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Femtosecond laser modulated into Bessel beam by spatial light modulator for Fresnel zone plate processing
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作者 DUAN Lian ZHOU Fang +3 位作者 KONG De-jian ZHANG Fan SUN Xiao-yan DUAN Ji-an 《Journal of Central South University》 2025年第2期469-482,共14页
Femtosecond laser processing is an important machining method for micro-optical components such as Fresnel zone plate(FZP).However,the low processing efficiency of the femtosecond laser restricts its application.Here,... Femtosecond laser processing is an important machining method for micro-optical components such as Fresnel zone plate(FZP).However,the low processing efficiency of the femtosecond laser restricts its application.Here,a femtosecond laser Bessel beam is proposed to process micro-FZP,which is modulated from a Gaussian beam to a Bessel annular beam.The processing time for FZP with an outer diameter of 60μm is reduced from 30 min to 1.5 min on an important semiconductor material gallium arsenide(GaAs),which significantly improves the processing efficiency.In the modulation process,a central ablation hole that has an adverse effect on the diffraction performance is produced,and the adverse effect is eliminated by superimposing the blazed grating hologram.Meanwhile,the FZP machined by spatial light modulator(SLM)has good morphology and higher diffraction efficiency,which provides a strong guarantee for the application of micro-FZP in computed tomography and solar photovoltaic cells. 展开更多
关键词 femtosend laser Fresnel zone plate spatial light modulator Bessel beam GAAS
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A general viscoelastic foundation model for vibration analysis of functionally graded sandwich plate with auxetic core
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作者 Mofareh Hassan Ghazwani Ali Alnujaie Pham Van Vinh 《Defence Technology(防务技术)》 2025年第4期40-58,共19页
This study presents a significant advancement in the vibration analysis of functionally graded sandwich plates with auxetic cores by introducing a general viscoelastic foundation model that more accurately reflects th... This study presents a significant advancement in the vibration analysis of functionally graded sandwich plates with auxetic cores by introducing a general viscoelastic foundation model that more accurately reflects the complex interactions between the plate and the foundation.The novelty of this study is that the proposed viscoelastic foundation model incorporates elastic and damping effects in both the Winkler and Pasternak layers.To develop the theoretical framework for this analysis,the higher-order shear deformation theory is employed,while Hamilton's principle is used to derive the governing equations of motion.The closed-form solution is used to determine the damped vibration behaviors of the sandwich plates.The precision and robustness of the proposed mathematical model are validated through several comparison studies with existing numerical results.A detailed parametric study is conducted to investigate the influence of various parameters,including the elastic and damping coefficients of the foundation,the material gradation,and the properties of the auxetic core on the vibration behavior of the plates.The numerical results provide new insights into the vibration characteristics of sandwich plates with auxetic cores resting on viscoelastic foundation,highlighting the significant role of the two damping coefficients and auxetic cores in the visco-vibration behavior of the plates. 展开更多
关键词 Damped vibration Viscoelastic foundation Sandwich plates Auxetic core Honeycomb core Negative Poisson's ratio
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Influence of shaped charge jet state on its interaction with ERA flying plate
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作者 Nicolas Reboul Ashwin Chinnayya +5 位作者 Frederic Paintendre Simon Dalle Piagge Vincent Jaulin Jerome Limido Anthony Colle Fabien Rondot 《Defence Technology(防务技术)》 2025年第7期355-370,共16页
