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Influence of SiC Content on Foaming Stability,Cell Structure,and Compression Performance of SiC/Al-Based Composite Foam Prepared by Two-Step Foaming Method
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作者 Huang Wenzhan Liu Tao +3 位作者 Chen Yao Wang Lucai Wu Jianguo You Xiaohong 《稀有金属材料与工程》 北大核心 2026年第4期890-898,共9页
SiC/Al-based composite foams were prepared by a two-step foaming method.The influence of the SiC content and its distribution uniformity on the foaming stability,cell structure,and mechanical properties of the aluminu... SiC/Al-based composite foams were prepared by a two-step foaming method.The influence of the SiC content and its distribution uniformity on the foaming stability,cell structure,and mechanical properties of the aluminum foams was investigated.The macro/micro-features of the aluminum foams were characterized and analyzed.Results demonstrate that an appropriate increase in SiC content and the uniform distribution of SiC can improve the foaming stability,optimize the cell diameter and cell wall thickness,ameliorate the cell distribution,and enhance the hardness and compressive strength of the aluminum foams.However,either insufficient or excessive SiC leads to uneven distribution of SiC particles,which is unfavorable to foaming stability and good cell structure formation.With 6wt%SiC,both the foaming stability and cell structure of the aluminum foam reach the optimal state,resulting in the highest compressive strength and optimal energy absorption capacity. 展开更多
关键词 aluminum foam two-step foaming method foaming stability cell structure HARDNESS compressive strength
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Time-dependent ground stability of inclined backfilled stope characterized by creep behavior
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作者 Ruofan Wang Yujie Zhu +3 位作者 Lang Liu Mengbo Zhu Baoxu Yan Hao Cui 《International Journal of Minerals,Metallurgy and Materials》 2026年第2期479-491,共13页
Backfill is routinely adopted as a ground support measure for underground mines.However,ground stability enhancement by backfill has received limited research attention.This is likely to be because of the conventional... Backfill is routinely adopted as a ground support measure for underground mines.However,ground stability enhancement by backfill has received limited research attention.This is likely to be because of the conventional assumption that the fill material exhibits a significantly lower stiffness than the host rocks.Significantly,a recent pioneering work revealed the time-dependent ground stability around a backfilled stope with vertical walls through numerical modeling.In practice,underground stopes typically exhibit a higher or lower degree of inclination.This alters the stress state in peripheral rocks and may induce severe instability and dilution,particularly in stope-hanging walls.Hence,it is imperative to analyze the time-dependent ground stability of inclined backfilled stopes for backfill structure design.Therefore,comprehensive numerical simulations were performed using FLAC3D to address this knowledge deficiency by incorporating a coupled analysis of the backfill consolidation behavior and long-term creep deformation in surrounding rocks.The ground stability was evaluated based on the confinement effectiveness,strength-stress ratio,stress path relative to the yield surface,and time-dependent stress redistribution in the rocks.A parametric study revealed that the inclination angle of the backfilled stope reduced the confinement effectiveness in the host rocks when the wall creep was minor.This exacerbated the rock mass sloughing potential.However,a backfilled stope with a shallower dip angle achieved superior ground stability enhancement when the creep deformation was substantial,by applying a more significant compression on the backfill and effectively mobilizing its passive support performance during consolidation.Additional simulations were conducted to analyze the effects of stope height and width,mine depth,mechanical properties of rocks,backfill compressibility,and filling gap on the time-dependent stress redistribution and stability around the inclined backfilled stope. 展开更多
关键词 inclined backfilled stope ground stability time-dependency creep CONSOLIDATION
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Vertical Interfacial Engineering in Two-Step-Processed Perovskite Films Enabled by Dual-Interface Modification for High-Efficiency p-i-n Solar Cells
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作者 Wenhao Zhou Heng Liu +8 位作者 Haiyan Li Weihai Zhang Hui Li Xia Zhou Rouxi Chen Wenjun Zhang Tingting Shi Antonio Abate Hsing-Lin Wang 《Nano-Micro Letters》 2026年第5期405-423,共19页
