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Hard-carbon hybrid Li-ion/metal anode enabled by preferred mesoporous uniform lithium growth mechanism
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作者 Fang Yan Yan Liu +11 位作者 Yuan Li Yan Wang Zicen Deng Meng Li Zhenwei Zhu Aohan Zhou Ting Li Jingyi Qiu Gaoping Cao Shaobo Huang Biyan Wang Hao Zhang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第1期252-259,I0006,共9页
To achieve high energy density in lithium batteries,the construction of lithium-ion/metal hybrid anodes is a promising strategy.In particular,because of the anisotropy of graphite,hybrid anode formed by graphite/Li me... To achieve high energy density in lithium batteries,the construction of lithium-ion/metal hybrid anodes is a promising strategy.In particular,because of the anisotropy of graphite,hybrid anode formed by graphite/Li metal has low transport kinetics and is easy to causes the growth of lithium dendrites and accumulation of dead Li,which seriously affects the cycle life of batteries and even causes safety problems.Here,by comparing graphite with two types of hard carbon,it was found that hybrid anode formed by hard carbon and lithium metal,possessing more disordered mesoporous structure and lithophilic groups,presents better performance.Results indicate that the mesoporous structure provides abundant active site and storage space for dead lithium.With the synergistic effect of this structure and lithophilic functional groups(–COOH),the reversibility of hard carbon/lithium metal hybrid anode is maintained,promoting uniform deposition of lithium metal and alleviating formation of lithium dendrites.The hybrid anode maintains a 99.5%Coulombic efficiency(CE)after 260 cycles at a specific capacity of 500 m Ah/g.This work provides new insights into the hybrid anodes formed by carbon-based materials and lithium metal with high specific energy and fast charging ability. 展开更多
关键词 Hard carbon/Li metal hybrid anode mesoporous structure Surface oxygen functional group Fast charging Lithium batteries
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Core-shell mesoporous carbon hollow spheres as Se hosts for advanced Al-Se batteries
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作者 Haiping Lei Tianwei Wei +1 位作者 Jiguo Tu Shuqiang Jiao 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2024年第5期899-906,共8页
Incorporating a selenium(Se)positive electrode into aluminum(Al)-ion batteries is an effective strategy for improving the overall battery performance.However,the cycling stability of Se positive electrodes has challen... Incorporating a selenium(Se)positive electrode into aluminum(Al)-ion batteries is an effective strategy for improving the overall battery performance.However,the cycling stability of Se positive electrodes has challenges due to the dissolution of intermediate reaction products.In this work,we aim to harness the advantages of Se while reducing its limitations by