The Explosive Reactive Armors(ERA)are really efficient at reducing Shaped Charge Jet(SCJ)performance.The main destabilizing mechanism is the transverse movement of the front and rear moving plates(MP)on the SCJ.Theref... The Explosive Reactive Armors(ERA)are really efficient at reducing Shaped Charge Jet(SCJ)performance.The main destabilizing mechanism is the transverse movement of the front and rear moving plates(MP)on the SCJ.Therefore,a good understanding of the interaction SCJ/MP is essential for improving both weapon and armor systems.In a previous article,we have shown that interaction regimes are mainly influenced by the local collision geometry.Thus,in the collision point frame,the angle of collision be-tween the continuous SCJ and the MP is a key parameter.This flow angle is acute for the Backward Moving plate(BMP)moving against the SCJ and obtuse for the Forward Moving Plate(FMP)moving alongside it.In the former,the jet is simply deflected,which is the regime 1 of deflection.In the latter,the interaction turns on an alternative creation of fragment and ligament,which is the regime 2.Fragments are parts of the jet that are only slightly deflected while ligaments are the curved material bridges that connect two consecutive fragments.When stretching,the jet is systematically subject to instabilities that disturb its surface,creating necks along it.Their growth finally leads to the jet fragmentation.In this article,we focus on this jet distur-bance and its consequences on the SCJ/MP interaction.An experimental set-up was built to implement the interaction between a SCJ and a moving plate for different collision points,at different stand-off distances.The plate can interact with a smooth SCJ or a disturbed SCJ at a close and a far stand-off distance,respectively.One of the main results is the visualization of a regime change in SCJ/BMP interaction.A regime 1(deflection)interaction changes into a ligament regime interaction(similar to a FMP regime 2)when the collision point stand-off is increased.It is proposed that this change can be attributed as the increase of the amplitude of the jet surface disturbances.This phenomenon is well captured by the gSPH simula-tions.Finally,using both experimental and numerical approaches,we propose a new detailed analysis of the different phenomena occurring during the interaction between a disturbed-surface jet and a moving plate.Interaction regime changes are linked to jet local geometry changes.The interactions of a BMP with a smooth SCJ or with a disturbed surface SCJ are geometrically not the same and,thus,generate different local flows and interaction mechanisms.However,some other simulations have been carried out with constant velocity jet whose surface has been previously disturbed.These simulations underline the influence of both disturbance wavelength l and amplitude A on the interaction regimes.Surface disturbances of the SCJ,linked to its stretching,have a major influence on its interaction with a moving plate. 展开更多
关键词 Shaped charge jet disturbances Single moving plate Necks and bumps and fragmentation gSPH simulations
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Effects of horizontal splitter plates on the vortex-induced vibration and aerostatic characteristics of twin separated parallel decks for a rail-cum-road bridge
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作者 HE Xu-hui YANG Jia-feng +2 位作者 LIU Lu-lu ZOU Yun-feng HE Jing 《Journal of Central South University》 2025年第3期1024-1043,共20页
Installing the splitter plates is a passive aerodynamic solution for eliminating vortex-induced vibration (VIV). However, the influences of splitter plates on the VIV and aerostatic performances are more complicated d... Installing the splitter plates is a passive aerodynamic solution for eliminating vortex-induced vibration (VIV). However, the influences of splitter plates on the VIV and aerostatic performances are more complicated due to aerodynamic interference between highway and railway decks. To study the effects of splitter plates, wind tunnel experiments for measuring VIV and aerostatic forces of twin decks under two opposite flow directions were conducted, while the surrounding flow and wind pressure of static twin decks with and without splitter plates are numerically simulated. The results showed that the incoming flow direction affects the VIV response and aerostatic coefficients. The highway deck has poor vertical and torsional VIV, and the VIV region and amplitude are different under different directions. While the railway deck only has vertical VIV when located upstream. The splitter plates can impede the process of vortex generation, shedding and impinging at the gap between twin deck, and significantly reducing the surface fluctuating pressure coefficient, thus effectively suppressing the VIV of twin decks. While, the splitter plates hurt the upstream deck regarding static wind stability and have little effect on the downstream deck. The splitter plates of appropriate width are recommended to improve VIV performances in twin parallel bridges. 展开更多