Two-step-processed(TSP)inverted p-i-n perovskite solar cells(PSCs)have demonstrated significant promise in tandem applications.However,the power conversion efficiency(PCE)of TSP p-i-n PSCs rarely exceeds 24%.Here,we d... Two-step-processed(TSP)inverted p-i-n perovskite solar cells(PSCs)have demonstrated significant promise in tandem applications.However,the power conversion efficiency(PCE)of TSP p-i-n PSCs rarely exceeds 24%.Here,we demonstrate that TSP perovskite films exhibit a vertically gradient distribution of residual PbI_(2)clusters,which form Schottky heterojunctions with the perovskite,leading to substantial interfacial energy-level mismatches within NiO_(x)-based TSP p-i-n PSCs.These limitations were effectively addressed via a vertical interfacial engineering enabled by dual-interface modification incorporating tin trifluoromethanesulfonate(Sn(OTF)_(2))and 4-Fluorophenylethylamine chloride(F-PEA)at the NiO_(x)/perovskite and perovskite/C60 interfaces,respectively.The functional Sn(OTF)_(2)not only enhances the conductivity of NiO_(x)films but also suppresses ion migration,while inducing the formation of a Pb-Sn mixed perovskite interlayer that precisely regulates the energy level at the NiO_(x)/perovskite interface.Complementally,F-PEA post-treatment effectively converts surface residual PbI_(2)clusters into a 2D perovskite capping layer,which simultaneously passivates surface defects and enhances energy-level alignment at the perovskite/C60 interface.Consequently,the optimized NiO_(x)-based TSP p-i-n PSCs achieve a notable PCE of 25.6%with superior operational stability.This study elucidates the underlying mechanisms limiting the efficiency of TSP p-i-n PSCs,while establishing design principles for these devices targeting 26%efficiency. 展开更多
关键词 Vertical interfacial engineering Interface modification Energy-level modulation Nickle oxide two-step procession
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Assessing ground stability of a vertical backfilled stope considering creep behaviors of surrounding rocks 被引量:3
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作者 Ruofan Wang Lang Liu +4 位作者 Mengbo Zhu Huafu Qiu Bingbing Tu Huisheng Qu Hao Cui 《Journal of Rock Mechanics and Geotechnical Engineering》 2025年第1期187-199,共13页
Backfill is often employed in mining operations for ground support,with its positive impact on ground stability acknowledged in many underground mines.However,existing studies have predominantly focused only on the st... Backfill is often employed in mining operations for ground support,with its positive impact on ground stability acknowledged in many underground mines.However,existing studies have predominantly focused only on the stress development within the backfill material,leaving the influence of stope backfilling on stress distribution in surrounding rock mass and ground stability largely unexplored.Therefore,this paper presents numerical models in FLAC3D to investigate,for the first time,the time-dependent stress redistribution around a vertical backfilled stope and its implications on ground stability,considering the creep of surrounding rock mass.Using the Soft Soil constitutive model,the compressibility of backfill under large pressure was captured.It is found that the creep deformation of rock mass exercises compression on backfill and results in a less void ratio and increased modulus for fill material.The compacted backfill conversely influenced the stress distribution and ground stability of rock mass which was a combined effect of wall creep and compressibility of backfill.With the increase of time or/and creep deformation,the minimum principal stress in the rocks surrounding the backfilled stope increased towards the pre-mining stress state,while the deviatoric stress reduces leading to an increased factor of safety and improved ground stability.This improvement effect of backfill on ground stability increased with the increase of mine depth and stope height,while it is also more pronounced for the narrow stope,the backfill with a smaller compression index,and the soft rocks with a smaller viscosity coefficient.Furthermore,the results emphasize the importance of minimizing empty time and backfilling extracted stope as soon as possible for ground control.Reduction of filling gap height enhances the local stability around the roof of stope. 展开更多
关键词 Ground stability Time dependency CREEP Surrounding rocks Backfilled stope
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Ascorbic acid-induced porous iodide layer for a high-purity two-step solution-processed tin-lead mixed perovskite photodetector 被引量:2
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作者 Liansong Liu Fengren Cao +3 位作者 Liukang Bian Meng Wang Haoxuan Sun Liang Li 《Journal of Materials Science & Technology》 2025年第7期227-232,共6页
