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Boosting high-performance in Zr-rich side protonic solid oxide electrolysis cells by optimizing functional interlayer
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作者 Chunmei Tang Ning Wang +3 位作者 Sho Kitano Hiroki Habazaki Yoshitaka Aoki Siyu Ye 《Green Energy & Environment》 SCIE EI CAS 2025年第1期150-160,共11页
Protonic solid oxide electrolysis cells(P-SOECs)are a promising technology for water electrolysis to produce green hydrogen.However,there are still challenges related key materials and anode/electrolyte interface.P-SO... Protonic solid oxide electrolysis cells(P-SOECs)are a promising technology for water electrolysis to produce green hydrogen.However,there are still challenges related key materials and anode/electrolyte interface.P-SOECs with Zr-rich electrolyte,called Zr-rich side P-SOECs,possess high thermodynamically stability under high steam concentrations but the large reaction resistances and the current leakage,thus the inferior performances.In this study,an efficient functional interlayer Ba_(0.95)La_(0.05)Fe_(0.8)Zn_(0.2)O_(3-δ)(BLFZ)in-between the anode and the electrolyte is developed.The electrochemical performances of P-SOECs are greatly enhanced because the BLFZ can greatly increase the interface contact,boost anode reaction kinetics,and increase proton injection into electrolyte.As a result,the P-SOEC yields high current density of 0.83 A cm^(-2) at 600℃ in 1.3 Vamong all the reported Zr-rich side cells.This work not only offers an efficient functional interlayer for P-SOECs but also holds the potential to achieve P-SOECs with high performances and long-term stability. 展开更多
关键词 Functional interlayer Zr-rich side electrolyte Protonic solid oxide electrolysis cells Current density Faradaic efficiency
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Interlayer engineering and electronic regulation of MoSe_(2)nanosheets rolledhollow nanospheres for high-performance sodium-ion half/full batteries 被引量:2
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作者 Jun Xu Junbao Jiang +4 位作者 Heng Tang Zhao Chen Junwei Chen Yan Zhang Chun-Sing Lee 《Advanced Powder Materials》 2024年第2期26-35,共10页
Layered transition metal dichalcogenides are promising candidates for sodium storage but suffering from low intrinsic electronic conductivity and limited interlayer spacing for fast electron/ion transport,which restri... Layered transition metal dichalcogenides are promising candidates for sodium storage but suffering from low intrinsic electronic conductivity and limited interlayer spacing for fast electron/ion transport,which restricts their high-rate capability and cycling stability.In this work,rGO@MoSe_(2)/NAC hierarchical architectures,consisting of conductive reduced graphene oxide(rGO)supported by hollow nanospheres that are rolled from superlattices of alternatively overlapped MoSe_(2)and N-doped amorphous carbon(NAC)monolayers,are synthesized as a highperformance sodium storage anode.Theoretical calculations reveal the intercalation of NAC monolayer between two adjacent MoSe_(2)monolayers improving electronic conductivity of MoSe_(2)in both surface and internal bulk to fully accelerate electron transport and enhance Naþadsorption.The interoverlapped MoSe_(2)/NAC superlattice featuring a wide interlayer expansion(72.3%)of MoSe_(2)dramatically decreases Naþdiffusion barriers for fast insertion/extraction.Moreover,the hollow nanospheres and the rGO conductive network contribute to a robust hiberarchy that can well release internal stress and buffer the volume expansion,thereby enabling outstanding structural stability.Consequently,the rGO@MoSe_(2)/NAC anode exhibits excellent high-rate capability of 194 mAh g^(-1)and ultralong cyclability of 12000 cycles with a low capacity fading rate of 0.0038%per cycle at an ultra-high current of 50 A g^(-)1,delivering the best high-rate cycling performance to date.Remarkably,the Na_(3)V_(2)(PO_(4))_(3)||rGO@MoSe_(2)/NAC full cells also present outstanding cycling stability(600 cycles)at 10C rate,which proves the great potential in fast-charging applications. 展开更多