关键词 splitter plates vortex-induced vibration(VIV) aerostatic characteristic wind tunnel test twin parallel decks the rail-cum-road bridges computational fluid dynamics
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The interaction between a shaped charge jet and a single moving plate 被引量:1
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作者 Andreas Helte Jonas Lundgren Jonas Candle 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第1期1-13,共13页
Reactive armour is a very efficient add-on armour against shaped charge threats.Explosive reactive armour consists of one or several plates that are accelerated by an explosive.Similar but less violent acceleration of... Reactive armour is a very efficient add-on armour against shaped charge threats.Explosive reactive armour consists of one or several plates that are accelerated by an explosive.Similar but less violent acceleration of plates can also be achieved in a completely inert reactive armour.To be efficient against elongated jets,the motion of the plates needs to be inclined against the jet such that a sliding contact between the jet and the plates is established.This sliding contact causes a deflection and thinning of the jet.Under certain circumstances,the contact will become unstable,leading to severe disturbances on the jet.These disturbances will drastically reduce the jet penetration performance and it is therefore of interest to study the conditions that leads to an unstable contact.Previous studies on the interaction between shaped charge jets and flyer plates have shown that it is mainly the forward moving plate in an explosive reactive armour that is effective in disturbing the jet.This is usually attributed to the higher plate-to-jet mass flux ratio involved in the collision of the forward moving plate compared to the backward moving plate.For slow moving plates,as occurs in inert reactive armour,the difference in mass flux for the forward and backward moving plate is much lesser,and it is therefore of interest to study if other factors than the mass flux influences on the protection capability.In this work,experiments have been performed where a plate is accelerated along its length,interacting with a shaped charge jet that is fired at an oblique angle to the plate’s normal,either against or along the plate’s velocity.The arrangement corresponds to a jet interacting with a flyer plate from a reactive armour,with the exception that the collision velocity is the same for both types of obliquities in these experiments.The experiments show that disturbances on the jet are different in the two cases even though the collision velocities are the same.Numerical simulations of the interaction support the observation.The difference is attributed to the character of the contact pressure in the interaction region.For a backward moving plate,the maximum contact pressure is obtained at the beginning of the interaction zone and the contact pressure is therefore higher upstream than downstream of the jet while the opposite is true for a forward moving plate.A negative interface pressure gradient with respect to the jet motion results in a more stable flow than a positive,which means that the jet-plate contact is more stable for a backward moving plate than for a forward moving plate.A forward moving plate is thus more effective in disturbing the jet than a backward moving plate,not only because of the higher jet to plate mass flux ratio but also because of the character of the contact with the jet. 展开更多
关键词 Reactive armour Flyer plate Shaped charge jet
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Exact solution for thermal vibration of multi-directional functionally graded porous plates submerged in fluid medium 被引量:1
