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Study on the formation characteristics of underwater hemispherical shaped charge jet and its penetration performance into concrete
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作者 Chao Cao Jinxiang Wang +5 位作者 Lingquan Kong Kui Tang Yujie Xiao Yangchen Gu Ming Yang Jian Wang 《Defence Technology(防务技术)》 2025年第5期180-196,共17页
Shaped charge has been widely used for penetrating concrete.However,due to the obvious difference between the propagation of shock waves and explosion products in water and air,the theory governing the formation of sh... Shaped charge has been widely used for penetrating concrete.However,due to the obvious difference between the propagation of shock waves and explosion products in water and air,the theory governing the formation of shaped charge jets in water as well as the underwater penetration effect of concrete need to be studied.In this paper,we introduced a modified forming theory of an underwater hemispherical shaped charge,and investigated the behavior of jet formation and concrete penetration in both air and water experimentally and numerically.The results show that the modified jet forming theory predicts the jet velocity of the hemispherical liner with an error of less than 10%.The underwater jets exhibit at least 3%faster and 11%longer than those in air.Concrete shows different failure modes after penetration in air and water.The depth of penetration deepens at least 18.75%after underwater penetration,accompanied by deeper crater with 65%smaller radius.Moreover,cracks throughout the entire target are formed,whereas cracks exist only near the penetration hole in air.This comprehensive study provides guidance for optimizing the structure of shaped charge and improves the understanding of the permeability effect of concrete in water. 展开更多
关键词 Shaped charge jet Underwater penetration Formation characteristic Concrete failure
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Experimental and numerical study of the interaction between a shaped charge jet and a single ERA moving plate
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作者 Nicolas Reboul Ashwin Chinnayya +5 位作者 Frédéric Paintendre Simon Dalle Piagge Vincent Jaulin Jérôme Limido Anthony Collé Fabien Rondot 《Defence Technology(防务技术)》 2025年第8期126-140,共15页
An analysis of the interaction mechanisms between a Shaped Charge Jet(SCJ) and a single Moving Plate(MP) is proposed in this article using both experimental and numerical approaches. First, an experimental set-up is p... An analysis of the interaction mechanisms between a Shaped Charge Jet(SCJ) and a single Moving Plate(MP) is proposed in this article using both experimental and numerical approaches. First, an experimental set-up is presented. Four collision tests have been performed: two tests in Backward Moving Plate(BMP) configuration, where the plate moves in opposition to jet, and two tests in Forward Moving Plate(FMP) configuration, where the plate moves alongside the jet. Based on the virtual