关键词 MoSe_(2) interlayer engineering Dual-carbon modification High-rate capability Sodium-ion batteries
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High mechanical strength Si anode synthesis with interlayer bonded expanded graphite structure for lithium-ion batteries
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作者 Wenhui Lai Jong Hak Lee +8 位作者 Lu Shi Yuqing Liu Yanhui Pu Yong Kang Ong Carlos Limpo Ting Xiong Yifan Rao Chorng Haur Sow Barbaros Ozyilmaz 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第6期253-263,I0007,共12页
Despite advancements in silicon-based anodes for high-capacity lithium-ion batteries,their widespread commercial adoption is still hindered by significant volume expansion during cycling,especially at high active mass... Despite advancements in silicon-based anodes for high-capacity lithium-ion batteries,their widespread commercial adoption is still hindered by significant volume expansion during cycling,especially at high active mass loadings crucial for practical use.The root of these challenges lies in the mechanical instability of the material,which subsequently leads to the structural failure of the electrode.Here,we present a novel synthesis of a composite combining expanded graphite and silicon nanoparticles.This composite features a unique interlayer-bonded graphite structure,achieved through the application of a modified spark plasma sintering method.Notably,this innovative structure not only facilitates efficient ion and electron transport but also provides exceptional mechanical strength(Vickers hardness:up to658 MPa,Young's modulus:11.6 GPa).This strength effectively accommodates silicon expansion,resulting in an impressive areal capacity of 2.9 mA h cm^(-2)(736 mA h g^(-1)) and a steady cycle life(93% after 100cycles).Such outsta nding performance is paired with features appropriate for large-scale industrial production of silicon batteries,such as active mass loading of at least 3.9 mg cm^(-2),a high-tap density electrode material of 1.68 g cm^(-3)(secondary clusters:1.12 g cm^(-3)),and a production yield of up to 1 kg per day. 展开更多
关键词 Lithium-ion battery Silicon anode Spark plasma sintering interlayer bonding Mechanical strength Tap density
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Tuning the crystallinity of titanium nitride on copper-embedded carbon nanofiber interlayers for accelerated electrochemical kinetics in lithium-sulfur batteries
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作者 Yinyu Xiang Liqiang Lu +4 位作者 Feng Yan Debarun Sengupta Petra Rudolf Ajay Giri Prakash Kottapalli Yutao Pei 《Carbon Energy》 SCIE EI CAS CSCD 2024年第6期40-55,共16页
The development of lithium-sulfur(Li-S)batteries is hindered by the disadvantages of shuttling of polysulfides and the sluggish redox kinetics of the conversion of sulfur species during discharge and charge.Herein,the... The development of lithium-sulfur(Li-S)batteries is hindered by the disadvantages of shuttling of polysulfides and the sluggish redox kinetics of the conversion of sulfur species during discharge and charge.Herein,the crystallinities of a titanium nitride(TiN)film on copper-embedded carbon nanofibers(Cu-CNFs)are regulated and the nanofibers are used as interlayers to resolve the aforementioned crucial issues.A low-crystalline TiN-coated Cu-CNF(L-TiN-Cu-CNF)interlayer is compared with its highly crystalline counterpart(H-TiN-Cu-CNFs).It is demonstrated that the L-TiN coating not only strengthens the chemical adsorption toward polysulfides but