the Carcass Layer Multi-Pass Roll Forming of Deepwater Flexible Risers 被引量:1
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作者 LU Hai-long LI Wen-bo +2 位作者 YAN Jun ZHANG Heng-rui YANG Zhi-xun 《China Ocean Engineering》 2025年第5期866-877,共12页
The carcass layer is the innermost structure of flexible marine risers and is responsible for resisting external pressure.It has an“S”section with a spiral interlocking feature.After the multi-pass roll forming of a... The carcass layer is the innermost structure of flexible marine risers and is responsible for resisting external pressure.It has an“S”section with a spiral interlocking feature.After the multi-pass roll forming of a flat steel strip,a carcass layer is formed by lock forming.During roll forming,the steel strip undergoes significant plastic deformation,and its local area accumulates residual stress owing to multiple loading and unloading cycles.These phenomena complicate the design and analysis of the carcass layer multi-pass roll forming(CLMRF)process and cause issues in the carcass layer during manufacturing,such as strip fracture and low forming quality.Thus,herein,CLMRF was investigated to clarify the stress distribution,and a parameter analysis was performed.First,the CLMRF process was designed on the basis of classical roll-forming design theory.Second,a finite element model was established,and CLMRF was simulated.Third,the distributions of the forming stress and residual stress of the strip during CLMRF were investigated.Finally,the influences of the strip thickness,roll gap,roll distance,and angular increment were investigated.The conclusions of this study can be used to provide technical guidance in the manufacturing of flexible risers. 展开更多
关键词 flexible riser carcass layer multi-pass roll forming finite element analysis residual stress
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Experimental and numerical analysis of polyurethane spraying materials as a compressible layer in deep soft rock tunnels 被引量:1
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作者 Haibo Wang Fuming Wang +3 位作者 Tongming Qu Jun Liu Lei Qin Chengchao Guo 《Journal of Rock Mechanics and Geotechnical Engineering》 2025年第5期3018-3034,共17页
Polyurethane foam,when used as a compressible layer in deep soft rock tunnels,offers a feasible solution to reduce the support pressure on the secondary lining.The foam spraying method using sprayed polyurethane mater... Polyurethane foam,when used as a compressible layer in deep soft rock tunnels,offers a feasible solution to reduce the support pressure on the secondary lining.The foam spraying method using sprayed polyurethane material is convenient for engineering applications;however,the compressive behaviour and feasibility of sprayed polyurethane material as a compressible layer remain unclear.To address this gap,this study conducts uniaxial compression tests and scanning electron microscope(SEM)tests to investigate the compressive behaviour of the rigid foams fabricated from a self-developed polyurethane spray material.A peridynamics model for the composite lining with a polyurethane compressible layer is then established.After validating the proposed method by comparison with two tests,a parametric study is carried out to investigate the damage evolution of the composite lining with a polyurethane compressible layer under various combinations of large deformations and compressible layer parameters.The results indicate that the polyurethane compressible layer effectively reduces the radial deformation and damage index of the secondary lining while increasing the damage susceptibility of the primary lining.The thickness of the polyurethane compressible layer significantly influences the prevention effect of large deformation-induced damage to the secondary lining within the density range of 50e100 kg/m^(3).In accordance with the experimental and simulation results,a simple,yet reasonable and convenient approach for determining the key parameters of the polyurethane compressible layer is proposed,along with a classification scheme for the parameters of the polyurethane compressible layer. 展开更多
关键词 Polyurethane compressible layer Deep soft rock tunnel Compressive behaviour PERIDYNAMICS Damage evolution
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An epitaxial surface heterostructure anchoring approach for high-performance Ni-rich layered cathodes 被引量:1
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作者 Weili Sun Qingqing Zhang +8 位作者 Xiao-Guang Sun Cheng Li Yongsheng Huang Wenyu Mu Junbin Tan Jianlin Li Kai Liu Shijian Zheng Sheng Dai 《Journal of Energy Chemistry》 2025年第6期158-169,I0005,共13页
Nickel-rich(Ni≥90%)layered oxides materials have emerged as a promising candidate for nextgeneration high-energy-density lithium-ion batteries(LIBs).However,their widespread application is hindered by structural fati... Nickel-rich(Ni≥90%)layered oxides materials have emerged as a promising candidate for nextgeneration high-energy-density lithium-ion batteries(LIBs).However,their widespread application is hindered by structural fatigue and lattice oxygen loss.In this work,an epitaxial surface rock-salt nanolayer is successfully developed on the LiNi_(0.9)Co_(0.1)O_(2)sub-surface via heteroatom anchoring utilizing high-valence element molybdenum modification.This in-situ formed conformal buffer phase with a thickness of 1.2 nm effectively suppresses the continuous interphase side-reactions,and thus maintains the excellent structure integrity at high voltage.Furthermore,theoretical calculations indicate that the lattice oxygen reversibility in the anion framework of the optimized sample is obviously enhanced due to the higher content of O 2p states near the Fermi level than that of the pristine one.Meanwhile,the stronger Mo-O bond further reduces cell volume alteration,which improves the bulk structure stability of modified materials.Besides,the detailed charge compensation mechanism suggests that the average oxidation state of Ni is reduced,which induces more active Li+participating in the redox reactions,boosting the cell energy density.As a result,the uniquely designed cathode materials exhibit an extraordinary discharge capacity of 245.4 mAh g^(-1)at 0.1 C,remarkable rate performance of 169.3 mAh g^(-1)at 10 C at 4.5 V,and a high capacity retention of 70.5% after 1000 cycles in full cells at a high cut-off voltage of 4.4 V.This strategy provides an valuable insight into constructing distinctive heterostructure on highperformance Ni-rich layered cathodes for LIBs. 展开更多
关键词 Ni-rich layered oxides Rock-salt nanolayer Heteroatom anchoring Lattice oxygen reversibility Lithium-ion batteries
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