origin approximation,a methodology(the Virtual Origin Method, VOM) is developed to extract quantities from the X-ray images, which serve as comparative data. γSPH simulations are carried out to complete the analysis, as they well capture the disturbance dynamics observed in the experiments. Based on these complementary experimental and numerical results, a new physical description is proposed through a detailed analysis of the interaction. It is shown that the SCJ/MP interaction is driven at first order by the contact geometry. Thus, BMP and FMP configurations do not generate the same disturbances because their local flow geometries are different. In the collision point frame of reference, the BMP flows in the same direction as the jet, causing its overall deflection. On the contrary, the FMP flow opposes that of the jet leading to an alternative creation of fragments and ligaments. An in-depth study, using the VOM shows that deflection angles, fragment-ligament creation frequencies, and deflection velocities evolve as the interaction progresses through slower jet elements. 展开更多
关键词 Shaped charge jet disturbance Single moving plate Virtual origin method gSPH simulations
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Experimental and numerical investigation of cavity characteristics in behind-armor liquid-filled containers under shaped charge jet impact
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作者 Shixin Ma Xiangdong Li Lanwei Zhou 《Defence Technology(防务技术)》 2025年第5期242-259,共18页
The cavity characteristics in liquid-filled containers caused by high-velocity impacts represent an important area of research in hydrodynamic ram phenomena.The dynamic expansion of the cavity induces liquid pressure ... The cavity characteristics in liquid-filled containers caused by high-velocity impacts represent an important area of research in hydrodynamic ram phenomena.The dynamic expansion of the cavity induces liquid pressure variations,potentially causing catastrophic damage to the container.Current studies mainly focus on non-deforming projectiles,such as fragments,with limited exploration of shaped charge jets.In this paper,a uniquely experimental system was designed to record cavity profiles in behind-armor liquid-filled containers subjected to shaped charge jet impacts.The impact process was then numerically reproduced using the explicit simulation program ANSYS LS-DYNA with the Structured Arbitrary Lagrangian-Eulerian(S-ALE)solver.The formation mechanism,along with the dimensional and shape evolution of the cavity was investigated.Additionally,the influence of the impact kinetic energy of the jet on the cavity characteristics was analyzed.The findings reveal that the cavity profile exhibits a conical shape,primarily driven by direct jet impact and inertial effects.The expansion rates of both cavity length and maximum radius increase with jet impact kinetic energy.When the impact kinetic energy is reduced to 28.2 kJ or below,the length-to-diameter ratio of the cavity ultimately stabilizes at approximately 7. 展开更多