Tin(Sn)-lead(Pb)mixed halide perovskites have attracted widespread interest due to their wider re-sponse wavelength and lower toxicity than lead halide perovskites,Among the preparation methods,the two-step method mor... Tin(Sn)-lead(Pb)mixed halide perovskites have attracted widespread interest due to their wider re-sponse wavelength and lower toxicity than lead halide perovskites,Among the preparation methods,the two-step method more easily controls the crystallization rate and is suitable for preparing large-area per-ovskite devices.However,the residual low-conductivity iodide layer in the two-step method can affect carrier transport and device stability,and the different crystallization rates of Sn-and Pb-based per-ovskites may result in poor film quality.Therefore,Sn-Pb mixed perovskites are mainly prepared by a one-step method.Herein,a MAPb_(0.5)Sn_(0.5)I_(3)-based self-powered photodetector without a hole transport layer is fabricated by a two-step method.By adjusting the concentration of the ascorbic acid(AA)addi-tive,the final perovskite film exhibited a pure phase without residues,and the optimal device exhibited a high responsivity(0.276 A W^(-1)),large specific detectivity(2.38×10^(12) Jones),and enhanced stability.This enhancement is mainly attributed to the inhibition of Sn2+oxidation,the control of crystal growth,and the sufficient reaction between organic ammonium salts and bottom halides due to the AA-induced pore structure. 展开更多
关键词 PEROVSKITE SN-PB PHOTODETECTOR two-step solution method
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Growth pattern of MAO coating under constant voltage–current two-step power mode 被引量:1
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作者 Shu-fan Zhou Liang-yu Chen +5 位作者 Wei-gang Lv Jun-jie Gu Fei Ye Dubovyy Oleksandr Sheng Lu Ze-xin Wang 《Journal of Iron and Steel Research International》 2025年第5期1245-1262,共18页
A custom micro-arc oxidation(MAO)apparatus is employed to produce coatings under optimized constant voltage–current two-step power supply mode.Various analytical techniques,including scanning electron microscopy,conf... A custom micro-arc oxidation(MAO)apparatus is employed to produce coatings under optimized constant voltage–current two-step power supply mode.Various analytical techniques,including scanning electron microscopy,confocal laser microscopy,X-ray diffraction,X-ray photoelectron spectroscopy,transmission electron microscopy,and electrochemical analysis,are employed to characterize MAO coatings at different stages of preparation.MAO has MgO,hydroxyapatite,Ca_(3)(PO_(4))_(2),and Mg2SiO4 phases.Its microstructure of the coating is characterized by"multiple breakdowns,pores within pores",and"repaired blind pores".The porosity and the uniformity of MAO coating first declines in the constant voltage mode,then augments while the discharge phenomenon takes place,and finally decreases in the repair stage.These analyses reveal a four-stage growth pattern for MAO coatings:anodic oxidation stage,micro-arc oxidation stage,breakdown stage,and repairing stage.During anodic oxidation and MAO stages,inward growth prevails,while the breakdown stage sees outward and accelerated growth.Simultaneous inward and outward growth in the repair stage results in a denser,more uniform coating with increased thickness and improved corrosion resistance. 展开更多
关键词 Micro-arc oxidation Biomedical material Corrosion resistance Growth pattern two-step power mode
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Three-dimensional stability of two-step slope with crack considering temperature effect on unsaturated soil 被引量:1
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作者 SHAN Jun-tao WU Yi-min YANG Xiao-li 《Journal of Central South University》 2025年第3期1060-1079,共20页
In existing studies, most slope stability analyses concentrate on conditions with constant temperature, assuming the slope is intact, and employ the Mohr-Coulomb (M-C) failure criterion for saturated soil to character... In existing studies, most slope stability analyses concentrate on conditions with constant temperature, assuming the slope is intact, and employ the Mohr-Coulomb (M-C) failure criterion for saturated soil to characterize the strength of the backfill. However, the actual working temperature of slopes varies, and natural phenomena such as rainfall and groundwater infiltration commonly result in unsaturated soil conditions, with cracks typically present in cohesive slopes. This study introduces a novel approach for assessing the stability of unsaturated soil stepped slopes under varying temperatures, incorporating the effects of open and vertical cracks. Utilizing the kinematic approach and gravity increase method, we developed a three-dimensional (3D) rotational wedge failure mechanism to simulate slope collapse, enhancing the traditional two-dimensional analyses. We integrated temperature-dependent functions and nonlinear shear strength equations to evaluate the impact of temperature on four typical unsaturated soil types. A particle swarm optimization algorithm was employed to calculate the safety factor, ensuring our method’s accuracy by comparing it with existing studies. The results indicate that considering 3D effects yields a higher safety factor, while cracks reduce slope stability. Each unsaturated soil exhibits a distinctive temperature response curve, highlighting the importance of understanding soil types in the design phase. 展开更多