also greatly accelerates the electrochemical conversion of polysulfides.Due to robust carbon frameworks and enhanced kinetics,impressive highrate performance at 2 C(913 mAh g^(-1)based on sulfur)as well as remarkable cyclic stability up to 300 cycles(626 mAh g^(-1))with capacity retention of 46.5%is realized for L-TiN-Cu-CNF interlayer-configured Li-S batteries.Even under high loading(3.8 mg cm^(-2))of sulfur and relatively lean electrolyte(10μL electrolyte per milligram sulfur)conditions,the Li-S battery equipped with L-TiN-Cu-CNF interlayers delivers a high capacity of 1144 mAh g^(-1)with cathodic capacity of 4.25 mAh cm^(-2)at 0.1 C,providing a potential pathway toward the design of multifunctional interlayers for highly efficient Li-S batteries. 展开更多
关键词 CRYSTALLINITY electrochemical kinetics interlayer lithium-sulfur batteries titanium nitride
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Experimental study on seismic reinforcement of bridge foundation on silty clay landslide with inclined interlayer
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作者 Lei Da Xiao Hanmo +3 位作者 Ran Jianhua Luo Bin Jiang Guanlu Xue Tianlang 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2024年第1期193-207,共15页
A shaking table test for a bridge foundation reinforced by anti-slide piles on a silty clay landslide model with an inclined interlayer was performed.The deformation characteristics of the bridge foundation piles and ... A shaking table test for a bridge foundation reinforced by anti-slide piles on a silty clay landslide model with an inclined interlayer was performed.The deformation characteristics of the bridge foundation piles and anti-slide piles were analyzed in different loading conditions.The dynamic response law of a silty clay landslide with an inclined interlayer was summarized.The spacing between the rear anti-slide piles and bridge foundation should be reasonably controlled according to the seismic fortification requirements,to avoid the two peaks in the forced deformation of the bridge foundation piles.The“blocking effect”of the bridge foundation piles reduced the deformation of the forward anti-slide piles.The stress-strain response of silty clay was intensified as the vibration wave field appeared on the slope.Since the vibration intensified,the thrust distribution of the landslide underwent a process of shifting from triangle to inverted trapezoid,the difference in the acceleration response between the bearing platform and silty clay landslide tended to decrease,and the spectrum amplitude near the natural vibration frequency increased.The rear anti-slide piles were able to slow down the shear deformation of the soil in front of the piles and avoid excessive acceleration response of the bridge foundation piles. 展开更多
关键词 silty clay landslide inclined interlayer shaking table test anti-slide pile bridge foundation pile
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Peak structure in the interlayer conductance of Moirésuperlattices
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作者 Yizhou Tao Chao Liu +1 位作者 Mingwen Xiao Henan Fang 《Chinese Physics B》 SCIE EI CAS CSCD 2024年第10期376-380,共5页
We investigate the peak structure in the interlayer conductance of Moirésuperlattices using a tunneling theory wedeveloped previously.The theoretical results predict that,due to the resonance of two different par... We investigate the peak structure in the interlayer conductance of Moirésuperlattices using a tunneling theory wedeveloped previously.The theoretical results predict that,due to the resonance of two different partial waves,the doublepeakstructure can appear in the curve of the interlayer conductance versus twist angle.Furthermore,we study the influencesof the model parameters,i.e.,the chemical potential of electrodes,the thickness of Moirésuperlattice,and the strength ofinterface potential,on the peak structure of the interlayer conductance.In particular,the parameter dependence of the peakstructure is concluded via a phase diagram,and the physical meanings of the phase diagram is formulized.Finally,thepotential applications of the present work is discussed. 展开更多