关键词 Cavity characteristics Shaped charge jet Behind-armor liquid-filled container Impact kinetic energy Hydrodynamic ram
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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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Investigation of hydroxyl-terminated polybutadiene propellant breaking characteristics and mechanism impacted by submerged cavitation water jet 被引量:4
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作者 Wenjun Zhou Meng Zhao +3 位作者 Bo Liu Youzhi Ma Youzhi Zhang Xuanjun Wang 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第3期559-572,共14页
A submerged cavitation water jet(SCWJ)is an effective method to recycle solid propellant from obsolete solid engines by the breaking method.Solid propellant's breaking modes and mechanical process under SCWJ impac... A submerged cavitation water jet(SCWJ)is an effective method to recycle solid propellant from obsolete solid engines by the breaking method.Solid propellant's breaking modes and mechanical process under SCWJ impact are unclear.This study aims to understand those impact breaking mechanisms.The hydroxyl-terminated polybutadiene(HTPB)propellant was chosen as the research material,and a self-designed test system was used to conduct impact tests at four different working pressures.The high-speed camera characterized crack propagation,and the DIC method calculated strain change during the impact process.Besides,micro and macro fracture morphologies were characterized by scanning electron microscope(SEM)and computed tomography(CT)scanning.The results reveal that the compressive strain concentration region locates right below the nozzle,and the shear strain region distributes symmetrically with the jet axis,which increases to 4% at first 16th ms,the compressive strain rises to 2% and 6% in the axial and transverse direction,respectively.The two tensile cracks formed first at the compression strain concentrate region,and there generate many shear cracks around the tensile cracks,and those shear cracks that develop and aggregate cause the cracks to become wider and cut through the tensile cracks,forming the tensile-shear cracks and the impact parts eventually fail.The HTPB propellant forms a breaking hole shaped conical after impact 10 s.The mass loss increases by 17 times at maximum,with the working pressure increasing by three times.Meanwhile,the damage value of the breaking hole remaining on the surface increases by 7.8 times while 2.9 times in the depth of the breaking hole.The breaking efficiency is closely affected by working pressures.The failure modes of HTPB impacted by SCWJ are classified as tensile crack-dominated and tensile-shear crack-dominated damage mechanisms. 展开更多
关键词 Submerged cavitation water jet Hydroxyl-terminated polybutadiene propellant Breaking characteristics Failure modes
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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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Numerical and experimental investigation into the evolution of the shock wave when a muzzle jet impacts a constrained moving body 被引量:1