preparing a core-shell mesoporous carbon hollow sphere with a titanium nitride(C@TiN)host to load 63.9wt%Se as the positive electrode material for Al-Se batteries.Using the physical and chemical confinement offered by the hollow mesoporous carbon and TiN,the obtained core-shell mesoporous carbon hollow spheres coated with Se(Se@C@TiN)display superior utilization of the active material and remarkable cycling stability.As a result,Al-Se batteries equipped with the as-prepared Se@C@TiN composite positive electrodes show an initial discharge specific capacity of 377 mAh·g^(-1)at a current density of 1000 mA·g^(-1)while maintaining a discharge specific capacity of 86.0 mAh·g^(-1)over 200 cycles.This improved cycling performance is ascribed to the high electrical conductivity of the core-shell mesoporous carbon hollow spheres and the unique three-dimensional hierarchical architecture of Se@C@TiN. 展开更多
关键词 aluminum-selenium batteries intermediate products core-shell mesoporous carbon hollow sphere cycling performance
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Enhanced activation of peroxymonosulfate by Fe/N co-doped ordered mesoporous carbon with dual active sites for efficient removal of m-cresol
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作者 Donghui Li Wenzhe Wu +6 位作者 Xue Ren Xixi Zhao Hongbing Song Meng Xiao Quanhong Zhu Hengjun Gai Tingting Huang 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2024年第1期130-144,共15页
The novel Fe-N co-doped ordered mesoporous carbon with high catalytic activity in m-cresol removal was prepared by urea-assisted impregnation and simple pyrolysis method.During the preparation of the Fe-NC catalyst,th... The novel Fe-N co-doped ordered mesoporous carbon with high catalytic activity in m-cresol removal was prepared by urea-assisted impregnation and simple pyrolysis method.During the preparation of the Fe-NC catalyst,the complexation of N elements in urea could anchor Fe,and the formation of C3N4during urea pyrolysis could also prevent migration and aggregation of Fe species,which jointly improve the dispersion and stability of Fe.The FeN4sites and highly dispersed Fe nanoparticles synergistically trigger the dual-site peroxymonosulfate (PMS) activation for highly efficient m-cresol degradation,while the ordered mesoporous structure of the catalyst could improve the mass transfer rate of the catalytic process,which together promote catalytic degradation of m-cresol by PMS activation.Reactive oxygen species (ROS) analytic experiments demonstrate that the system degrades m-cresol by free radical pathway mainly based on SO_(4)^(-)·and·OH,and partially based on·OH as the active components,and a possible PMS activation mechanism by 5Fe-50 for m-cresol degradation was proposed.This study can provide theoretical guidance for the preparation of efficient and stable catalysts for the degradation of organic pollutants by activated PMS. 展开更多