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作者 Quoc-Hoa Pham Van Ke Tran Phu-Cuong Nguyen 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第5期77-99,共23页
An analytical method for analyzing the thermal vibration of multi-directional functionally graded porous rectangular plates in fluid media with novel porosity patterns is developed in this study.Mechanical properties ... An analytical method for analyzing the thermal vibration of multi-directional functionally graded porous rectangular plates in fluid media with novel porosity patterns is developed in this study.Mechanical properties of MFG porous plates change according to the length,width,and thickness directions for various materials and the porosity distribution which can be widely applied in many fields of engineering and defence technology.Especially,new porous rules that depend on spatial coordinates and grading indexes are proposed in the present work.Applying Hamilton's principle and the refined higher-order shear deformation plate theory,the governing equation of motion of an MFG porous rectangular plate in a fluid medium(the fluid-plate system)is obtained.The fluid velocity potential is derived from the boundary conditions of the fluid-plate system and is used to compute the extra mass.The GalerkinVlasov solution is used to solve and give natural frequencies of MFG porous plates with various boundary conditions in a fluid medium.The validity and reliability of the suggested method are confirmed by comparing numerical results of the present work with those from available works in the literature.The effects of different parameters on the thermal vibration response of MFG porous rectangular plates are studied in detail.These findings demonstrate that the behavior of the structure within a liquid medium differs significantly from that within a vacuum medium.Thereby,they offer appropriate operational approaches for the structure when employed in various mediums. 展开更多
关键词 plate-fluid contact Galerkin Vlasov's method Multi-directional functionally graded plate Novel porosity Thermal vibration Refined higher-order shear deformation theory
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Ultimate Strength of Hull Perforated Plate Under Extreme Cyclic Loading
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作者 ZHENG Ji-qian FENG Liang CHEN Xu-guang 《船舶力学》 EI CSCD 北大核心 2024年第12期1925-1939,共15页
In this study, the influence of opening parameters on the ultimate strength of perforated plates subjected to extreme cyclic loading in the presence of material kinematic hardening and isotro pic hardening was analyze... In this study, the influence of opening parameters on the ultimate strength of perforated plates subjected to extreme cyclic loading in the presence of material kinematic hardening and isotro pic hardening was analyzed. It is found that the ultimate strength of the perforated plates decreases rapidly and stabilizes in the first four cycles. Plates with oblong openings have a greater ultimate strength compared to plates with rectangular openings, while the relative strengthening ratio decreases over the duration of the cycle. The location of the openings is also an important parameter that affects the strength of the structure, as the plates with openings close to the edges in the longitudinal direction have higher strengths, while in the transverse direction the strengths are higher when the openings are close to the center. Among the three opening-strengthening methods compared, the Carling stiffener method maintains a better strengthening effect under cyclic loads for many periods. 展开更多
关键词 extreme cyclic loading perforated plate ultimate strength
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Impact of radiation,melting,and chemical reaction on magnetohydrodynamics nanoparticle aggregation flow across parallel plates
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作者 Ram Prakash SHARMA J.K.MADHUKESH +3 位作者 Sunendra SHUKLA Amal ABDULRAHMAN B.C.PRASANNAKUMARA K.V.NAGARAJA 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第10期3715-3729,共15页