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作者 Zijie Li Hao Wang +1 位作者 Changshun Chen Kun Jiang 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第3期317-326,共10页
The gun-track launch system is a new special launch device that connects the track outside the muzzle.Because it is constrained by the track,the characteristics of development of the muzzle jet differ from those of th... The gun-track launch system is a new special launch device that connects the track outside the muzzle.Because it is constrained by the track,the characteristics of development of the muzzle jet differ from those of the traditional muzzle jet.Specifically,it changes from freely developing to doing so in a constrained manner,where this results in an asymmetric direction of flow as well as spatio-temporal coupling-induced interference between various shock waves and the formation of vortices.In this background,the authors of this article formulate and consider the development and characteristics of evolution of the muzzle jet as it impacts a constrained moving body.We designed simulations to test the gun-track launch system,and established a numerical model based on the dynamic grid method to explore the development and characteristics of propagation of disturbances when the muzzle jet impacted a constrained moving body.We also considered models without a constrained track for the sake of comparison.The results showed that the muzzle jet assumed a circumferential asymmetric shape,and tended to develop in the area above the muzzle.Because the test platform was close to the ground,the muzzle jet was subjected to reflections from it that enhanced the development and evolution of various forms of shock waves and vortices in the muzzle jet to exacerbate its rate of distortion and asymmetric characteristics.This in turn led to significant differences in the changes in pressure at symmetric points that would otherwise have been identical.The results of a comparative analysis showed that the constrained track could hinder the influence of reflections from the ground on the muzzle jet to some extent,and could reduce the velocity of the shock waves inducing the motion of the muzzle as well as the Mach number of the moving body.The work here provides a theoretical basis and the requisite technical support for applications of the gun-track launch system.It also sheds light on the technical bottlenecks that need to be considered to recover high-value warheads. 展开更多
关键词 Shock wave/vortex interference Muzzle jet Constrained boundary Dynamic grid
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Laser-assisted water jet machining of high quality micro-trap structures on stainless steel surfaces 被引量:1
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作者 LIU Li YAO Peng +3 位作者 CHU Dong-kai XU Xiang-yue QU Shuo-shuo HUANG Chuan-zhen 《中国光学(中英文)》 EI CAS CSCD 北大核心 2024年第6期1476-1488,共13页