关键词 Degradation PEROXYMONOSULFATE Fe(II)/Fe(III)/FeN4 Ordered mesopores carbon Catalyst Radical
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Mesoporous titanium-aluminosilicate as an efficient catalyst for selective oxidation of cyclohexene at mild reaction conditions
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作者 Jitendra Diwakar Selvamani Arumugam +2 位作者 Bhavna Saini Anup Prakash Tathod Nagabhatla Viswanadham 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2023年第3期257-265,共9页
Mesoporous titanium containing alumino-silicate materials with various titanium/silicon(Ti/Si) ratio(AlSi-Ti(n);n = Ti/Si mole ratio) have been successfully synthesized by a novel single-step sodium(Na)-free method, f... Mesoporous titanium containing alumino-silicate materials with various titanium/silicon(Ti/Si) ratio(AlSi-Ti(n);n = Ti/Si mole ratio) have been successfully synthesized by a novel single-step sodium(Na)-free method, for the first time. The obtained characterization results of the prepared materials reveal that in-situ addition of Ti into AlSi shows ordered mesoporous structure along with uniformly dispersed Ti species in +4 and +3 oxidation states suitable for selective oxidation of allylic C—H bond. The prepared mesoporouse Ti-AlSi(n) samples exhibited excellent activity in the oxidation of cyclohexene with 100%conversion and 100% selectivity to ketone-alcohol(KA) oil(cyclohex-2-en-1-ol and 2-cyclohexen-1-one) at low temperature and reaction time(35℃ and 30 min reaction time). This study suggests that AlSi-Ti(0.05) material can be a promising catalyst for the selective oxidation of cyclohexene under mild reaction conditions. 展开更多
关键词 CYCLOHEXENE Allylic oxidation KA oil mesoporous AlSi Mild conditions
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An AuNPs/Mesoporous NiO/Nickel Foam Nanocomposite as a Miniaturized Electrode for Heavy Metal Detection in Groundwater
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作者 Boyuan Xue Qian Yang +4 位作者 Kaidong Xia Zhihong Li George Y.Chen Dayi Zhang Xiaohong Zhou 《Engineering》 SCIE EI CAS CSCD 2023年第8期199-208,共10页
Heavy metals,notably Pb2+and Cu^(2+),are some of the most persistent contaminants found in groundwater.Frequent monitoring of these metals,which relies on efficient,sensitive,cost-effective,and reliable methods,is a n... Heavy metals,notably Pb2+and Cu^(2+),are some of the most persistent contaminants found in groundwater.Frequent monitoring of these metals,which relies on efficient,sensitive,cost-effective,and reliable methods,is a necessity.We present a nanocomposite-based miniaturized electrode for the concurrent measurement of Pb2+and Cu^(2+)by exploiting the electroanalytical technique of square wave voltammetry.We also propose a facile in situ hydrothermal calcination method to directly grow binder-free mesoporous Ni O on a three-dimensional nickel foam,which is then electrochemically seeded with gold nanoparticles(Au NPs).The meticulous design of a low-barrier Ohmic contact