The heat transfer between two corresponding plates,disks,and concentric pipes has many applications,including water cleansing and lubrication.Furthermore,TiO_(2)-water-based nanofluids are used widely because it is us... The heat transfer between two corresponding plates,disks,and concentric pipes has many applications,including water cleansing and lubrication.Furthermore,TiO_(2)-water-based nanofluids are used widely because it is useful for operating and controlling the temperature,especially in photovoltaic technology and solar panels.Motivated by these applications,the current study is based on the nanoparticle aggregation effect on magnetohydrodynamics(MHD)flow via rotating parallel plates with the chemical reaction.To achieve maximum heat transportation,the Bruggeman model is used to adapt the Maxwell model.Also,melting and thermal radiation effects are considered in the modeling to discuss heat transport.The Runge-Kutta-Fehlberg 4th−5th order method is used to attain numerical solutions.The main focus of this study is to see the thermodynamic behavior considering several aspects of nanoparticle aggregation.The heat transfer rate between the parallel plates is enhanced by improving the thermophoresis,radiation,and Brownian motion parameters.The rise in Schmidt number and chemical reaction rate parameter decreases the concentration distribution.This study will be helpful in enhancing the thermal efficiency of photovoltaic technology in solar plates,water purifying,thermal management of electronic devices,designing effective cooling systems,and other sustainable technologies. 展开更多
关键词 nanoparticle aggregation thermal radiation parallel plates magnetic field chemical reaction
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An equivalent target plate damage probability calculation mathematics model and damage evaluation method
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作者 Hanshan Li Xiaoqian Zhang 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第11期82-103,共22页
Aiming at the requirement of damage testing and evaluation of equivalent target plate based on the explosion of intelligent ammunition, this paper proposes a novel method for damage testing and evaluation method of ci... Aiming at the requirement of damage testing and evaluation of equivalent target plate based on the explosion of intelligent ammunition, this paper proposes a novel method for damage testing and evaluation method of circumferential equivalent target plate. Leveraging the dispersion characteristics parameters of fragment, we establish a calculation model of the fragment power situation and the damage calculation model under the condition of fragment ultimate penetration equivalent target plate. The damage model of equivalent target plate involves the fragment dispersion density, the local perforation damage criterion, the tearing damage model, and the damage probability. We use the camera to obtain the image of the equivalent target plate with fragment perforation, and research the algorithm of fragment distribution position recognition and fragment perforation area calculation method on the equivalent target plate by image processing technology. Based on the obtained parameters of the breakdown position and perforation area of fragments on equivalent target plate, we apply to damage calculation model of equivalent target plate, and calculate the damage probability of each equivalent target plate, and use the combined probabilistic damage calculation method to obtain the damage evaluation results of the circumferential equivalent target plate in an intelligent ammunition explosion experiment. Through an experimental testing, we verify the feasibility and rationality of the proposed damage evaluation method by comparison, the calculation results can reflect the actual damage effect of the equivalent target plate. 展开更多
关键词 Target damage evaluation Damage probability FRAGMENTS Equivalent target plate Image processing
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Micro defects formation and dynamic response analysis of steel plate of quasi-cracking area subjected to explosive load
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作者 Zheng-qing Zhou Ze-chen Du +5 位作者 Xiao Wang Hui-ling Jiang Qiang Zhou Yu-long Zhang Yu-zhe Liu Pei-ze Zhang 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第1期580-593,共14页