Secondary electron emission(SEE)has emerged as a critical issue in next-generation accelerators.Mitigating SEE on metal surfaces is crucial for enhancing the stability and emittance of particle accelerators while exte... Secondary electron emission(SEE)has emerged as a critical issue in next-generation accelerators.Mitigating SEE on metal surfaces is crucial for enhancing the stability and emittance of particle accelerators while extending their lifespan.This paper explores the application of laser-assisted water jet technology in constructing high-quality micro-trap structures on 316L stainless steel,a key material in accelerator manufacturing.The study systematically analyzes the impact of various parameters such as laser repetition frequency,pulse duration,average power,water jet pressure,repeat times,nozzle offset,focal position,offset distance between grooves,and processing speed on the surface morphology of stainless steel.The findings reveal that micro-groove depth increases with higher laser power but decreases with increasing water jet pressure and processing speed.Interestingly,repeat times have minimal effect on depth.On the other hand,micro-groove width increases with higher laser power and repeat times but decreases with processing speed.By optimizing these parameters,the researchers achieved high-quality pound sign-shaped trap structure with consistent dimensions.We tested the secondary electron emission coefficient of the"well"structure.The coefficient is reduced by 0.5 at most compared to before processing,effectively suppressing secondary electron emission.These results offer indispensable insights for the fabrication of micro-trap structures on material surfaces.Laser-assisted water jet technology demonstrates considerable potential in mitigating SEE on metal surfaces. 展开更多
关键词 laser-assisted water jet 316L stainless steel micro-trap structures "well"structure surface morphology secondary electron emission(SEE) groove depth groove width
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Machine learning optimization strategy of shaped charge liner structure based on jet penetration efficiency
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作者 Ziqi Zhao Tong Li +6 位作者 Donglin Sheng Jian Chen Amin Yan Yan Chen Haiying Wang Xiaowei Chen Lanhong Dai 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第9期23-41,共19页
Shaped charge liner(SCL)has been extensively applied in oil recovery and defense industries.Achieving superior penetration capability through optimizing SCL structures presents a substantial challenge due to intricate... Shaped charge liner(SCL)has been extensively applied in oil recovery and defense industries.Achieving superior penetration capability through optimizing SCL structures presents a substantial challenge due to intricate rate-dependent processes involving detonation-driven liner collapse,high-speed jet stretching,and penetration.This study introduces an innovative optimization strategy for SCL structures that employs jet penetration efficiency as the primary objective