关键词 Moirésuperlattice interlayer conductance electronic transport twistronics
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Effect of interlayer bonded bilayer graphene on friction
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作者 李耀隆 田振国 +1 位作者 尹海峰 张任良 《Chinese Physics B》 SCIE EI CAS CSCD 2024年第8期389-395,共7页
We study the friction properties of interlayer bonded bilayer graphene by simulating the movement of a slider on the surface of bilayer graphene using molecular dynamics.The results show that the presence of the inter... We study the friction properties of interlayer bonded bilayer graphene by simulating the movement of a slider on the surface of bilayer graphene using molecular dynamics.The results show that the presence of the interlayer covalent bonds due to the local sp^(3) hybridization of carbon atoms in the bilayer graphene seriously reduces the frictional coefficient of the bilayer graphene surface to 30%,depending on the coverage of interlayer sp^(3) bonds and normal loads.For a certain coverage of interlayer sp3bonds,when the normal load of the slider reaches a certain value,the surface of this interlayer bonded bilayer graphene will lose the friction reduction effect on the slider.Our findings provide guidance for the regulation and manipulation of the frictional properties of bilayer graphene surfaces through interlayer covalent bonds,which may be useful for applications of friction related graphene based nanodevices. 展开更多
关键词 nanoscale friction molecular dynamic simulation bilayer graphene interlayer covalent bond
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Numerical analysis on seismic performance of underground structures in liquefiable interlayer sites from centrifuge shaking table test
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作者 Yan Guanyu Xu Chengshun +2 位作者 Zhang Zihong Du Xiuli Wang Xuelai 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2024年第4期781-798,共18页
When an underground structure passes through a liquefiable soil layer,the soil liquefaction may pose a significant threat to the structure.A centrifuge shaking table test was performed to research the seismic response... When an underground structure passes through a liquefiable soil layer,the soil liquefaction may pose a significant threat to the structure.A centrifuge shaking table test was performed to research the seismic response of underground structures in liquefiable interlayer sites,and a valid numerical model was obtained through simulation model test.Finally,the calibrated numerical model was used to perform further research on the influence of various distribution characteristics of liquefiable interlayers on the seismic reaction of underground structures.The key findings are as follows.The structure faces the most unfavorable condition once a liquefiable layer is located in the middle of the underground structure.When a liquefiable layer exists in the middle of the structure,the seismic reactions of both the underground structure and model site will increase with the rise of the thickness of the liquefiable interlayer.The inter-story drift of the structure in the non-liquefiable site is much smaller than that in the liquefiable interlayer site.The inter-story drift of the structure is not only associated with the site displacement and the soil-structure stiffness ratio but also closely associated with the slippage of the soil-structure contact interface under the condition of large deformation of the site. 展开更多