As the protective component,steel plate had attracted extensive attention because of frequently threats of explosive loads.In this paper,the evolution of microstructure and the mechanism of damage in the quasi-crackin... As the protective component,steel plate had attracted extensive attention because of frequently threats of explosive loads.In this paper,the evolution of microstructure and the mechanism of damage in the quasi-cracking area of steel plate subjected to explosive load were discussed and the relationships between micro defects and dynamic mechanical response were revealed.After the explosion experiment,five observation points were selected equidistant from the quasi-cracking area of the section of the steel plate along the thickness direction,and the characteristics of micro defects at the observation points were analyzed by optical microscope(OM),scanning electron microscope(SEM) and electron backscattered diffraction(EBSD).The observation result shows that many slip bands(SBs) appeared,and the grain orientation changed obviously in the steel plate,the two were the main damage types of micro defects.In addition,cracks,peeling pits,grooves and other lager micro defects were appeared in the lower area of the plate.The stress parameters of the observation points were obtained through an effective numerical model.The mechanism of damage generation and crack propagation in the quasicracking area were clarified by comparing the specific impulse of each observation point with the corresponding micro defects.The result shows that the generation and expansion of micro defects are related to the stress area(i.e.the upper compression area,the neutral plane area,and the lower tension area).The micro defects gather and expand at the grain boundary,and will become macroscopic damage under the continuous action of tensile stress.Besides,the micro defects at the midpoint of the section of the steel plate in the direction away from the explosion center(i.e.the horizontal direction) were also studied.It was found that the specific impulse at these positions were much smaller than that in the thickness direction,the micro defects were only SBs and a few micro cracks,and the those decreased with the increase of the distance from the explosion center. 展开更多
关键词 Explosive load Quasi-cracking area Micro defects Steel plate Dynamic response Numerical simulation
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Investigation of system parameters towards safer impact based shock-to-detonation transition in a novel laser driven flyer plate prototype
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作者 Gonca Saglam Ozkasapoglu Selis Onel 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第9期103-113,共11页
Laser driven flyer plate technology offers improved safety and reliability for detonation of explosives in industrial applications ranging from mining and stone quarrying to the aerospace and defense industries.This s... Laser driven flyer plate technology offers improved safety and reliability for detonation of explosives in industrial applications ranging from mining and stone quarrying to the aerospace and defense industries.This study is based on developing a safer laser driven flyer plate prototype comprised of a laser initiator and a flyer plate subsystem that can be used with secondary explosives.System parameters were optimized to initiate the shock-to-detonation transition(SDT)of a secondary explosive based on the impact created by the flyer plate on the explosive surface.Rupture of the flyer was investigated at the mechanically weakened region located on the interface of these subsystems,where the product gases from the deflagration of the explosive provide the required energy.A bilayer energetic material was used,where the first layer consisted of a pyrotechnic component,zirconium potassium perchlorate(ZPP),for sustaining the ignition by the laser beam and the second layer consisted of an insensitive explosive,cyclotetramethylene-tetranitramine(HMX),for deflagration.A plexiglass interface was used to enfold the energetic material.The focal length of the laser beam from the diode was optimized to provide a homogeneous beam profile with maximum power at the surface of the ZPP.Closed bomb experiments were conducted in an internal volume of 10 cm^(3) for evaluation of performance.Dependency of the laser driven flyer plate system output on confinement,explosive density,and laser beam power were analyzed.Measurements using a high-speed camera resulted in a flyer velocity of 670±20 m/s that renders the prototype suitable as a laser detonator in applications,where controlled employment of explosives is critical. 展开更多