关键词 3D two-step slope cracks temperature effects UNSATURATION limit analysis
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Improving the fracture strain of graphite materials by in-situ porosity introduction by two-step sintering
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作者 GU Shi-jia CHEN Han-lin +3 位作者 WANG Jun-zhuo LU Xiao-fang WANG Lian-jun JIANG Wan 《新型炭材料(中英文)》 北大核心 2025年第3期703-716,共14页
High-performance graphite materials have important roles in aerospace and nuclear reactor technologies because of their outstanding chemical stability and high-temperature performance.Their traditional production meth... High-performance graphite materials have important roles in aerospace and nuclear reactor technologies because of their outstanding chemical stability and high-temperature performance.Their traditional production method relies on repeated impregnation-carbonization and graphitization,and is plagued by lengthy preparation cycles and high energy consumption.Phase transition-assisted self-pressurized selfsintering technology can rapidly produce high-strength graphite materials,but the fracture strain of the graphite materials produced is poor.To solve this problem,this study used a two-step sintering method to uniformly introduce micro-nano pores into natural graphite-based bulk graphite,achieving improved fracture strain of the samples without reducing their density and mechanical properties.Using natural graphite powder,micron-diamond,and nano-diamond as raw materials,and by precisely controlling the staged pressure release process,the degree of diamond phase transition expansion was effectively regulated.The strain-to-failure of the graphite samples reached 1.2%,a 35%increase compared to samples produced by fullpressure sintering.Meanwhile,their flexural strength exceeded 110 MPa,and their density was over 1.9 g/cm^(3).The process therefore produced both a high strength and a high fracture strain.The interface evolution and toughening mechanism during the two-step sintering process were investigated.It is believed that the micro-nano pores formed have two roles:as stress concentrators they induce yielding by shear and as multi-crack propagation paths they significantly lengthen the crack propagation path.The two-step sintering phase transition strategy introduces pores and provides a new approach for increasing the fracture strain of brittle materials. 展开更多
关键词 High-performance graphite Phase transition control two-step sintering process Fracture strain IN-SITU
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Effect of the cement-tailings ratio on the shear failure mechanism at the cemented tailing backfill-rock interface: Insights from the morphology of stope surrounding rocks
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作者 Wenkai Ru Diyuan Li +2 位作者 Hao Gong Pingkuang Luo Junjie Zhao 《International Journal of Minerals,Metallurgy and Materials》 2025年第12期2835-2854,共20页
The shear characteristics of the interface formed between a cemented tailings backfill(CTB)and surrounding rocks play a cru-cial role in the design and stability of underground goafs.To investigate the shear behavior ... The shear characteristics of the interface formed between a cemented tailings backfill(CTB)and surrounding rocks play a cru-cial role in the design and stability of underground goafs.To investigate the shear behavior of CTB-rock interfaces,rock samples repres-enting the topography of surrounding rocks were constructed using 3D morphology scanning and engraving techniques.A series of direct shear tests were conducted on the CTB rock samples to examine the influence of the cement-tailings ratio on the interfacial shear behavi-or.The results showed that the compressive strength of the CTB and shear strength of the CTB-rock interface decreased with decreasing cement proportion.With deceasing cement content,the failure area of the CTB after the test increased,and the roughness of the newly generated interface reduced.A digital image correlation analysis revealed that the compressive stress concentration in the region with an obtuse angle with respect to the shear direction was the primary cause of CTB failure.Moreover,the correlation between the wear area and the silicon-dense area helped confirm that the silicon particles are more prone to failure in these areas than in other regions.Our find-ings provide new insights into the shear sliding mechanism at CTB-rock interfaces and can aid in the selection of the cement-tailings ra-tio at engineering sites.For example,if the horizontal principal stress of the surrounding rock mass in a backfilling area is relatively high,the cement content can be reduced for CTB applications. 展开更多