关键词 centrifuge shaking table test underground structure liquefiable interlayer sites seismic response validation of numerical model
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Interlayer Magnetic Interaction in the CrI_(3)/CrSe_(2) Heterostructure
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作者 王秋皓 倪美燕 +3 位作者 李淑静 郑法伟 路洪艳 张平 《Chinese Physics Letters》 SCIE EI CAS CSCD 2024年第5期85-89,共5页
Based on first-principles calculations, we systematically study the stacking energy and interlayer magnetic interaction of the heterobilayer composed of CrI_(3) and CrSe_(2) monolayers. It is found that the stacking o... Based on first-principles calculations, we systematically study the stacking energy and interlayer magnetic interaction of the heterobilayer composed of CrI_(3) and CrSe_(2) monolayers. It is found that the stacking order plays a crucial role in the interlayer magnetic coupling. Among all possible stacking structures, the AA-stacking is the most stable heterostructure, exhibiting interlayer antiferromagnetic interactions. Interestingly, the interlayer magnetic interaction can be effectively tuned by biaxial strain. A 4.3% compressive strain would result in a ferromagnetic interlayer interaction in all stacking orders. These results reveal the magnetic properties of CrI_(3)/CrSe_(2) heterostructure, which is expected to be applied to spintronic devices. 展开更多
关键词 STRAIN STACKING interlayer
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Stable Organic Solar Cells Enabled by Simultaneous Hole and Electron Interlayer Engineering
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作者 Wisnu Tantyo Hadmojo Furkan H.Isikgor +12 位作者 Yuanbao Lin Zhaoheng Ling Qiao He Hendrik Faber Emre Yengel Roshan Ali Abdus Samad Ryanda Enggar Anugrah Ardhi Sang Young Jeong Han Young Woo Udo Schwingenschlögl Martin Heeney Thomas D.Anthopoulos 《Energy & Environmental Materials》 SCIE EI CAS CSCD 2024年第5期313-320,共8页
The development of high-performance organic solar cells(OSCs)with high operational stability is essential to accelerate their commercialization.Unfortunately,our understanding of the origin of instabilities in state-o... The development of high-performance organic solar cells(OSCs)with high operational stability is essential to accelerate their commercialization.Unfortunately,our understanding of the origin of instabilities in state-of-the-art OSCs based on bulk heterojunction(BHJ)featuring non-fullerene acceptors(NFAs)remains limited.Herein,we developed NFA-based OSCs using different charge extraction interlayer materials and studied their storage,thermal,and operational stabilities.Despite the high power conversion efficiency(PCE)of the OSCs(17.54%),we found that cells featuring self-assembled monolayers(SAMs)as hole-extraction interlayers exhibited poor stability.The time required for these OSCs to reach 80%of their initial performance(T_(80))was only 6h under continuous thermal stress at 85℃in a nitrogen atmosphere and 1 h under maximum power point tracking(MPPT)in a vacuum.Inserting MoO_(x)between ITO and SAM enhanced the T_(80)to 50 and~15 h after the thermal and operational stability tests,respectively,while maintaining a PCE of 16.9%.Replacing the organic PDINN electron transport layer with ZnO NPs further enhances the cells'thermal and operational stability,boosting the T_(80)to 1000 and 170 h,respectively.Our work reveals the synergistic roles of charge-selective interlayers and device architecture in developing efficient and stable OSCs. 展开更多
关键词 interlayerS metal oxide organic solar cells self-assembled monolayers stability
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Interlayer repair with porcine small intestinal submucosa versus internal repair with tragus cartilage in endoscopic tympanoplasty