between mesoporous Ni O and Au NPs facilitates target-mediated nanochannel-confined electron transfer within mesoporous Ni O.As a result,the heavy metals Pb2+(0.020 mg.L^(-1)detection limit;2.0–16.0 mg.L^(-1)detection range)and Cu^(2+)(0.013 mg.L^(-1)detection limit;0.4–12.8 mg.L^(-1)detection range)can be detected simultaneously with high precision.Furthermore,other heavy metal ions and common interfering ions found in groundwater showed negligible impacts on the electrode’s performance,and the recovery rate of groundwater samples varied between 96.3%±2.1%and 109.4%±0.6%.The compactness,flexible shape,low power consumption,and ability to remotely operate our electrode pave the way for onsite detection of heavy metals in groundwater,thereby demonstrating the potential to revolutionize the field of environmental monitoring. 展开更多
关键词 AuNPs mesoporous niO Miniaturized electrode Heavy metal ions GROUNDWATER Square wave voltammetry
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Mesoporous poly(ionic liquid)s with dual active sites for highly efficient CO_(2)conversion
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作者 Yawen Fu Yanan Xu +11 位作者 Zepeng Zeng Abdul-Rauf Ibrahim Jin Yang Shuliang Yang Yaqiang Xie Yanzhen Hong Yuzhong Su Hongtao Wang Yanliang Wang Li Peng Jun Li Wendy L.Queen 《Green Energy & Environment》 SCIE EI CSCD 2023年第2期478-486,共9页
Atmospheric CO_(2)concentrations are soaring due to the continued use of fossil fuels in energy production,an anthropogenic activity that is playing a leading role in global warming.Thus,research aimed at the capture ... Atmospheric CO_(2)concentrations are soaring due to the continued use of fossil fuels in energy production,an anthropogenic activity that is playing a leading role in global warming.Thus,research aimed at the capture and conversion of CO_(2)into value-added products,such as cyclic carbonates,is booming.While CO_(2)is an abundant,cheap,non-toxic,and readily accessible Cl feedstock,its thermodynamic stability necessitates the development of highly efficient catalysts that are able to promote chemical reactions under mild conditions.In this work,a novel mesoporous poly(ionic liquid)with dual active sites was synthesized through a facile method that involves co-polymerization,post-synthetic metalation,and supercritical CO_(2)drying.Due to a high density of nucleophilic and electrophilic sites,the as-prepared poly(ionic liquid),denoted as P2D-4BrBQA-Zn,offers excellent performance in a CO_(2)cycloaddition reaction using epichlorohydrin as the substrate(98.9%conversion and 96.9%selectivity).Moreover the reaction is carried out under mild,solvent-free,and additive-free conditions.Notably,P2D-4BrBQA-Zn also efficiently promotes the conversion of various other epoxide substrates into cyclic carbonates.Overall,the catalyst is found to have excellent substrate compatibility,stability,and recyclability. 展开更多