function.The strategy combines experimentally validated finite element method with machine learning(FEM-ML).We propose a novel jet penetration efficiency index derived from enhanced cutoff velocity and shape characteristics of the jet via machine learning.This index effectively evaluates the jet penetration performance.Furthermore,a multi-model fusion based on a machine learning optimization method,called XGBOOST-MFO,is put forward to optimize SCL structure over a large input space.The strategy's feasibility is demonstrated through the optimization of copper SCL implemented via the FEM-ML strategy.Finally,this strategy is extended to optimize the structure of the recently emerging CrMnFeCoNi high-entropy alloy conical liners and hemispherical copper liners.Therefore,the strategy can provide helpful guidance for the engineering design of SCL. 展开更多
关键词 jet penetration efficiency Shaped charge liner FEM-ML XGBOOST MFO High-entropy alloy
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LanzaTech Global公司和LanzaJet公司联合推出将废弃物、碳和可再生电力转化为SAF的新技术
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作者 许建耘(摘译) 《石油炼制与化工》 CAS CSCD 北大核心 2024年第10期67-67,共1页
LanzaTech Global股份有限公司和LanzaJet股份有限公司联合发布一项新技术——CirculAir,旨在将废弃物、碳和可再生电力转化为可持续航空燃料(SAF),并加速推进全球航空业的脱碳进程。CirculAir是一项突破性技术,它提供了一种经济的、商... LanzaTech Global股份有限公司和LanzaJet股份有限公司联合发布一项新技术——CirculAir,旨在将废弃物、碳和可再生电力转化为可持续航空燃料(SAF),并加速推进全球航空业的脱碳进程。CirculAir是一项突破性技术,它提供了一种经济的、商业化的方案,可替代费-托合成技术去生产电转燃料(eFuel)、电转液体燃料(PtL)和废弃物转燃料(Waste-to-Fuel),它利用的是已获得美国材料与试验协会(ASTM)批准的SAF生产路径,即使用乙醇作为生物中间体和乙醇制喷气燃料(ATJ)技术去生产SAF和可再生柴油(RD)。 展开更多
关键词 航空燃料 突破性技术 可再生电力 喷气燃料 SAF 废弃物 液体燃料 jet
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2024年夏季中国气候异常特征及成因分析 被引量:4
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作者 李想 郑志海 《气象》 北大核心 2025年第1期110-121,共12页
2024年夏季,中国降水偏多、气温偏高。全国平均气温22.3℃,为1961年以来历史同期第一,高温天气过程偏早、范围广、极端性强;降水空间分布上呈“东多西少”分布,东北南部、内蒙古中部、华北东部、华东北部、华中北部和西南部、西北地区... 2024年夏季,中国降水偏多、气温偏高。全国平均气温22.3℃,为1961年以来历史同期第一,高温天气过程偏早、范围广、极端性强;降水空间分布上呈“东多西少”分布,东北南部、内蒙古中部、华北东部、华东北部、华中北部和西南部、西北地区东部等地降水较常年同期偏多5成至1倍。夏季台风生成个数和登陆个数均偏少。2023年5月开始的中等强度El Nino事件在2024年5月结束并向冷海温发展,2023/2024年冬季以来,热带印度洋和北大西洋海温均为历史同期最暖,热带三大洋的异常海温分布有利于夏季西太平洋副热带高压增强,将充沛的太平洋和印度洋水汽输送到中国东部,使得东部季风区降水大范围偏多,强降水过程多。 展开更多
关键词 气候异常 季节内变化 西太平洋副热带高压 副热带西风急流
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低含沙水流低速冲蚀混凝土特性试验研究 被引量:1
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作者 顾磊 戴福旭 +2 位作者 李洪彬 王顺 刘勇 《振动与冲击》 北大核心 2025年第4期238-243,252,共7页
低含沙水流低速冲蚀是水工混凝土结构长期服役面临的普遍而又极易忽略的问题。为研究其磨蚀的关键影响因素与规律,设计了一种低含沙低速射流冲刷试验装置,对6种不同配比的混凝土试样开展了4组共计23次长时间冲蚀试验,并且基于试样质量... 低含沙水流低速冲蚀是水工混凝土结构长期服役面临的普遍而又极易忽略的问题。为研究其磨蚀的关键影响因素与规律,设计了一种低含沙低速射流冲刷试验装置,对6种不同配比的混凝土试样开展了4组共计23次长时间冲蚀试验,并且基于试样质量磨损量的精确测量,分析了射流特征参数及混凝土关键掺量对混凝土磨损的影响。试验结果表明,低含沙水流低速冲蚀混凝土的作用可分为法向冲蚀和切向磨削两种作用,速度、面积相同时法向冲蚀的磨损效果高于切向磨削。随着冲刷时间发展,混凝土小时磨损量逐渐降低后趋于某一稳定值。在试验条件范围内,小时磨损量随着射流冲刷速度和含沙量的提高而有所增大,在大冲刷角度时具有较高的小时磨损量。适当增加硅粉及纤维掺量有助于提高混凝土的抗冲蚀性能。并最终建立了最优配比混凝土的含沙水流冲蚀预测模型,以期为混凝土的使用寿命评估和性能提升提供依据。 展开更多
关键词 混凝土 小时磨损量 低含沙射流 低速冲蚀 试验
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基于多层间隔靶试验的含能复合射流毁伤行为 被引量:1