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作者 Lina Zhao Wenya Li Lei Zhang 《Laparoscopic, Endoscopic and Robotic Surgery》 2024年第2期79-86,共8页
Objective Endoscopic tympanoplasty includes various surgical methods,such as internal repair,interlayer repair,and external overlay.This technique requires autologous materials,allografts,and xenografts,which are used... Objective Endoscopic tympanoplasty includes various surgical methods,such as internal repair,interlayer repair,and external overlay.This technique requires autologous materials,allografts,and xenografts,which are used to repair tympanic membrane(TM)perforation.To obtain good results,appropriate surgical methods and repair materials should be selected.This study aims to assess the efficacy of repairing refractory TM perforations in the porcine small intestinal submucosa(SIS)during transcanal endoscopic type I tympanoplasty.Method A retrospective chart review was performed on patients who underwent TM perforation repair with porcine SIS and tragus cartilage between January 2022 and September 2022 at Sir Run Run Shaw Hospital,Zhejiang University School of Medicine.Perforation size,tympanic status,pre-and postoperative symptoms,follow-up data,wound healing rates,and hearing improvement were analysed.Results Of the 115 patients included in the study,56 underwent interlayer repair with porcine SIS of the TM,and 59 patients underwent internal repair with tragus cartilage.No significant difference was found between the two groups at baseline in terms of age,sex,disease course,perforation side,tympanic status,underlying disease,or preoperative infection.The total postoperative effective rate of interlayer implantation with porcine SIS was 91.07%(51 patients),and that of internal implantation with tragus cartilage was 88.14%(52 patients).No significant difference was found in terms of the graft success rate between the two surgical methods(p=0.887).Postoperative pure tone auditory(PTA)and air-bone gap(ABG)density significantly increased in both groups compared with before surgery(p<0.05).However,the postoperative PTA and ABG density were not significantly different 3 months post-surgery between the two groups(p>0.05).Compared to those in the internal implantation group,the patients in the interlayer group had a shorter operation duration(51.36±6.76 min vs.59.71±7.45 min,t=6.298,p<0.001)and less blood loss(11.91±2.61 mL vs.15.27±2.57 mL,t=7.019,p<0.001).Conclusions Our study suggests that the porcine SIS,as well as the tragus cartilage,has a high success rate in repairing irreversible TM perforation.Endoscopic tympanoplasty via interlayer implantation with porcine SIS offers distinct advantages,including the absence of donor-site incision and scar formation,and ease of graft modification and manipulation. 展开更多
关键词 Porcine small intestinal submucosa Tragus cartilage interlayer implantation Internal implantation Tympanic membrane Endoscopic tympanoplasty
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A Transient-Pressure-Based Numerical Approach for Interlayer Identification in Sand Reservoirs
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作者 Hao Luo Haibo Deng +4 位作者 Honglin Xiao Shaoyang Geng Fu Hou Gang Luo Yaqi Li 《Fluid Dynamics & Materials Processing》 EI 2024年第3期641-659,共19页
Almost all sandstone reservoirs contain interlayers. The identification and characterization of these interlayers iscritical for minimizing the uncertainty associated with oilfield development and improving oil and ga... Almost all sandstone reservoirs contain interlayers. The identification and characterization of these interlayers iscritical for minimizing the uncertainty associated with oilfield development and improving oil and gas recovery.Identifying interlayers outside wells using identification methods based on logging data and machine learning isdifficult and seismic-based