关键词 mesoporous poly(ionic liquid) Nucleophile/electrophilic sites Carbon dioxide cycloaddition Heterogeneous catalysis Supercritical CO_(2)drying
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Ni/ZrO_(2)-SO_(4)^(2-)催化剂的制备及其催化甲烷与CO_(2)制乙酸性能
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作者 任行涛 吴俊 +3 位作者 贾志光 丁靖 万辉 管国锋 《石油化工》 CAS CSCD 北大核心 2024年第4期489-495,共7页
以Zr(NO_(3))4·5H_(2)O和Ni(NO_(3))2·6H_(2)O为原料、(NH4)2CO_(3)为沉淀剂,采用溶胶凝胶-硫酸酸化两步法制备了Ni/ZrO_(2)-SO_(4)^(2-)催化剂,采用XRD,FTIR,SEM,N_(2)吸附-脱附,H_(2)-TPR,NH3-TPD等方法对Ni/ZrO_(2)-SO_(4)... 以Zr(NO_(3))4·5H_(2)O和Ni(NO_(3))2·6H_(2)O为原料、(NH4)2CO_(3)为沉淀剂,采用溶胶凝胶-硫酸酸化两步法制备了Ni/ZrO_(2)-SO_(4)^(2-)催化剂,采用XRD,FTIR,SEM,N_(2)吸附-脱附,H_(2)-TPR,NH3-TPD等方法对Ni/ZrO_(2)-SO_(4)^(2-)催化剂进行表征,考察了Ni的引入方式对催化剂的结构和性能的影响。实验结果表明,与共沉淀方式引入Ni制备的Ni/ZrO_(2)-SO_(4)^(2-)催化剂相比,采用溶胶凝胶方式引入Ni制备的催化剂的四方相ZrO_(2)占比更高,表面酸量更多,且具有良好的热稳定性和较强的L酸性;采用溶胶凝胶方式引入Ni制备的Ni/ZrO_(2)-SO_(4)^(2-)催化剂的乙酸生成量明显优于共沉淀方式引入Ni制备的Ni/ZrO_(2)-SO_(4)^(2-)催化剂。四方相ZrO_(2)、酸性位点和过渡金属Ni之间的协同作用促进了甲烷与CO_(2)直接反应合成乙酸。 展开更多
关键词 ni/ZrO_(2)-SO_(4)^(2-) 溶胶-凝胶法 甲烷 乙酸 合成
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晶粒尺寸对界面含Cr-O-C防黏层Cu/Ni复合体拉伸性能的影响
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作者 杨光 胡正晨 +1 位作者 惠越 陈菊 《中国有色金属学报》 EI CAS CSCD 北大核心 2024年第5期1599-1610,共12页
通过分子动力学方法研究含Cr-O-C防黏层的具有不同晶粒尺寸的Cu/Ni复合体的拉伸变形。结果表明:当Cu/Ni复合体的晶粒尺寸大于12 nm时,不论界面不含Cr、O和C原子或含有定量Cr、O和C原子,复合体的屈服强度随着晶粒尺寸的减小呈现增大趋势... 通过分子动力学方法研究含Cr-O-C防黏层的具有不同晶粒尺寸的Cu/Ni复合体的拉伸变形。结果表明:当Cu/Ni复合体的晶粒尺寸大于12 nm时,不论界面不含Cr、O和C原子或含有定量Cr、O和C原子,复合体的屈服强度随着晶粒尺寸的减小呈现增大趋势,符合细晶强化规律,晶粒塑性变形主要受晶体内部的位错滑移控制,最大应力增加9.52%;当晶粒尺寸小于12 nm时,由于晶界所占比例的增加,拉伸过程的塑性变形更多受晶界变形控制,屈服强度下降。Cr-O-C界面弱化了Cu/Ni复合体的强度,随着界面上Cr、O和C原子数量的增加,Cu/Ni复合体的抗拉强度随之降低,最大应力下降56.40%,Cu/Ni复合体内部的位错数量也随之降低,转移到Ni表面的Cu原子数量随之减少。 展开更多
关键词 分子动力学 晶粒尺寸 Cu/ni复合体 Cr-O-C防黏层 拉伸性能
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NiW/介孔Y型分子筛催化剂上菲加氢裂化过程研究
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作者 唐忠利 张满 +3 位作者 陈嘉诺 王希涛 张东辉 李文彬 《天津大学学报(自然科学与工程技术版)》 EI CAS CSCD 北大核心 2024年第2期155-164,共10页
为了实现对煤焦油中副产物多环芳烃菲的有效利用,采用等体积浸渍法制备了介孔Y型分子筛负载金属Ni、W催化剂,利用XRD、H2-TPR、BET、SEM-EDS对制备的催化剂进行表征分析,并在固定床反应器中考察催化剂上菲加氢裂化性能,探讨了反应过程... 为了实现对煤焦油中副产物多环芳烃菲的有效利用,采用等体积浸渍法制备了介孔Y型分子筛负载金属Ni、W催化剂,利用XRD、H2-TPR、BET、SEM-EDS对制备的催化剂进行表征分析,并在固定床反应器中考察催化剂上菲加氢裂化性能,探讨了反应过程中空速、气液比、温度、压力对催化剂积碳率、菲的转化率、液体收率及产物分布的影响.研究表明,增加空速和气液比会降低催化剂的积碳率,过高的反应温度会导致催化剂快速地积碳失活.通过定时采样对裂解产物分析得到菲在催化剂上的裂解率变化情况,同时也能反映出催化剂的稳定性.对反应过程条件优化得到的最优条件为:空速6 h^(-1),气液比750,温度400℃,压力6.5 MPa.此时,菲的裂解率可以稳定在99%以上,同时催化剂保持较高的稳定性,在4 h内未出现活性降低. 展开更多
关键词 介孔Y型分子筛 催化剂 加氢裂化 产物分布
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基于NI myDAQ的线性动态电路参数测量
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作者 沈瑶 高昕悦 +1 位作者 孙敏 邹建龙 《中国现代教育装备》 2024年第1期128-130,134,共4页
动态电路在实际生活中应用广泛,精确测量动态电路的参数具有工程意义。采用线上线下混合式教学模式、仿真和实测相融合的实验方法,利用NI myDAQ虚拟实验平台测量动态电路参数,开拓了学生的思维,提高了学生的综合实验能力。
关键词 动态电路 ni myDAQ 时间常数 阻尼常数
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基于响应面法的Ni60/WC涂层表面织构皮秒分束工艺参数预测研究
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作者 钟林 伍小龙 +8 位作者 王国荣 罗敏敏 王紫萱 魏刚 王杰 冷晓栋 曾秦涛 张文超 敬佳佳 《表面技术》 EI CAS CSCD 北大核心 2024年第9期167-179,共13页