关键词 stope surrounding rocks 3D engraving natural interface shear behavior CTB-rock interface failure mechanism
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Microstructure and mechanical properties of ZK61 magnesium alloy thin-walled cylindrical component processed by two-step forging
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作者 Fang Chai Jianqiang Feng +6 位作者 Xinghui Han Wuhao Zhuang Yizhe Chen Zhili Hu Xuan Hu Fangyan Zheng Lin Hua 《Journal of Magnesium and Alloys》 2025年第5期2416-2432,共17页
Magnesium alloy thin-walled cylindrical components with the advantages of high specific stiffness and strength present broad prospect for the lightweight of aerospace components.However,poor formability resulting from... Magnesium alloy thin-walled cylindrical components with the advantages of high specific stiffness and strength present broad prospect for the lightweight of aerospace components.However,poor formability resulting from the hexagonal close-packed crystal structure in magnesium alloy puts forwards a great challenge for thin-walled cylindrical components fabrication,especially for extreme structure with the thicknesschanging web and the high thin-wall.In this research,an ZK61 magnesium alloy thin-walled cylindrical component was successfully fabricated by two-step forging,i.e.,the pre-forging and final-forging is mainly used for wed and thin-wall formation,respectively.Microstructure and mechanical properties at the core,middle and margin of the web and the thin-wall of the pre-forged and final-forged components are studied in detail.Due to the large strain-effectiveness and metal flow along the radial direction(RD),the grains of the web are all elongated along RD for the pre-forged component,where an increasingly elongated trend is found from the core to the margin of the wed.A relatively low recrystallized degree occurs during pre-forging,and the web at different positions are all with prismatic and pyramid textures.During finalforging,the microstructures of the web and the thin-wall are almost equiaxed due to the remarkable occurrence of dynamic recrystallization.Similarity,except for few basal texture of the thin-wall,only prismatic and pyramid textures are found for the final-forged component.Compared with the initial billet,an obviously improved mechanical isotropy is achieved during pre-forging,which is well-maintained during final-forging. 展开更多
关键词 Magnesium alloy Thin-walled cylindrical component two-step forging Microstructure Mechanical properties
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Novel adaptive IMEX two-step Runge-Kutta temporal discretization methods for unsteady flows
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作者 Xueyu QIN Jian YU +2 位作者 Xin ZHANG Zhenhua JIANG Chao YAN 《Chinese Journal of Aeronautics》 2025年第8期142-153,共12页
Efficient and accurate simulation of unsteady flow presents a significant challenge that needs to be overcome in computational fluid dynamics.Temporal discretization method plays a crucial role in the simulation of un... Efficient and accurate simulation of unsteady flow presents a significant challenge that needs to be overcome in computational fluid dynamics.Temporal discretization method plays a crucial role in the simulation of unsteady flows.To enhance computational efficiency,we propose the Implicit-Explicit Two-Step Runge-Kutta(IMEX-TSRK)time-stepping discretization methods for unsteady flows,and develop a novel adaptive algorithm that correctly partitions spatial regions to apply implicit or explicit methods.The novel adaptive IMEX-TSRK schemes effectively handle the numerical stiffness of the small grid size and improve computational efficiency.Compared to implicit and explicit Runge-Kutta(RK)schemes,the IMEX-TSRK methods achieve the same order of accuracy with fewer first derivative calculations.Numerical case tests demonstrate that the IMEX-TSRK methods maintain numerical stability while enhancing computational efficiency.Specifically,in high Reynolds number flows,the computational efficiency of the IMEX-TSRK methods surpasses that of explicit RK schemes by more than one order of magnitude,and that of implicit RK schemes several times over. 展开更多
关键词 Implicit-explicit temporal methods two-step Runge-Kutta methods Adaptive algorithm Unsteady flows Navier-Stokes equations