关键词 Laser driven flyer plate Shock to detonation transition DETONATION Secondary explosives Pyrotechnic materials CONFINEMENT
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Study on damage mechanism and damage distribution of the rear plate under impact of debris cloud
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作者 Chenyang Wu Xiaowei Chen Qiguang He 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第5期151-167,共17页
The debris cloud generated by the hypervelocity impact(HVI)of orbiting space debris directly threatens the spacecraft.A full understanding of the damage mechanism of rear plate is useful for the optimal design of prot... The debris cloud generated by the hypervelocity impact(HVI)of orbiting space debris directly threatens the spacecraft.A full understanding of the damage mechanism of rear plate is useful for the optimal design of protective structures.In this study,the hypervelocity yaw impact of a cylindrical aluminum projectile on a double-layer aluminum plate is simulated by the FE-SPH adaptive method,and the damage process of the rear plate under the impact of the debris cloud is analyzed based on the debris cloud structure.The damage process can be divided into the main impact stage of the debris cloud and the structural response of the rear plate.The main impact stage lasts a short time and is the basis of the rear plate damage.In the stage of structure response,the continuous deformation and inertial motion of the rear plate dominate the perforation of the rear plate.We further analyze the damage mechanism and damage distribution characteristics of the rear plate in detail.Moreover,the connection between velocity space and position space of the debris cloud is established,which promotes the general analysis of the damage law of debris cloud.Based on the relationship,the features of typical damage areas are identified by the localized fine analysis.Both the cumulative effect and structural response cause the perforation of rear plate;in the non-perforated area,cratering by the impact of hazardous fragments is the main damage mode of the rear plate. 展开更多
关键词 Damage of rear plate Debris cloud Secondary impact Hypervelocity yaw impact FE-SPH adaptive method
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西菲律宾海盆加瓜海脊沉没事件与西南琉球俯冲带形成时间探讨 被引量:1
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作者 高红芳 周洋 +7 位作者 李学杰 赵明辉 孙美静 聂鑫 张金鹏 周娇 罗伟东 王哲 《大地构造与成矿学》 北大核心 2025年第1期34-45,共12页
通过对加瓜海脊拖网获取得大量珊瑚和浅水微体古生物化石的研究发现,现今水深1506~2880 m的加瓜海脊曾在较长时期内处于浅水环境,而后经历了沉没事件。地形图和地震剖面显示:①加瓜海脊北部俯冲进入琉球构造带;②海脊北部发育的部分生... 通过对加瓜海脊拖网获取得大量珊瑚和浅水微体古生物化石的研究发现,现今水深1506~2880 m的加瓜海脊曾在较长时期内处于浅水环境,而后经历了沉没事件。地形图和地震剖面显示:①加瓜海脊北部俯冲进入琉球构造带;②海脊北部发育的部分生物礁随着俯冲活动埋藏于琉球构造带之下。根据大洋钻探钻井资料(DSDP)综合分析,琉球海沟沉积层序发育时代大致处于早中新世‒第四纪,地层覆盖于加瓜海脊生物礁之上,指示:①从早中新世起,加瓜海脊开始沉没并逐渐脱离浅水环境;②中中新世早期,生物礁逐渐停止生长;③海脊北部的生物礁被海沟沉积物覆盖。本次研究表明,作为菲律宾海板块组成部分的加瓜海脊参与了西南琉球海沟俯冲,而俯冲必然产生沉降,所以加瓜海脊的沉没是菲律宾海板块俯冲进入西南琉球构造带的结果。由此推断,加瓜海脊在早中新世便已开始向西南琉球构造带俯冲,这也应该是西南琉球俯冲带开始形成的时间。西南琉球俯冲带北部的弧前盆地受加瓜海脊俯冲的影响,被分为南澳盆地和东南澳盆地两部分,其形成时间约在中中新世早期。这些地质要素的形成过程揭示了板块汇合带构造单元次第形成的关系以及相互作用。 展开更多
关键词 菲律宾海板块 加瓜海脊 西南琉球俯冲带 形成时间
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锂离子电池不析锂充电边界辨析及优化充电方法 被引量:1
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作者 孙丙香 马仕昌 +2 位作者 陈昕 张旭博 张维戈 《电工技术学报》 北大核心 2025年第6期1960-1973,共14页
开发不析锂的优化充电方法对于缓解电动汽车用户充电焦虑、里程焦虑具有重要意义。当前优化充电研究中涉及析锂边界的不同应用形式,但是它们之间的一致性和差异性尚不明晰,同时缺少易于工程应用的优化充电方法。围绕以上问题,该文进行... 开发不析锂的优化充电方法对于缓解电动汽车用户充电焦虑、里程焦虑具有重要意义。当前优化充电研究中涉及析锂边界的不同应用形式,但是它们之间的一致性和差异性尚不明晰,同时缺少易于工程应用的优化充电方法。围绕以上问题,该文进行了析锂边界不同应用形式的辨析和优化充电研究。首先,搭建包含析锂副反应的高精度电化学模型,在25℃和10℃下验证了仿真精度。其次,利用二分法和比例积分微分控制算法获取了不同应用形式的析锂边界,包括析锂电流边界、析锂电压边界和析锂在线边界,辨析了三者间的本质一致性和差异性。最后,基于析锂电压边界和遗传算法,优化得到兼顾充电时间和充电容量的五阶段恒流充电方法,进一步地,提出了四种五阶段恒流恒压充电方法,并分析了恒压阶段对于充电效果的影响。与传统恒流充电对比,所提出的优化充电方法可以大幅缩短充电时间,并最大化充电容量。该文阐明了析锂边界不同应用形式间的异同,提出的充电方法易于实现工程应用,同时为优化充电提供了新的研究思路。 展开更多
关键词 锂离子电池 电化学模型 析锂边界 遗传算法 优化充电
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四边固支加筋板的振动特性求解方法 被引量:1
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作者 吴剑国 詹俊杰 +2 位作者 邹路遥 曲雪 尹铭禄 《浙江工业大学学报》 北大核心 2025年第1期8-14,103,共8页