目的实现六分束激光在Ni60/WC涂层表面烧蚀目标织构激光加工工艺参数的精确选择。方法基于CCD响应面法,设计在不同的激光工艺参数下对Ni60/WC涂层表面进行织构烧蚀试验,以激光频率、扫描次数、扫描速度为影响因素,以圆凹坑织构直径、深... 目的实现六分束激光在Ni60/WC涂层表面烧蚀目标织构激光加工工艺参数的精确选择。方法基于CCD响应面法,设计在不同的激光工艺参数下对Ni60/WC涂层表面进行织构烧蚀试验,以激光频率、扫描次数、扫描速度为影响因素,以圆凹坑织构直径、深度及由其直径和深度综合加权所得的综合目标为响应目标,建立目标织构所需激光工艺参数的预测模型,以织构直径、深度及综合目标作为优化条件,对预测模型进行实验验证。结果扫描次数对织构直径的影响最显著,单个脉冲光斑上所聚集的能量大小是影响织构直径误差的关键因素。对织构深度影响最显著为扫描次数和频率,织构深度与扫描次数、频率呈正相关,不同因素间的交互作用是影响织构加工结果的关键。通过对预测模型所优选的参数进行实验验证发现,以织构直径和深度、综合目标建立的预测模型优选工艺参数所加工圆凹坑织构的质量评价指标与其预测指标的误差率分别为19.37%、3.57%。功率为6 W时,六分束激光加工最优工艺参数为速度5500 mm/s、频率400 kHz、扫描2次。结论通过综合目标建立的Ni60/WC涂层表面圆凹坑织构六分束激光加工参数优选预测模型精确程度较高,能够实现Ni60/WC涂层表面加工所需织构激光参数的准确预测,为涂层表面织构加工激光参数精确选择提供了理论依据。 展开更多
关键词 皮秒激光 分束激光加工 ni60/WC 圆凹坑织构 CCD响应面法 参数预测
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微量掺杂Mn改性Ni/ZSM-5用于等离子催化甲烷部分重整制氢
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作者 李俊 付增华 +2 位作者 付和 于海峰 刘速 《工业催化》 CAS 2024年第2期54-58,共5页
使用微量的Mn元素对浸渍法制备的Ni/ZSM-5催化剂进行了掺杂改性,并将其应用于低温等离子体催化甲烷重整制氢的反应中。研究结果表明,掺杂后的双金属催化剂可以有效提升甲烷转化率。同时利用XRD、EDS和H_(2)-TPR等技术手段对催化剂进行... 使用微量的Mn元素对浸渍法制备的Ni/ZSM-5催化剂进行了掺杂改性,并将其应用于低温等离子体催化甲烷重整制氢的反应中。研究结果表明,掺杂后的双金属催化剂可以有效提升甲烷转化率。同时利用XRD、EDS和H_(2)-TPR等技术手段对催化剂进行了表征,表征结果表明,催化剂改性后金属分散度得到改善、氧化还原能力提升。活性评价证实了改性催化剂在介质阻挡放电等离子中的制氢活性得到增强。 展开更多
关键词 催化化学 掺杂改性 ni/ZSM-5 等离子 甲烷 制氢
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单脉冲电沉积Ni-纳米TiC-氧化石墨烯复合镀层结构及磨损性能
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作者 任鑫 王浩鑫 +3 位作者 孙涛 王港 孟超 邱星武 《材料导报》 EI CAS CSCD 北大核心 2024年第11期209-215,共7页
本研究利用单脉冲电沉积技术在Q235钢表面制备了一种新型的Ni基减摩耐磨三元复合镀层,首先通过研究氧化石墨烯(GO)浓度对Ni-纳米TiC基复合镀层形貌、镀速及硬度的影响确定了最佳的GO添加量,然后利用X射线衍射仪(XRD)、拉曼光谱仪(Raman)... 本研究利用单脉冲电沉积技术在Q235钢表面制备了一种新型的Ni基减摩耐磨三元复合镀层,首先通过研究氧化石墨烯(GO)浓度对Ni-纳米TiC基复合镀层形貌、镀速及硬度的影响确定了最佳的GO添加量,然后利用X射线衍射仪(XRD)、拉曼光谱仪(Raman)和X射线光电子能谱仪(XPS)等设备对三元复合镀层的结构进行了表征。最后与Ni-纳米TiC复合镀层等进行了对比,研究了三元复合镀层的硬度及耐磨损性能。结果表明:镀液中GO的最佳质量浓度为200 mg/L。此时,Ni-纳米TiC-GO复合镀层的表面均匀致密,粗糙度值Ra=3.087μm。XRD和拉曼光谱等分析结果表明纳米TiC和GO成功复合到Ni基镀层之中。Ni-纳米TiC-GO复合镀层的硬度为726.3HV,约是Ni-纳米TiC复合镀层(463.8HV)的1.5倍。Ni-纳米TiC-GO复合镀层的平均摩擦系数为0.108,相比于Ni-纳米TiC复合镀层(0.285),其具备更好的减摩耐磨性能。 展开更多
关键词 单脉冲 氧化石墨烯 ni基复合镀层 微观结构 耐磨损性能
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超临界汽轮机低压转子0Cr17Ni4Cu4Nb钢叶片断裂原因
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作者 张涛 房军 +2 位作者 李为刚 吕磊 周宏杰 《理化检验(物理分册)》 CAS 2024年第3期52-55,共4页
某超临界汽轮机低压转子次末级0Cr17Ni4Cu4Nb钢叶片发生断裂。采用宏观观察、化学成分分析、扫描电镜及能谱分析、金相检验、硬度测试等方法分析了叶片断裂的原因。结果表明:在灵活性运行工况下,机组承受的载荷频繁发生变化,造成低压缸... 某超临界汽轮机低压转子次末级0Cr17Ni4Cu4Nb钢叶片发生断裂。采用宏观观察、化学成分分析、扫描电镜及能谱分析、金相检验、硬度测试等方法分析了叶片断裂的原因。结果表明:在灵活性运行工况下,机组承受的载荷频繁发生变化,造成低压缸进汽量和汽流频繁大幅波动,导致长叶型的次末级叶片在运行过程中发生颤振;次末级叶片的叶根尺寸与叶根槽不匹配,使叶根松动、叶片晃动,加剧了叶片的颤振;在两种因素共同作用下,机组出汽侧近叶根的应力集中区域萌生了裂纹,在叶片颤振产生的交变应力作用下,裂纹以疲劳的形式不断扩展,最终导致叶片整体断裂。 展开更多
关键词 0Cr17ni4Cu4Nb钢叶片 疲劳断裂 颤振 显微组织
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热处理对9Ni钢焊接接头低温性能的影响
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作者 彭清和 颜文煅 +1 位作者 周著学 林志灿 《山西大同大学学报(自然科学版)》 2024年第1期96-99,共4页