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Achieving ultrahigh-specific strength and enhanced GFA in Ti-based bulk metallic glasses via a two-step alloying strategy
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作者 Heng-Tong Bu Jia-Lun Gu +2 位作者 Yun-Shuai Su Yang Shao Ke-Fu Yao 《Rare Metals》 2025年第3期1932-1942,共11页
Ti-based bulk metallic glasses(BMGs)have attracted increasing attention due to their high specific strength.However,a fundamental conflict exists between the specific strength and glass-forming ability(GFA)of Ti-based... Ti-based bulk metallic glasses(BMGs)have attracted increasing attention due to their high specific strength.However,a fundamental conflict exists between the specific strength and glass-forming ability(GFA)of Ti-based BMGs,restricting their commercial applications significantly.In this study,this challenge was addressed by introducing a two-step alloying strategy to mitigate the remarkable density increment effect associated with heavy alloying elements required for enhancing the GFA.Consequently,through two-step alloying with Al and Fe in sequence,simultaneous enhancements in specific strength and GFA were achieved based on a Ti-Zr-Be ternary metallic glass,resulting in the development of a series of centimeter-sized metallic glasses exhibiting ultrahigh-specific strength.Notably,the newly developed(Ti_(45)Zr_(20)Be_(31)A_(l4))_(94)Fe_(6)alloy established a new record for the specific strength of Ti-based BMGs.Along with a critical diameter(D_(c))of 10 mm,it offers the optimal scheme for balancing the specific strength and GFA of Ti-based BMGs.The present results further brighten the application prospects of Ti-based BMGs as lightweight materials. 展开更多
关键词 Ti-based bulk metallic glasses Specific strength Glass-forming ability two-step alloying strategy
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Ultrafine L10 PtFeZn intermetallics via a two-step annealing process for oxygen reduction reaction:Decoupling alloying and ordering stages
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作者 Yun-Fei Xia Bo Liu +9 位作者 Zi-Yu Zhang Zi-Gang Zhao Pan Guo Si Lin Bing Liu Yan Wang Yun-Long Zhang Lei Zhao Li-Guang Wang Zhen-Bo Wang 《Chinese Journal of Catalysis》 2025年第11期324-335,共12页
In this paper,we report the design of ultrafine ordered PtFeZn ternary intermetallics uniformly supported on ZIF-8-derived Zn,N-codoped graphitic carbon(ZnNC)via a green aqueous impregnation method followed by a two-s... In this paper,we report the design of ultrafine ordered PtFeZn ternary intermetallics uniformly supported on ZIF-8-derived Zn,N-codoped graphitic carbon(ZnNC)via a green aqueous impregnation method followed by a two-step annealing protocol(H_(2)/Ar,600 and 800℃)to circumvent the sintering issues imposed by conventional thermodynamics.Physical characterizations(X-ray diffraction,high-angle annular dark-field scanning transmission electron microscopy,X-ray absorption spectroscopy)and theoretical calculations reveal that low-temperature annealing at 600℃stabilizes sub-nano disordered PtFe alloys via the strong metal-support interactions(SMSI)between Zn in ZnNC and Pt precursors,while high-temperature treatment at 800℃promotes Zn diffusion from the support into the alloy bulk and simultaneously triggers the disorder-to-order phase transition.The as-prepared ZnNC-15PtFeZn exhibits an initial mass activity of 0.769 mA/μgPt and retains 61.7%of its activity after 30000 cycles of accelerated stress testing(AST).Notably,when used as a cathode catalyst in MEA,ZnNC-15PtFeZn achieves superior power density(2.018 W/cm^(2)under H_(2)-O_(2))at half the Pt loading(0.05 mg/cm^(2))of state-of-the-art commercial Pt/C,highlighting its potential for low-Pt PEMFCs.Density functional theory confirms that Fe enhances ORR activity via ligand effects,while Zn strengthens Pt-Fe/Zn bonding(elevating vacancy formation energies),thereby improving structural stability.This mild,scalable aqueous impregnation strategy offers a general approach for synthesizing multi-component ordered alloys in electrocatalysis. 展开更多
关键词 Oxygen reduction reaction Zn-NC support PtFeZn ternary intermetallic two-step annealing Strong-metal support interaction
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Two-step growth of 4-inch multilayer MoS_(2) wafers
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作者 Yang-Kun Zhang Yu-Chen Wang +3 位作者 Wei Yang Dong-Xia Shi Luo-Jun Du Guang-Yu Zhang 《Chinese Physics B》 2025年第6期216-222,共7页