identification techniques are expensive. Herein, a numerical model based on seepageand well-testing theories is introduced to identify interlayers using transient pressure data. The proposed modelrelies on the open-source MATLAB Reservoir Simulation Toolbox. The effects of the interlayer thickness, position,and width on the pressure response are thoroughly investigated. A procedure for inverting interlayer parametersin the reservoir using the bottom-hole pressure is also proposed. This method uses only transient pressuredata during well testing and can effectively identify the interlayer distribution near the wellbore at an extremelylow cost. The reliability of the model is verified using effective oilfield examples. 展开更多
关键词 Sand reservoir interlayer identification transient pressure analysis numerical well test
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High-Performance 3D Sand Printing Process Using Interlayer Heating
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作者 Hui Qiang Zhongde Shan +3 位作者 Haoqin Yang Weifei Song Yucheng Sun Lin Liu 《Additive Manufacturing Frontiers》 2024年第3期64-73,共10页
Sand mold 3D printing technology has been recognized as a digital,high-quality,and promising sand mold forming method.However,sand mold 3D printing technology has drawbacks,such as single molding material and long cur... Sand mold 3D printing technology has been recognized as a digital,high-quality,and promising sand mold forming method.However,sand mold 3D printing technology has drawbacks,such as single molding material and long curing time,which limit its further industrial application.Therefore,this study proposes a method for forming composite sand molds based on a layer-stacking structure and a strengthening method based on interlayer heating.The influence of the process parameters on the properties of traditional and composite sand molds was systematically studied.Experimental results demonstrated that when the heating temperature was 150℃,the enhancement of the sand mold was obvious,with an increase of approximately 20%compared to untreated sand mold.When the composite sand mold with a laminated thickness of 1.5 mm was heated at this temperature,its tensile strength reached 1.53 MPa,and compressive strength reached 5.80 MPa,which met the casting requirements.The composite sand mold printed by interlayer heating has excellent casting performance and economic advantages,which provide theoretical guidance for the high-performance printing of sand molds. 展开更多
关键词 Multi-material sand mold 3D printing interlayer heating Process optimization Mechanical property
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塔里木盆地英买35井区志留系隔夹层识别及分布
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作者 王伟 代梦莹 +4 位作者 陈俊凯 邹云龙 吴琼 蒋琼 冯程 《新疆石油地质》 北大核心 2025年第2期154-162,共9页
塔里木盆地英买35井区隔夹层分布规律不明,为后续油气勘探开发带来了困难。为了识别研究区隔夹层类型,分析其空间展布特征,结合取心、常规测井、化验分析及成像测井资料,明确了研究区主要发育隔夹层类型,采用三端元定型法分小层建立了... 塔里木盆地英买35井区隔夹层分布规律不明,为后续油气勘探开发带来了困难。为了识别研究区隔夹层类型,分析其空间展布特征,结合取心、常规测井、化验分析及成像测井资料,明确了研究区主要发育隔夹层类型,采用三端元定型法分小层建立了隔夹层识别图版,提出了识别标准,分析了隔夹层的横向和纵向展布特征,研究了隔夹层对剩余油的控制作用。结果表明:研究区主要发育泥质隔夹层和物性隔夹层,在横向上,泥质隔夹层主要集中在目的层下部,连续性较好,而物性隔夹层则主要分布在中—上部,尽管厚度较小,但同样具有较好的横向连续性;在平面上,隔夹层主要集中发育于研究区中部,形成了较为明显的厚度聚集带,随着与中部区域距离的增大,隔夹层厚度向四周逐渐减小。受隔夹层空间分布控制作用,剩余油主要分布于研究区K3小层。 展开更多
关键词 塔里木盆地 英买35井区 泥质隔夹层 物性隔夹层 三端元定型法 空间展布 精细评价 剩余油
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激光蚀刻对CFRTP/AL复材层间结合性能影响的综合实验
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作者 戴明华 徐铭 +3 位作者 刘新 张红哲 薛冰 于欣 《实验技术与管理》 北大核心 2025年第2期169-176,共8页
提出基于激光精密加工改善CFRTP/AL复材层间结合性能的方法,并将其引入本科实验教学,设计了多学科交叉的综合实验。基于单因素分析法,探究了激光蚀刻工艺参数对微织构形貌的影响;设计单搭接正交实验,研究了激光功率、激光速度和光斑间距... 提出基于激光精密加工改善CFRTP/AL复材层间结合性能的方法,并将其引入本科实验教学,设计了多学科交叉的综合实验。基于单因素分析法,探究了激光蚀刻工艺参数对微织构形貌的影响;设计单搭接正交实验,研究了激光功率、激光速度和光斑间距对CFRTP/AL复材层间结合性能的影响;确定了最佳工艺组合,分析了结合界面的失效形貌和失效机理。实验结果表明,激光蚀刻可以有效提高CFRTP/AL复材的层间结合性能。由科研转化的该综合实验不仅可以扩宽学生的认知视野,锻炼创新实践能力,还可以培养其科研思维、探索精神和基本科研能力。 展开更多