针对天然气罐用9Ni钢及其焊接接头在低温条件下塑韧性恶化问题,研究9Ni钢经手工电弧焊后,调质热处理(QT)和两相区热处理(QLT)工艺对焊接接头低温性能的影响规律。结果表明:QT热处理优化方案为淬火温度800℃、回火温度570℃,其热处理过... 针对天然气罐用9Ni钢及其焊接接头在低温条件下塑韧性恶化问题,研究9Ni钢经手工电弧焊后,调质热处理(QT)和两相区热处理(QLT)工艺对焊接接头低温性能的影响规律。结果表明:QT热处理优化方案为淬火温度800℃、回火温度570℃,其热处理过程淬火温度对9Ni钢低温性能的作用主要是由裂纹扩展功完成,回火温度对9 Ni钢接头低温性能的作用是由裂纹形成功来完成;QLT优化方案为淬火温度800℃、中间淬火温度670℃、回火温度570℃,其淬火温度对9Ni钢低温性能影响很少,中间淬火温度对9Ni钢材焊接接头低温性能影响主要由裂纹扩展功完成,回火温度对9Ni钢接头低温性能的作用主要是由裂纹扩展功完成。 展开更多
关键词 9ni 焊接接头 调质热处理 两相区热处理 低温性能
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Fe对Ni-Mn-Ga合金微丝形状记忆效应的影响
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作者 刘艳芬 李爽 +2 位作者 郎子锐 马梓轩 刘晓华 《材料工程》 EI CAS CSCD 北大核心 2024年第3期182-191,共10页
以Ni-Mn-Ga合金微丝为基础分析Fe元素掺杂前后对合金微丝的形状记忆效应的变化。用真空磁控钨极电弧熔炼炉制备Ni-Mn-Ga-Fe合金,并用高真空精密熔体抽拉设备将母合金制备成微丝。采用EDS能谱分析仪、DSC差示扫描量热分析仪、XRD、DMA动... 以Ni-Mn-Ga合金微丝为基础分析Fe元素掺杂前后对合金微丝的形状记忆效应的变化。用真空磁控钨极电弧熔炼炉制备Ni-Mn-Ga-Fe合金,并用高真空精密熔体抽拉设备将母合金制备成微丝。采用EDS能谱分析仪、DSC差示扫描量热分析仪、XRD、DMA动态机械分析仪,研究Fe元素掺杂Ni-Mn-Ga合金微丝后的物相、马氏体相变行为、微丝的形状记忆效应。结果表明,Ni-Mn-Ga-Fe合金微丝显示的是四方结构马氏体相和面心立方结构奥氏体相的混合相,对微丝采用步进式阶梯有序化热处理,有序化热处理能有效降低微丝内部缺陷,释放内应力,细化微丝内部晶粒,收缩晶格体积,马氏体孪晶界面更加平直,孪晶面更易移动,微丝的伸长率提高。在258 K下对制备态Ni-Mn-Ga-Fe合金微丝进行单程形状记忆的测试,拉伸到350 MPa后卸载到0 MPa,随后将微丝升温到奥氏体态后,应变恢复率为78.75%,而在289K对有序化热处理态Ni-Mn-Ga-Fe合金微丝进行单程形状记忆测试,应变恢复率达到100%。在126 MPa和240 MPa下分别对有序化热处理态三元Ni-Mn-Ga合金微丝和Ni-Mn-Ga-Fe合金微丝进行恒应力拉伸,两种微丝双程形状恢复能力均接近100%,但Ni-Mn-Ga-Fe合金微丝在发生形变时的弹性应变储能略高于Ni-Mn-Ga合金微丝。Fe的加入使得到的合金微丝的力学性能高于传统三元形状记忆合金微丝;制备态下和热处理态的Ni-Mn-Ga-Fe合金微丝的马氏体相变温度较Ni-Mn-Ga合金微丝分别提高6.0 K和11.5 K,热滞分别降低6.7 K和1.5 K。 展开更多
关键词 形状记忆合金 ni-Mn-Ga铁磁合金微丝 马氏体相变 形状记忆效应
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碳笼负载镍基磁性催化剂Ni@Cage-C的制备与性能研究
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作者 廖立 宋谦 +2 位作者 龙沁 赖雪飞 邓怡 《化工设计通讯》 CAS 2024年第2期104-106,共3页
以自然结晶法制备的ZIF-67为前驱体,采用包裹-刻蚀-碳化策略,得到大小均匀的纳米碳笼(Cage-C),再于液相条件下以碳笼为载体负载上活性金属镍(Ni),成功制备了非贵金属磁性催化剂Ni@Cage-C,并应用于对硝基苯酚催化还原反应以考察其多相催... 以自然结晶法制备的ZIF-67为前驱体,采用包裹-刻蚀-碳化策略,得到大小均匀的纳米碳笼(Cage-C),再于液相条件下以碳笼为载体负载上活性金属镍(Ni),成功制备了非贵金属磁性催化剂Ni@Cage-C,并应用于对硝基苯酚催化还原反应以考察其多相催化性能。结果表明:优化条件下制备的Ni@Cage-C催化剂为碳笼包裹单质镍结构,其平均颗粒大小为550 nm;将Ni@Cage-C用于对硝基苯酚催化还原反应时,催化性能明显优于参照催化剂雷尼镍(Raney-Ni)。质量反应速率常数kM为6.11 mg^(-1)·min^(-1),催化效率达到98.87%,循环反应十圈后活性仍高于初始活性的85%。 展开更多
关键词 碳笼 磁性催化剂 ni@Cage-C 对硝基苯酚
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9Ni钢手工电弧焊焊接接头组织与性能研究
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作者 彭清和 颜文煅 许剑枫 《机电产品开发与创新》 2024年第1期83-87,共5页
针对运输船用9Ni钢,研究手工电弧焊焊接工艺下9Ni钢焊接接头的组织与理化性能。组织分析表明,手工电弧焊下9Ni钢的焊缝组织由奥氏体和析出相组成,结晶形态为规则树枝状晶,且方向性较明显;焊接热影响区组织由板条马氏体组成,焊接粗晶区... 针对运输船用9Ni钢,研究手工电弧焊焊接工艺下9Ni钢焊接接头的组织与理化性能。组织分析表明,手工电弧焊下9Ni钢的焊缝组织由奥氏体和析出相组成,结晶形态为规则树枝状晶,且方向性较明显;焊接热影响区组织由板条马氏体组成,焊接粗晶区板条马氏体组织分布较均匀,偏析较分散,强韧性和机械性能不错。化学成分分析表明,9Ni钢板焊缝的化学成分与母材匹配性良好。焊接理化性能试验表明,手工电弧焊下焊接接头的低温韧性等性能满足标准要求,结合理论性能及断口分析,手工电弧焊焊接接头的低温韧性表现良好。 展开更多
关键词 9ni 手工电弧焊 组织 性能
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Template-free synthesis of core-shell Fe_(3)O_(4)@MoS_(2)@mesoporous TiO_(2) magnetic photocatalyst for wastewater treatment 被引量:3