Molybdenum disulfide(MoS_(2)) is an emerging two-dimensional(2D) semiconductor and has great potential for highend applications beyond the traditional silicon-based electronics. Compared to the monolayers, multilayer ... Molybdenum disulfide(MoS_(2)) is an emerging two-dimensional(2D) semiconductor and has great potential for highend applications beyond the traditional silicon-based electronics. Compared to the monolayers, multilayer MoS_(2) has improved electron mobility and current density, and therefore provides a more promising platform in terms of thin-film transistors, flexible electronic devices, etc. However, the synthesis of large-area, high-quality multilayer MoS_(2) films with controlled layer number remains a challenge. Here, we develop a two-step oxygen-assisted chemical vapor deposition(OA-CVD) methodology for the synthesis of 4-inch MoS_(2) films from monolayer to trilayer on sapphire substrates. The influence of critical growth parameters on the growth of multilayer MoS_(2) is systematically explored, such as the evaporation temperature of MoO_(3) and the flow rate of O_(2). Flexible field-effect transistor(FET) devices fabricated from bilayer/trilayer MoS_(2) show substantial improvements in mobility compared with flexible FETs based on monolayer films. 展开更多
关键词 two-step growth oxygen-assisted chemical vapor deposition multilayer MoS_(2) flexible field-effect transistor
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采场应力演化特征的数字化和可视化研究及应用
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作者 王宏伟 王泽亮 +3 位作者 朱战斌 祝捷 曾宪涛 姜耀东 《采矿与岩层控制工程学报》 北大核心 2026年第1期222-245,共24页
研究煤矿工作面采场应力的时空分布规律及演化特征,是建立灾害预警指标和实施有效防控的关键。笔者结合研究团队近年在煤矿数字化建模和智能化开采等方向的研究进展,开展了工作面采场应力数据库构筑及其演化特征可视化输出研究。以工作... 研究煤矿工作面采场应力的时空分布规律及演化特征,是建立灾害预警指标和实施有效防控的关键。笔者结合研究团队近年在煤矿数字化建模和智能化开采等方向的研究进展,开展了工作面采场应力数据库构筑及其演化特征可视化输出研究。以工作面应力多源数据为基础,通过数据采集、保真、传输与归一化处理,提出了采场应力数字化重构方法,构建了多源数据融合与高效存储数据库,开发了数据库智能检索、信息化输出和云平台查询等功能。针对采场应力数据库数据离散性等问题,提出了一种基于微元分段傅立叶变换的数据插值方法,开发了“点连成线、线连成面、面连成体”三维插值算法,实现了多源离散数据的连续性表达,构建了基于关键点和关键区域确定的线性、多项式和指数3种采场应力反演模型,开发了采动应力演化三维可视化输出反演算法。开展了煤矿采场应力演化特征的物理试验研究,在实验室尺度实施了采场应力多源数据库构筑及其演化特征的可视化输出。以北京昊华能源集团大安山煤矿典型构造和内蒙古鄂尔多斯马泰壕煤矿3105工作面为工程地质背景,开展了原位应力场精细化插值和基于微震定位和液压支架载荷的采动应力可视化反演,在现场尺度实现了采场应力的动态可视化输出。研究结果表明,通过多源数据缺失填补、重复消除、数据降噪和格式转换,实现了采场数据的采集保真、有效融合和分类入库,并依据检索条件对采场数据进行精确快速查询和定位;基于傅立叶变换的采场应力插值算法分别在一维、二维和三维应力连续性表达中,达到了88%、82%和74%的精度提升;通过对工作面支架压力和微震数据的获取与分析,在现场尺度再现了工作面采动应力的动态演化过程,多源监测数据与反演结果的分布吻合较好,验证了反演结果的准确性。 展开更多
关键词 工作面采场 多源数据 数字化 可视化 断层构造
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裂隙尺度主控作用下深部采场瓦斯与煤自燃耦合灾害驱动机理及治理技术
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作者 程健维 《煤矿安全》 北大核心 2026年第2期1-14,共14页
深部资源开采过程中,各类灾害往往呈现群发性、关联性特征,相互作用、叠加影响严重,传统防治手段已难以应对。围绕深部采场灾害防控的核心科学问题,系统梳理了多尺度裂隙在深井采场的表现形式与分布特征;通过引入Knudsen数划分自由分子... 深部资源开采过程中,各类灾害往往呈现群发性、关联性特征,相互作用、叠加影响严重,传统防治手段已难以应对。围绕深部采场灾害防控的核心科学问题,系统梳理了多尺度裂隙在深井采场的表现形式与分布特征;通过引入Knudsen数划分自由分子流、滑移流与连续介质流等不同流态区间,揭示裂隙尺度对层流-湍流转化、摩擦生热及对流换热效率的主导性影响;结合Darcy与Forchheimer渗流模型及对流换热关系式,构建“裂隙尺度-渗透率-流速-热流密度-温度场”的多级传递链,推导层流与湍流条件下的热量传递增强系数,从数学模型角度阐明了裂隙尺度对流态与热质迁移的调控机制。研究表明:在应力场、渗流场、裂隙场、温度场耦合孕育深井灾害的过程中,裂隙场为主导性一级场,其余场均为受其调控的二级场,据此提出“裂隙场是驱动灾害演进的本原,尺度效应是灾害孕育主导控制参量”的新观点。基于此,以深井典型场景下瓦斯与煤自燃耦合灾害为例,提出了主动调控裂隙尺度的灾害防控技术思路,通过液相封堵材料和无机注浆堵漏材料的应用,由渗流速度与氧浓度共同组成的易自燃区域明显缩小,区域内渗流速度明显下降,瓦斯抽采钻孔周围的漏风状况得到改善,在最优注浆位置下复合危险区面积减少746 m2,采空区流场结构进一步优化。工程实践表明,液相封孔材料、无机注浆堵漏充填材料可调控裂隙场尺度分布,改变流场传质与传热特性,实现对灾害演进路径的主动干预与进程控制。 展开更多
关键词 裂隙尺度 深井采场 瓦斯与煤自燃耦合灾害 孕育机理 灾害防控
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Novel two-step process to improve efficiency of bio-oxidation of Axi high-sulfur refractory gold concentrates 被引量:2
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作者 刘新星 王国华 +4 位作者 霍强 谢建平 李寿朋 武海艳 郭玉洁 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2015年第12期4119-4125,共7页
In order to improve the bio-oxidation efficiency of Axi refractory gold concentrate, a two-step process including a high temperature chemical oxidation and a subsequent bio-oxidation, combined with p H control during ... In order to improve the bio-oxidation efficiency of Axi refractory gold concentrate, a two-step process including a high temperature chemical oxidation and a subsequent bio-oxidation, combined with p H control during the bio-oxidation step was used. The results revealed that the optimum mode was to maintain solution p H at 1.0-1.2 during the biological oxidation stage. Under this condition, the activity of mixed culture could be sustained and the formation of jarosite could be diminished, thus the oxidation efficiency was improved. The oxidation levels of iron and sulfur were improved by 12.50% and 15.49%, and the gold recovery was increased by 21.02%. Therefore, the two-step process combined with p H control is an effective method for oxidizing the biohydrometallurgical process of Axi gold concentrate, and it will have a broad prospect of application in dealing with complex refractory gold concentrate. 展开更多
关键词 gold concentrate BIO-OXIDATION p H control two-step oxidation
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Optimization of Sporulation Conditions of Biocontrol Bacteria B579 by Two-step Control Strategy 被引量:1