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作者 王在成 彭芋程 +1 位作者 姜春兰 胡榕 《兵工学报》 北大核心 2025年第2期112-123,共12页
为探究含能复合罩聚能装药对目标的毁伤增强效应及作用机制,开展含能复合罩聚能装药作用多层间隔靶侵爆联合毁伤行为研究。采用试验、数值模拟和理论分析相结合的方法,对含能复合射流侵彻多层间隔靶的毁伤行为及作用机理进行探究。试验... 为探究含能复合罩聚能装药对目标的毁伤增强效应及作用机制,开展含能复合罩聚能装药作用多层间隔靶侵爆联合毁伤行为研究。采用试验、数值模拟和理论分析相结合的方法,对含能复合射流侵彻多层间隔靶的毁伤行为及作用机理进行探究。试验结果表明:含能复合射流可有效毁伤8 mm厚钢靶和10 mm厚铝板构成的多层间隔靶,在1.0~1.5 CD炸高范围内,可穿透7~9层靶板;在2.0~2.7 CD侵彻深度范围内,对8 mm钢靶造成花瓣状卷边破坏和大开孔毁伤的程度最大,钢靶的最大破坏区域直径为2.5 CD。仿真和理论计算结果表明:爆轰波压垮作用、药型罩材料及结构和侵彻过程共同决定了含能复合射流的释能特性;不同位置靶板的变形能变化与活性材料激活质量的位置分布基本一致;复合射流头部的金属射流优先作用于靶板侵彻开孔,可避免大量活性材料在侵彻前期的消耗,将大部分活性材料随进到目标内部,充分利用活性材料的反应释能,通过侵-爆联合作用实现目标内毁伤增强效应;通过射流作用条件调控,实现活性材料在目标内毁伤增强的按需控制,在2.3~3.0 CD深度范围内活性材料释能量最大,达到最佳毁伤效果。 展开更多
关键词 含能复合射流 释能位置 毁伤效应 多层间隔靶
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热亚胺化中应力对聚酰亚胺纤维结构和性能的影响 被引量:1
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作者 王彪 李源 +1 位作者 董杰 张清华 《纺织学报》 北大核心 2025年第3期1-8,共8页
为提高聚酰亚胺(PI)前驱体环化纤维的力学性能,并优化其微结构,通过红外光谱、X射线衍射、力学性能及热稳定性测试,研究了在热亚胺化过程中施加一定应力对PI纤维结构和性能的影响。结果表明:施加应力加快了热亚胺化反应的进程,300℃保温... 为提高聚酰亚胺(PI)前驱体环化纤维的力学性能,并优化其微结构,通过红外光谱、X射线衍射、力学性能及热稳定性测试,研究了在热亚胺化过程中施加一定应力对PI纤维结构和性能的影响。结果表明:施加应力加快了热亚胺化反应的进程,300℃保温120 s,纤维亚胺化程度达到90%,相比于松弛状态下提升了17%,这有利于纤维性能的提升;在纤维聚集态结构方面,应力作用下,纤维轴向晶面间距增大,取向度和结晶度提高;相较于松弛状态下,经400℃应力热亚胺化反应,纤维内部(004)晶面的取向度由0.63提升至0.80,结晶度由14.20%提升至16.73%,表明纤维内部形成更加完善的晶体结构,纤维径向分子链有序度增加,但大部分仍为非晶结构;得益于热亚胺化过程中分子链取向度的提高,纤维的强度和模量显著提升,断裂伸长率下降,且在应力作用下,经400℃热亚胺化处理纤维的5%和10%热失重温度分别达到529℃和565℃。 展开更多
关键词 高性能纤维 聚酰亚胺纤维 干喷湿纺 热亚胺化 应力 聚集态结构
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基于协同流壁面射流模拟带倾角下击暴流方法研究
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作者 何伟 张宇 刘千权 《防灾减灾工程学报》 北大核心 2025年第2期416-426,共11页
考虑下击暴流研究主要基于冲击射流模型,但对射流倾角的研究有限,且缩尺比较小不利于下击暴流风场特性研究。为此首先基于计算流体力学研究了带倾角冲击射流的风场特性,得到了倾角对下击暴流出流段的风速衰减系数表达式,然后针对壁面射... 考虑下击暴流研究主要基于冲击射流模型,但对射流倾角的研究有限,且缩尺比较小不利于下击暴流风场特性研究。为此首先基于计算流体力学研究了带倾角冲击射流的风场特性,得到了倾角对下击暴流出流段的风速衰减系数表达式,然后针对壁面射流可得到大尺度下击暴流出流段风场,但忽略了倾角对风速衰减的影响,因此引入协同流以减小射流周围黏性阻力,并采用烟迹风洞试验和计算流体力学方法,得到了协同流对风速衰减的系数表达式,最后分析了壁面射流模拟下击暴流倾角致效应的可行性。结果表明:①带倾角冲击射流风场呈三维非对称特性,前侧最大水平风速的衰减速率随倾角增大而变缓,风剖面半高水平风速在倾角为30°时增幅达77.8%;②烟迹风洞试验和数值模拟结果表明壁面射流风场与下击暴流前侧出流段相似,引入协同流能够有效减缓水平风速的衰减速率;③通过建立协同流致风速衰减系数和倾角致风速衰减系数的对应关系,可实现采用壁面射流模拟任意倾角下的下击暴流平均风剖面,为模拟大尺度的带倾角下击暴流提供了新的方式。 展开更多
关键词 下击暴流 冲击射流 壁面射流 倾角 协同流 大尺度
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镍合金盘元高压磨料水射流除鳞工艺研究 被引量:1
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作者 唐勇 吴伟 谭沁源 《热加工工艺》 北大核心 2025年第2期103-108,共6页
为了减少酸洗工艺在去除镍合金轧制盘元表面氧化皮(除鳞)时所产生的工艺金属损失及污染排放,依据高压磨料水射流除鳞工艺特点,建立完整的轧制镍合金除鳞工艺实验替代酸洗工艺装置,设定盘条收线速度、水压、磨料浓度等除鳞工艺参数,针对... 为了减少酸洗工艺在去除镍合金轧制盘元表面氧化皮(除鳞)时所产生的工艺金属损失及污染排放,依据高压磨料水射流除鳞工艺特点,建立完整的轧制镍合金除鳞工艺实验替代酸洗工艺装置,设定盘条收线速度、水压、磨料浓度等除鳞工艺参数,针对两种不同工艺生产过程中的镍合金盘元进行表面氧化皮去除,进行除鳞工艺前后的镍合金盘条抗拉强度、伸长率以及电子探针(EPMA)检测的表面形貌对比分析。结果表明:经过除鳞工艺前后对比,金属损耗基本低于0.5%;镍合金盘条抗拉强度变化不明显,强度相当;伸长率基本保持不变,满足标准要求;电子探针检测(EPMA)显示不同盘条除鳞后表明氧化皮基本去除。所建立的高压磨料水射流除鳞工艺装置,能够达到除鳞效果,证实该高压磨料水射流除鳞工艺可行可靠。 展开更多
关键词 高压磨料水射流 镍合金盘元 除鳞 EPMA
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一次暖区对流组织化发展的成因分析
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作者 罗静 郑淋淋 +5 位作者 姚晨 邵立瑛 邱学兴 高磊 朱红芳 祁文 《气象》 北大核心 2025年第9期1072-1087,共16页