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作者 Jingshu Yuan Yao Zhang +3 位作者 Xiaoyan Zhang Liang Zhao Hanlin Shen Shengen Zhang 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2023年第1期177-191,共15页
TiO_(2)is the dominant and most widely researched photocatalyst for environmental remediation,however,the drawbacks,such as only responding to UV light(<5%of sunlight),low charge separation efficiency,and difficult... TiO_(2)is the dominant and most widely researched photocatalyst for environmental remediation,however,the drawbacks,such as only responding to UV light(<5%of sunlight),low charge separation efficiency,and difficulties in recycling,have severely hindered its practical application.Herein,we synthesized magnetically separable Fe_(3)O_(4)@MoS_(2)@mesoporous TiO_(2)(FMmT)photocatalysts via a simple,green,and template-free solvothermal method combined with ultrasonic hydrolysis.It is found that FMmT possesses a high specific surface area(55.09 m2·g−1),enhanced visible-light responsiveness(~521 nm),and remarkable photogenerated charge separation efficiency.In addition,the photocatalytic degradation efficiencies of FMmT for methylene blue(MB),rhodamine B(RhB),and tetracycline(TC)are 99.4%,98.5%,and 89.3%within 300 min,respectively.The corresponding degradation rates are 4.5,4.3,and 3.1 times higher than those of pure TiO_(2)separately.Owing to the high saturation magnetization(43.1 A·m^(2)·kg^(−1)),FMmT can achieve effective recycling with an applied magnetic field.The improved photocatalytic activity is closely related to the effective transport of photogenerated electrons by the active interlayer MoS_(2) and the electron–hole separation caused by the MoS_(2)@TiO_(2)heterojunction.Meanwhile,the excellent light-harvesting ability and abundant reactive sites of the mesoporous TiO_(2)shell further boost the photocatalytic efficiency of FMmT.This work provides a new approach and some experimental basis for the design and performance improvement of magnetic photocatalysts by innovatively incorporating MoS2 as the active interlayer and integrating it with a mesoporous shell. 展开更多
关键词 CORE-SHELL MoS2 mesoporous TiO2 photocatalytic degradation heterojunction magnetic recycling
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超声功率对连杆轴瓦Ni-Al_(2)O_(3)镀层耐磨性能的影响
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作者 王斌 徐律 +1 位作者 张晓明 马春阳 《兵器材料科学与工程》 CAS CSCD 北大核心 2024年第1期76-82,共7页
用超声-喷射电沉积方法研究了超声波功率对连杆轴瓦表面Ni-Al_(2)O_(3)镀层耐磨性的影响。用扫描电子显微镜(SEM)、能谱分析仪(EDS)、X射线衍射仪(XRD)、高分辨率电子显微镜(TEM)对Ni-Al_(2)O_(3)镀层的表面形貌、物相组成、组织结构进... 用超声-喷射电沉积方法研究了超声波功率对连杆轴瓦表面Ni-Al_(2)O_(3)镀层耐磨性的影响。用扫描电子显微镜(SEM)、能谱分析仪(EDS)、X射线衍射仪(XRD)、高分辨率电子显微镜(TEM)对Ni-Al_(2)O_(3)镀层的表面形貌、物相组成、组织结构进行分析,用摩擦磨损试验机及纳米显微硬度计对镀层的显微硬度及耐磨性能进行研究。结果表明:超声波功率通过空化效应及微射流作用搅拌镀液,可使Al_(2)O_(3)纳米粒子更好的悬浮在镀液中,从而影响镀层耐磨性。当超声波功率为200 W时,Ni-Al_(2)O_(3)镀层中Ni峰低且宽,镀层晶粒细小,结构致密,显微硬度达到639.2HV,摩擦因数和磨损质量损失分别为0.53和0.27 mg。涂覆Ni-Al_(2)O_(3)镀层的连杆轴瓦磨损量仅为0.31 mg,耐磨性高于未涂覆Ni-Al_(2)O_(3)镀层的连杆轴瓦。 展开更多
关键词 超声-喷射电沉积 ni-Al_(2)O_(3)镀层 空化效应 显微硬度 耐磨性能
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