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作者 张艳春 贾钧辉 +4 位作者 郑宇 陈芳 曾明洁 骆健美 王敏 《Agricultural Science & Technology》 CAS 2011年第2期249-252,共4页
[Objective] For preparing the biopesticide of Bacillus subtilis B579 with high spore concentration,the sporulation conditions were optimized.[Method] Two-step fermentation control strategy was used,in which,the first ... [Objective] For preparing the biopesticide of Bacillus subtilis B579 with high spore concentration,the sporulation conditions were optimized.[Method] Two-step fermentation control strategy was used,in which,the first phase(0-10 h)was to improve cell growth,and the second phase(10-30 h)was to promote spore formation.Four factors including initial glucose concentration,fermentation pH,temperature(in the second phase)and shaking speed(in the second phase)were optimized using the methods of single factor test and orthogonal experiment.[Result] The initial glucose concentration showed a significant effect on sporulation.The optimal conditions for the spore formation of B.subtilis B579 were as follows:initial glucose concentration 5 g/L,fermentation pH 7.0,the temperature for the first phase 37 ℃,and the shaking speed for the first phase 180 r/min,the temperature for the second phase 40 ℃,and the shaking speed for the second phase 200 r/min;in addition,the first phase was 10 h and the second phase of fermentation was conducted for 30 h.Under such conditions,the spore concentration and spore formation rate could reach 9.43×108 CFU/ml and 90.99%,respectively,which represented 6.70-fold and 2.43-fold increase compared with those before optimization.[Conclusion] The spores concentration of biocontrol agent was improved using two-step control strategy,which provided the basis for biopesticide production in large scale. 展开更多
关键词 Bacillus subtilis Biocontrol bacteria SPORULATION two-step control strategy FERMENTATION
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Arrhenius relationship and two-step scheme in AF hyperdynamics simulation of diffusion of Mg/Zn interface 被引量:1
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作者 吴永全 陆秀明 沈通 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2013年第2期508-516,共9页
The accelerating factor (AF) method is a simple and appropriate way to investigate the atomic long-time deep diffusion at solid-solid interface. In the framework of AF hyperdynamics (HD) simulation, the relationsh... The accelerating factor (AF) method is a simple and appropriate way to investigate the atomic long-time deep diffusion at solid-solid interface. In the framework of AF hyperdynamics (HD) simulation, the relationship between the diffusion coefficient along the direction of z-axis which is normal to the Mg/Zn interface and temperature was investigated, and the AF's impact on the diffusion constant (D0) and activation energy (Q^*) was studied. Then, two steps were taken to simulate the atomic diffusion process and the formation of new phases: one for acceleration and the other for equilibration. The results show that: the Arrhenius equation works well for the description of Dz with different accelerating factors; the AF has no effect on the diffusion constant Do in the case of no phase transition; and the relationship between Q* and Q conforms to Q^*=Q/A. Then, the new Arrhenius equation for AFHD is successfully constructed as Dz=Doexp[-Q/(ART)]. Meanwhile, the authentic equilibrium conformations at any dynamic moment can only be reproduced by the equilibration simulation of the HD-simulated configurations. Key words: accelerating factor method; Arrhenius equation; two-steps scheme; Mg/Zn interface; hyperdynamic simulation 展开更多
关键词 accelerating factor method Arrhenius equation two-steps scheme Mg/Zn interface hyperdynamic simulation
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中国空场嗣后充填采矿法研究进展与展望 被引量:3
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作者 路增祥 李角群 马强英 《金属矿山》 北大核心 2026年第1期22-41,共20页
空场嗣后充填采矿法既具有空场法安全、高效和工艺简单的特点,又能有效处理空区和控制岩层移动变形,已成为中国金属矿床地下开采的主流方法之一。基于阶段(分段)空场嗣后充填采矿法的应用现状,介绍了空场嗣后充填采矿法回采工艺的特点,... 空场嗣后充填采矿法既具有空场法安全、高效和工艺简单的特点,又能有效处理空区和控制岩层移动变形,已成为中国金属矿床地下开采的主流方法之一。基于阶段(分段)空场嗣后充填采矿法的应用现状,介绍了空场嗣后充填采矿法回采工艺的特点,阐述了空场嗣后充填采矿法盘区与矿房布置、矿房结构参数、采场底部结构、充填需求及其对围岩变形抑制的作用机理等方面的研究现状与创新成果,总结了“十四五”期间该方法在采矿方法与工艺、充填材料与充填技术、以及围岩变形与控制等方面研究与应用中仍存在的不足,并展望了未来发展方向。认为空场嗣后充填采矿法在“十五五”乃至更长一段时间内的研究与应用应聚焦于:①在确保回采安全的前提下,推进大结构参数连续开采研究,以及铲运机出矿+矿卡转运+采区集中溜井放矿相结合的矿石运输工艺研究,提高空场嗣后充填采矿法的采场生产能力,加速空场嗣后充填采矿法的高效智能化发展;②以提高工业固废综合利用率、提高回采效率和降低充填成本为目的,开发早期强度高、强度增长快且抵御爆破冲击能力强的充填体材料,缩短一、二步骤采场回采的时间间隔,提高阶段的开采强度;③以控制地表沉降为目标,建立充填质量评价体系与标准,研究充填材料强度、充填技术等与控制采场、盘区围岩变形和地表沉降需求的匹配特性,降低生产成本;④以实现地表变形与沉降的有效控制为目的,探索全尾砂胶结充填体沉缩与空区充填接顶的控制技术,提升采矿方法对矿产资源绿色开采的贡献度;⑤以消除不确定因素影响为目标,研发空场嗣后充填采矿的智能化设计与回采过程的智能化管控技术;⑥以实现矿山数智化为目标,提升空场嗣后充填采矿法实施过程中的智能决策与装备水平,最终实现“一键管控”的无人开采模式。 展开更多
关键词 空场嗣后充填采矿法 盘区 采场 回采工艺 充填技术 稳定性 发展方向
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