关键词 激光加工 复合材料 层间结合性能 实验教学
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盘州地区峨眉山玄武岩组煤夹层储层特征初探
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作者 唐代学 王艇 +1 位作者 冯运富 田永红 《煤炭技术》 CAS 2025年第1期111-115,共5页
通过松河井田煤层气探井及相关资料,论证了该区峨眉山玄武岩组煤系夹层32^(#)煤层发育情况、煤层特征等;对比分析了玄武岩组煤系夹层32^(#)煤与龙潭组3^(#)煤在煤体结构、煤层厚度、渗透率、含气性等煤储层特征,认为玄武岩组32^(#)煤层... 通过松河井田煤层气探井及相关资料,论证了该区峨眉山玄武岩组煤系夹层32^(#)煤层发育情况、煤层特征等;对比分析了玄武岩组煤系夹层32^(#)煤与龙潭组3^(#)煤在煤体结构、煤层厚度、渗透率、含气性等煤储层特征,认为玄武岩组32^(#)煤层气抽采前景较好,可作为龙潭组煤层气地面抽采的有效补充。 展开更多
关键词 峨眉山玄武岩组 煤系夹层 储存特征 松河井田
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中间层对铝/镁搅拌摩擦焊界面组织与性能的影响
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作者 陈书锦 何亚斌 +2 位作者 徐洋 田雄文 赵浩钰 《焊接学报》 北大核心 2025年第2期46-54,共9页
采用Ag箔和Zn箔作为中间层,对2 mm厚5052铝合金和AZ31镁合金进行对接焊接,分析了不同中间层对接头界面IMCs厚度、分布和类型的影响规律.结果表明,不加中间层的接头界面IMCs厚度为3.52μm,主要为Al_(3)Mg_(2)和Al_(12)Mg_(17),且沿板厚... 采用Ag箔和Zn箔作为中间层,对2 mm厚5052铝合金和AZ31镁合金进行对接焊接,分析了不同中间层对接头界面IMCs厚度、分布和类型的影响规律.结果表明,不加中间层的接头界面IMCs厚度为3.52μm,主要为Al_(3)Mg_(2)和Al_(12)Mg_(17),且沿板厚方向在界面处连续分布;接头在带状区域发生断裂,抗拉强度和断后伸长率分别为175 MPa和2.75%,呈现脆性断裂特征.与纯Al/Mg接头相对比,加入Ag中间层接头界面IMCs厚度、分布和类型都发生了改变,IMCs厚度减小到2.38μm,界面上的Al_(3)Mg_(2)和Al_(12)Mg_(17)转变为不连续分布,同时生成了Ag_(2)Al和Mg_(3)Ag,接头抗拉强度和断后伸长率达到最高,分别为190 MPa和5.13%,呈韧性断裂特征.加入Zn中间层的接头界面IMCs厚度为3.09μm,在界面上并未生成含Zn类IMCs,抗拉强度和断后伸长率均低于不加中间层和加入Ag中间层的接头,仅为161 MPa和1.45%. 展开更多
关键词 搅拌摩擦焊 铝/镁异种金属 Ag中间层 Zn中间层 金属间化合物
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石墨烯强化铜泡沫对SiC_(f)/SiC复合材料与高温合金钎焊接头组织性能的影响
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作者 张瑜 张宏强 +4 位作者 梅寒 龙伟民 张雷 赵伟 郭伟 《精密成形工程》 北大核心 2025年第3期49-57,共9页
目的通过石墨烯强化铜泡沫结合AgCuTi钎料实现SiC_(f)/SiC复合材料与Nb521合金的可靠钎焊连接,并系统研究石墨烯强化铜泡沫对接头微观组织和力学性能的影响。方法采用AgCuTi钎料结合石墨烯强化铜泡沫中间层的方法实现了SiC_(f)/SiC与Nb... 目的通过石墨烯强化铜泡沫结合AgCuTi钎料实现SiC_(f)/SiC复合材料与Nb521合金的可靠钎焊连接,并系统研究石墨烯强化铜泡沫对接头微观组织和力学性能的影响。方法采用AgCuTi钎料结合石墨烯强化铜泡沫中间层的方法实现了SiC_(f)/SiC与Nb521合金的可靠钎焊连接。通过显微组织观察、能谱分析和剪切强度测试,系统研究了石墨烯强化铜泡沫对钎焊接头的影响。结果引入石墨烯强化铜泡沫后,焊缝中的Cu(s,s)从针状转变为块状,同时Ti_(2)Cu均匀弥散分布在Cu(s,s)周围,形成互锁效应与复合强化效应。钎焊接头的剪切强度提升至85 MPa,块状Cu(s,s)的形成和Ti_(2)Cu的均匀分布改善了焊缝的韧性。结论石墨烯强化泡沫铜作为中间层有效改善了钎焊接头的微观组织,促进了块状Cu(s,s)的形成,优化了Ti_(2)Cu的分布,从而显著提高了接头的剪切强度和热稳定性。 展开更多
关键词 真空钎焊 SiC_(f)/SiC复合材料 中间层 微观组织 力学性能
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中间层和管坯长径比对TA15/YG8复合管界面组织与剪切强度的影响
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作者 何维均 田宇禾 +3 位作者 胥政 曹宇 贾顺杰 蒋斌 《材料热处理学报》 北大核心 2025年第2期62-71,共10页
为了综合钛合金和硬质合金的优异性能,制备了TA15钛合金/YG8硬质合金复合管。重点分析了中间层(Ni和Fe箔)和长径比(硬质合金管长度和其外径之间的比值)对TA15钛合金/YG8硬质合金复合管的界面组织与剪切强度的影响。其中,采用圆环试样评... 为了综合钛合金和硬质合金的优异性能,制备了TA15钛合金/YG8硬质合金复合管。重点分析了中间层(Ni和Fe箔)和长径比(硬质合金管长度和其外径之间的比值)对TA15钛合金/YG8硬质合金复合管的界面组织与剪切强度的影响。其中,采用圆环试样评价复合管的整体界面剪切强度,采用条状试样测试局部界面剪切强度。结果表明:添加Ni中间层能显著促进界面元素扩散并形成Ti-Ni金属间化合物,而添加Fe中间层后界面元素扩散距离较短,并且添加Ni中间层的界面局部剪切强度高于添加Fe中间层;复合管的整体界面剪切强度(160~250 MPa)显著高于局部界面剪切强度(11~32 MPa),主要是由TA15与YG8之间的热应力所致;相较于小长径比,大长径比复合管的界面扩散反应层更厚、界面剪切强度更低,这与其采用小直径的TA15管坯和更慢的冷却速度有关。 展开更多
关键词 TA15/YG8复合管 扩散复合 界面组织 剪切强度 中间层
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超强基层沥青路面力学分析与材料制备
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作者 谭波 郑港 +2 位作者 李青 谢恩连 刘敬霜 《河南理工大学学报(自然科学版)》 北大核心 2025年第2期186-194,共9页
目的为提升沥青路面结构性能并实现低碳目标,提出AC+超强基层沥青路面结构以减薄沥青路面结构厚度。方法首先采用Bisar软件对超强基层路面结构进行力学响应规律分析,提出沥青路面结构和超强基层材料设计参数;其次,开展正交试验设计,分... 目的为提升沥青路面结构性能并实现低碳目标,提出AC+超强基层沥青路面结构以减薄沥青路面结构厚度。方法首先采用Bisar软件对超强基层路面结构进行力学响应规律分析,提出沥青路面结构和超强基层材料设计参数;其次,开展正交试验设计,分析硅灰、粉煤灰、胶砂比参数对超强基材料力学性能影响,经极差与方差分析,寻找最优配合比;最后,通过劈裂抗拉试验,对比撒布碎石、刷毛刻槽、环氧树脂、喷洒改性沥青和橡胶沥青5种不同方式沥青层和超强基层的黏结性能。结果结果表明,当超强基层厚度为0.08 m时,弹性模量为40 GPa,结构总厚度0.52 m超强基层沥青路面沥青混合料层和无机结合料层疲劳开裂寿命高于总厚度为0.74 m常规沥青路面的。硅灰质量分数13%,粉煤灰质量分数11%,胶砂比0.8,水胶比0.25为超强基层材料最优配比。经劈裂抗拉强度测试,环氧树脂黏结最优,撒布碎石黏结次之,橡胶沥青黏结最差。结论路面厚度减薄情况下,AC+超强基层沥青路面性能优于常规沥青路面;提出了低碳、经济的新型沥青路面结构形式和材料制备方法;分析了沥青面层与超强基层的层间结合性能,并推荐采用撒布碎石方式,为复合沥青路面提供一种新的可行途径。 展开更多
关键词 复合式路面 超高性能混凝土 正交试验 配合比设计 层间结合
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