针对船舶工程中常用的四边固支加筋板,进行了基于Rayleigh-Ritz法的振动特性求解方法研究。把加筋板分为板与扶强材2个部分考虑,利用板与扶强材的边界协调条件,采用薄板小挠度弯曲理论和欧拉梁理论推导了加筋板的横向振动的总能量方程,... 针对船舶工程中常用的四边固支加筋板,进行了基于Rayleigh-Ritz法的振动特性求解方法研究。把加筋板分为板与扶强材2个部分考虑,利用板与扶强材的边界协调条件,采用薄板小挠度弯曲理论和欧拉梁理论推导了加筋板的横向振动的总能量方程,应用Rayleigh-Ritz法建立单向加筋矩形板小挠度下的横向振动特征方程。编制了相关的计算程序,试算4种满足四边固支加筋板位移边界条件的位移函数基函数,通过与有限元结果的对比,选择一种效率和精度都较高的基函数进行多块加筋板计算,分析基函数的种类和阶数,以及加筋板规模对计算精度与效率的影响。通过改变加筋板的各项参数,分析了四边固支加筋板的振动固有特性和其变化规律。 展开更多
关键词 加筋板 横向振动 基函数 固有特性
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空心加压埋头螺钉与解剖型锁定加压钩板治疗第五跖骨近端Lawrence Ⅰ区骨折的比较研究
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作者 曹源 白梁宇 +4 位作者 崔增桢 符玉亮 李修智 吕扬 周方 《中国微创外科杂志》 北大核心 2025年第2期81-86,共6页
目的比较空心加压埋头螺钉(cannulated compression countersunk head screw,CS)与解剖型锁定加压钩板(anatomical locking compression hook plate,LCP)治疗第五跖骨近端LawrenceⅠ区骨折的疗效。方法回顾性分析2021年5月~2023年5月60... 目的比较空心加压埋头螺钉(cannulated compression countersunk head screw,CS)与解剖型锁定加压钩板(anatomical locking compression hook plate,LCP)治疗第五跖骨近端LawrenceⅠ区骨折的疗效。方法回顾性分析2021年5月~2023年5月60例第五跖骨近端Ⅰ区骨折的资料,其中CS组20例,LCP组40例。采用疼痛视觉模拟评分(Visual Analogue Scale,VAS)、美国足踝外科协会(American Orthopaedic Foot and Ankle Society,AOFAS)中足评分评价术后疗效,并记录术后并发症。结果60例手术均顺利完成,CS组手术时间短于LCP组[37(15~74)min vs.50.5(28~102)min,P=0.002]。骨折均愈合。术后即刻CS组VAS评分较LCP组低[3(2~5)分vs.4(2~5)分,P=0.004],术后3、6、12个月及末次随访2组差异无显著性(P>0.05);术后3个月CS组AOFAS中足评分较LCP组高[52(23~62)分vs.49(23~62)分,P=0.038],术后6、12个月及末次随访2组差异无显著性(P>0.05)。术后LCP组1例伤口浅表感染,3例远期慢性疼痛,6例术区异物感,其中5例1年后二次手术取出内固定物;CS组仅1例术区异物感。结论空心加压埋头螺钉与解剖型锁定加压钩板均可有效治疗第五跖骨近端Ⅰ区骨折。空心加压埋头螺钉手术时间较短,术后疼痛较轻,更利于早期功能康复。 展开更多
关键词 跖骨 骨折内固定术 螺钉 接骨板
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7065铝合金厚板的组织与力学性能研究
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作者 冯义成 王凤春 +3 位作者 张祥斌 王雷 马宝霞 李瑞珩 《航空制造技术》 北大核心 2025年第7期83-91,共9页
采用半连续铸造→均匀化→热轧→固溶→时效处理制备了壁厚为125 mm的7065铝合金厚板,随后借助金相显微镜、扫描电子显微镜、透射电子显微镜、差示扫描量热仪、X射线衍射仪和万能拉伸机等设备,研究了7065铝合金厚板不同壁厚位置的组织... 采用半连续铸造→均匀化→热轧→固溶→时效处理制备了壁厚为125 mm的7065铝合金厚板,随后借助金相显微镜、扫描电子显微镜、透射电子显微镜、差示扫描量热仪、X射线衍射仪和万能拉伸机等设备,研究了7065铝合金厚板不同壁厚位置的组织演变以及时效态的力学性能。试验结果表明,7065铝合金厚板铸态条件下表层组织细小,中心层组织较为粗大;均匀化态的η相体积分数较铸态下降了64.5%;热轧态表层的组织变形程度最大,中心层变形程度最小;时效态组织中,析出相以在晶粒内部析出的纳米尺度η'相为主,表层再结晶程度和析出相分数均高于中心层。7065铝合金厚板的不同位置力学性能差异性较小,沿平行于轧制方向(RD),中心层强度最高,抗拉强度、屈服强度和延伸率分别为560.1 MPa、539.6 MPa和13.7%。沿垂直于轧制方向(TD),1/4层强度最高,抗拉强度、屈服强度和延伸率分别为563.1 MPa、541.3 MPa和12.2%。本研究为设计和制备具有良好综合力学性能且性能均匀的7xxx铝合金厚板提供依据。 展开更多
关键词 7065铝合金 厚板 显微组织 力学性能 均匀性
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基于干涉条纹区域生长算法的平板玻璃平行度测量
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作者 王明军 黄一凡 +6 位作者 刘世杰 李梁玮 李蓬勃 李俊达 吴福林 徐学科 邵竹锋 《光学精密工程》 北大核心 2025年第10期1515-1523,共9页
为了实现平板玻璃平行度高精度、快速测量,提出了一种利用区域生长算法对干涉条纹图进行分割处理的测量新方法。采用菲索干涉仪采集平板玻璃前后表面反射产生的自干涉条纹,利用区域生长算法对采集的自干涉条纹进行区域分割,提取出自干... 为了实现平板玻璃平行度高精度、快速测量,提出了一种利用区域生长算法对干涉条纹图进行分割处理的测量新方法。采用菲索干涉仪采集平板玻璃前后表面反射产生的自干涉条纹,利用区域生长算法对采集的自干涉条纹进行区域分割,提取出自干涉条纹,统计出测量口径内的干涉条纹明条纹数目,从而实现平行度的测量。将区域生长算法与Sobel算法对比后发现,区域生长算法在干涉条纹提取方面表现更优。利用该算法对不同类型的干涉条纹进行测量,并将测量结果与ZYGO的测量结果对比,结果显示,基于区域生长算法的平行度测量误差小于1″。利用该图像处理的干涉测量方法,可以方便快速地对平板玻璃的平行度进行测量,提高了平板玻璃的检测效率,同时具有较高的测量精度。 展开更多
关键词 平板玻璃 平行度 区域生长 干涉测量
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园林建筑用Q345qDNH钢的表面化学镀与耐蚀耐磨性研究
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作者 张军 李芬芳 +1 位作者 赵雨晨 刘玉峰 《电镀与精饰》 北大核心 2025年第7期48-53,81,共7页
为了提升园林建筑用钢的表面耐蚀性和耐磨性,采用化学镀的方法在Q345qDNH钢基体表面制备了不同施镀时间的改性层,研究了施镀时间对钢基体表面镀镍层厚度、形貌、疏水性、耐蚀和耐磨性能的影响。结果表明,施镀时间为0.5h时,园林建筑用钢... 为了提升园林建筑用钢的表面耐蚀性和耐磨性,采用化学镀的方法在Q345qDNH钢基体表面制备了不同施镀时间的改性层,研究了施镀时间对钢基体表面镀镍层厚度、形貌、疏水性、耐蚀和耐磨性能的影响。结果表明,施镀时间为0.5h时,园林建筑用钢基体表面镀镍层较薄且不连续;施镀时间达到1.0h及以上时,钢基体表面可形成连续镀镍层,且施镀时间为2.0h时镀镍层(约为7µm)更加致密。随着施镀时间的延长,园林建筑用钢的表面粗糙度和与水的接触角逐渐增大,施镀时间达到1.0h及以上时试样表面呈现出超疏水特性(与水的接触角>150°)。相较于未施镀试样,施镀0.5~2.0h后园林建筑用钢的腐蚀电位正移、腐蚀电流密度减小,磨损体积和比磨损率都有所减小,耐蚀性和耐磨性有所增强,且施镀2.0h时腐蚀电流密度和比磨损率仅分别为未施镀试样的3.67%和5.16%,耐蚀性和耐磨性明显提高。 展开更多
关键词 园林建筑用钢 化学镀 施镀时间 耐蚀 耐磨性
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筛板萃取塔液滴行为及其影响因素
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作者 袁慎峰 闵彤 +1 位作者 陈志荣 尹红 《高校化学工程学报》 北大核心 2025年第2期218-227,共10页
为研究筛板萃取塔中的液滴行为,采用实验和模拟相结合的方法对液滴通过筛板的形态和筛板对液滴的聚并-破碎特性进行研究,定义筛板聚并-破碎指数。结果表明,液滴在不同实验条件下以不同的方式通过筛孔,主要可分为直接通过筛孔、破碎后通... 为研究筛板萃取塔中的液滴行为,采用实验和模拟相结合的方法对液滴通过筛板的形态和筛板对液滴的聚并-破碎特性进行研究,定义筛板聚并-破碎指数。结果表明,液滴在不同实验条件下以不同的方式通过筛孔,主要可分为直接通过筛孔、破碎后通过筛孔和在筛板上聚并后通过筛孔。体系界面张力较低时,筛板对液滴主要起破碎作用,筛板聚并-破碎指数随着孔径的增大而减小;体系界面张力较高时,筛板对液滴主要起聚并作用,筛板聚并-破碎指数随着孔径的增大而增大。同时,筛板聚并-破碎指数随着筛板浸润性变差而增大。基于实验数据提出估算筛板聚并-破碎指数的关联式,关联式平均偏差为0.1144,偏差较小,表明关联式可用于评估筛板对液滴的聚并-破碎特性。 展开更多
关键词 萃取塔 筛板 液滴行为 浸润性 VOF模拟
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