2023年5月27日凌晨,安徽南部发生了一次以短时强降水为主的暖区强对流过程,多条南北走向平行排列的β中尺度短对流形成的列车效应造成突发性局地强降水,降水最强时段100 min累计降水量达到123.2 mm。采用安徽省气象台业务运行的快速更... 2023年5月27日凌晨,安徽南部发生了一次以短时强降水为主的暖区强对流过程,多条南北走向平行排列的β中尺度短对流形成的列车效应造成突发性局地强降水,降水最强时段100 min累计降水量达到123.2 mm。采用安徽省气象台业务运行的快速更新同化系统WRF-EnKF对此次过程进行数值模拟。结果表明:大尺度环境场和中尺度对流系统的相互作用导致多条短对流水平尺度的增长、强度的增强。动力作用方面,对流发生后,短对流与低空急流核之间形成γ中尺度气旋性涡旋造成对流东移发展,同时雷暴出流与环境风场形成的地面辐合线导致南侧触发新对流,使短对流不断向南部线性发展;环境条件方面,多个平行排列的低空急流核为对流的发展提供有利的动力和热力条件,对流强烈发展在中高层形成反次级环流,使其南侧的大气不稳定和深层垂直风切变显著增强。对流之间的相互作用造成短对流结构维持。平行排列的对流形成平行排列的雷暴高压,相邻雷暴出流相互作用形成多个平行排列的正负散度对,垂直方向上在相邻对流之间形成多个平行排列的纬向-垂直环流,有利于多条短对流结构的维持和发展。 展开更多
关键词 暖区 低空急流 雷暴出流
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磨料水射流旋转切割煤岩最优参数匹配模型研究
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作者 魏建平 校朋伟 +2 位作者 张慧栋 陈长江 刘勇 《煤炭科学技术》 北大核心 2025年第1期192-202,共11页
随着煤炭开采向深部延伸,纯水射流技术已逐渐无法满足高地应力和高煤岩强度条件下破煤增透需求。磨料水射流能有效提高水射流破岩能力,磨料水射流旋转切割卸压技术可实现高地应力、坚硬煤层的高效增透。射流压力和旋转速度是影响磨料水... 随着煤炭开采向深部延伸,纯水射流技术已逐渐无法满足高地应力和高煤岩强度条件下破煤增透需求。磨料水射流能有效提高水射流破岩能力,磨料水射流旋转切割卸压技术可实现高地应力、坚硬煤层的高效增透。射流压力和旋转速度是影响磨料水射流旋转切割煤岩效果的重要因素,明确磨料水射流旋转切割硬煤力学特征及规律是合理匹配射流压力和旋转速度的前提。采用数值模拟和实验研究相结合的方法,分析了不同射流压力和旋转速度匹配关系对射流冲击靶体力学作用机制的影响,明确了不同射流压力和旋转速度对磨料水射流旋转割缝效果的影响规律。研究结果表明,磨料颗粒高速撞击煤岩产生的法向力主要取决于射流压力,而切向力则同时取决于射流压力和旋转速度,法向力和切向力在磨料颗粒冲击破煤过程中作用不同,两者共同决定了磨料水射流旋转切割煤岩效果;当射流压力小于25 MPa时,割缝深度随射流压力升高而增加,超过25 MPa后割缝深度增加速率显著降低;在割缝时间恒定条件下,磨料射流旋转切割深度随转速的增加始终呈上升趋势;提出以最优匹配系数n作为同一射流压力下不同转速切割效果的评判指标,发现不同工况条件下淹没与非淹没条件下的n值存在显著差异,当前研究条件下非淹工况最优参数匹配系数n为0.0020156,淹没工况最优参数匹配系数为0.000299;建立了磨料水射流旋转割缝射流压力和旋转速度最优匹配参数计算模型,可根据射流压力直接计算得到最优匹配转速,使射流切割效果最优。 展开更多
关键词 磨料水射流割缝 煤层增透 最优参数匹配 射流压力 旋转速度
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低净空下旋喷静压钢管复合桩竖向抗压承载特性的试验研究
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作者 王曙光 尹浩 +3 位作者 段启伟 王浩宇 李钦锐 李湛 《岩土工程学报》 北大核心 2025年第6期1318-1326,共9页
旋喷静压钢管复合桩技术是适用于既有建筑低净空下作业的新型专利技术。通过室内足尺试验对旋喷静压钢管复合桩的竖向抗压承载特性进行研究,并与锚杆静压桩、旋喷桩和钻孔灌注桩的竖向抗压承载特性进行对比。试验结果表明:旋喷静压钢管... 旋喷静压钢管复合桩技术是适用于既有建筑低净空下作业的新型专利技术。通过室内足尺试验对旋喷静压钢管复合桩的竖向抗压承载特性进行研究,并与锚杆静压桩、旋喷桩和钻孔灌注桩的竖向抗压承载特性进行对比。试验结果表明:旋喷静压钢管复合桩主要表现为摩擦桩的特性;当桩径相当时,旋喷静压钢管复合桩的单桩承载力显著高于灌注桩和旋喷桩;锚杆静压桩由于直径较小,单桩承载力也最低;在极限荷载作用下,旋喷桩表现为桩顶材料强度破坏,桩的侧阻力与端阻力未充分发挥;旋喷静压钢管复合桩由于芯桩的植入,弥补了旋喷桩桩身强度的不足,桩的侧阻力得以充分发挥,其承载力高于旋喷桩;与灌注桩相比,旋喷静压钢管复合桩桩身界面不规则、旋喷工艺明显改善了桩土的界面特性,因而旋喷静压钢管复合桩承载力高于同直径的灌注桩。根据试验结果从工程实用的角度,通过引入侧阻力增大系数和端阻力折减系数,对灌注桩的单桩极限承载力公式进行修正,得到旋喷静压钢管复合桩单桩极限承载力的表达式,并给出相关参数的取值建议。 展开更多
关键词 旋喷静压钢管复合桩 抗压承载特性 室内足尺试验 锚杆静压桩 旋喷桩 灌注桩
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偏转板射流阀断载压力特性理论模型
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作者 王建森 何春阳 +3 位作者 文小莉 景海 李恒 李少年 《液压与气动》 北大核心 2025年第5期1-10,共10页
偏转板射流阀常用作两级电液伺服阀的前置级,其断载压力特性直接影响着电液伺服阀主阀的启动能力。为了快速准确的获得偏转板射流阀的断载压力特性,将偏转板射流流场划分为一次射流、偏转板压力恢复、二次射流和接收腔压力恢复四个区域... 偏转板射流阀常用作两级电液伺服阀的前置级,其断载压力特性直接影响着电液伺服阀主阀的启动能力。为了快速准确的获得偏转板射流阀的断载压力特性,将偏转板射流流场划分为一次射流、偏转板压力恢复、二次射流和接收腔压力恢复四个区域。在考虑喷嘴一次射流区三维射流及边界层效应的基础上,利用射流冲击理论建立了偏转板射流阀的压力特性方程。与传统不考虑边界层效应的平面射流理论模型相比,该模型得到的射流流场速度分布规律与CFD计算结果的一致性更好。经偏转板射流阀断载压力特性实验验证,该模型所得结果与实验数据相比最大偏差为9.7%,为偏转板射流阀及相应电液伺服阀的进一步分析奠定理论基础。 展开更多
关键词 偏转板射流阀 断载压力特性 三维射流流场 边界层
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