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Surface-covering water significantly amplifies the explosion impulse of shallow buried explosives 被引量:1
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作者 Zhenyu Zhao Wenbo Gao +6 位作者 Jianwei Ren Zihan Lan Zhiyang Zhang Huiyao Gao Chao He Changye Ni Tianjian Lu 《Defence Technology(防务技术)》 2025年第6期156-172,共17页
While the moisture content of soil affects significantly the blast impulse of shallow buried explosives,the role of surface-covering water(SCW)on soil in such blast impulse remains elusive.A combined experimental and ... While the moisture content of soil affects significantly the blast impulse of shallow buried explosives,the role of surface-covering water(SCW)on soil in such blast impulse remains elusive.A combined experimental and numerical study has been carried out to characterize the effect of SCW on transferred impulse and loading magnitude of shallow buried explosives.Firstly,blast tests of shallow buried explosives were conducted,with and without the SCW,to quantitatively assess the blast loading impulse.Subsequently,finite element(FE)simulations were performed and validated against experimental measurement,with good agreement achieved.The validated FE model was then employed to predict the dynamic response of a fully-clamped metallic circular target,subjected to the explosive impact of shallow buried explosives with SCW,and explore the corresponding physical mechanisms.It was demonstrated that shallow buried explosives in saturated soil generate a greater impulse transferred towards the target relative to those in dry soil.The deformation displacement of the target plate is doubled.Increasing the height of SCW results in enhanced center peak deflection of the loaded target,accompanied by subsequent fall,due to the variation of deformation pattern of the loaded target from concentrated load to uniform load.Meanwhile,the presence of SCW increases the blast impulse transferred towards the target by three times.In addition,there exists a threshold value of the burial depth that maximizes the impact impulse.This threshold exhibits a strong sensitivity to SCW height,decreasing with increasing SCW height.An empirical formula for predicting threshold has been provided.Similar conclusions can be drawn for different explosive masses.The results provide technical guidance on blast loading intensity and its spatial distribution considering shallow buried explosives in coast-land battlefields,which can ultimately contribute to better protective designs. 展开更多
关键词 Shallow buried explosives Fluid-structure interaction Surface-covering water Impulse distribution
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Adsorption and visual detection of nitro explosives by pillar[n]arenes-based host–vip interactions 被引量:1
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作者 Xueru Zhao Aopu Wang +3 位作者 Shimin Wang Zhijie Song Li Ma Li Shao 《Chinese Chemical Letters》 2025年第4期211-215,共5页
Aromatic nitro compounds present substantial health and environmental concerns due to their toxic nature and potential explosive properties.Consequently,the development of host–vip molecular recognition systems for... Aromatic nitro compounds present substantial health and environmental concerns due to their toxic nature and potential explosive properties.Consequently,the development of host–vip molecular recognition systems for these compounds serves a dual-purpose:enabling the fabrication of high-performance sensors for detection and guiding the design of efficient adsorbents for environmental remediation.This study investigated the host–vip recognition behavior of perethylated pillar[n]arenes toward two aromatic nitro molecules,1-chloro-2,4-dinitrobenzene and picric acid.Various techniques including^(1)H NMR,2D NOESY NMR,and UV-vis spectroscopy were employed to explore the binding behavior between pillararenes and aromatic nitro vips in solution.Moreover,valuable single crystal structures were obtained to elucidate the distinct solid-state assembly behaviors of these vips with different pillararenes.The assembled solid-state supramolecular structures observed encompassed a 1:1 host–vip inclusion complex,an external binding complex,and an exo-wall tessellation complex.Furthermore,based on the findings from these systems,a pillararene-based test paper was developed for efficient picric acid detection,and the removal of picric acid from solution was also achieved using pillararenes powder.This research provides novel insights into the development of diverse host–vip systems toward hazardous compounds,offering potential applications in environmental protection and explosive detection domains. 展开更多
关键词 Pillar[n]arenes Host–vip interactions Aromatic nitro compounds Adsorptive separation Explosive detection
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Experimental and numerical approach of afterburning effects in fuel-rich explosives within confined spaces
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作者 Hu Zhou Ange Lu +3 位作者 Cheng Zheng Yiwen Wang Xiangshao Kong Weiguo Wu 《Defence Technology(防务技术)》 2025年第9期67-79,共13页
The detonation of fuel-rich explosives yields combustible products that persistently burn upon mixing with ambient oxygen,releasing additional energy through a phenomenon known as the afterburning effect.This process ... The detonation of fuel-rich explosives yields combustible products that persistently burn upon mixing with ambient oxygen,releasing additional energy through a phenomenon known as the afterburning effect.This process greatly influences the evolution of confined blast loading and the subsequent structural response,which is crucial in confined blast scenarios.Given the complex nature of the reaction process,accurate analysis of the afterburning effect remains challenging.Previous studies have either overlooked the mechanisms of detonation product combustion or failed to provide experimental validation.This study introduces a three-dimensional model to effectively characterize the combustion of detonation products.The model integrates chemical reaction source terms into the governing equations to consider the combustion processes.Numerical simulations and experimental tests were conducted to analyze the combustion and energy release from the detonation products of fuel-rich explosives in confined spaces.Approximately 50%of the energy was released during the combustion of detonation products in a confined TNT explosion.Although the combustion of these products was much slower than the detonation process,it aligned with the dynamic response of the structure,which enhanced the explosive yield.Excluding afterburning from the analysis reduced the center-point deformation of the structure by 30%.Following the inclusion of afterburning,the simulated quasistatic pressure increased by approximately 45%.Subsequent comparisons highlighted the merits of the proposed approach over conventional methods.This approach eliminates the reliance on empirical parameters,such as the amount and rate of energy release during afterburning,thereby laying the foundation for understanding load evolution in more complex environments,such as ships,buildings,and underground tunnels. 展开更多
关键词 Blast loading Numerical simulation Experimental study Fuel-rich explosives Confined space Afterburning model Reactive flow
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Unveiling the Structures and Properties of the Interface between Various Fluoroelastomers and Octahydro-1,3,5,7-tetranitro-1,3,5,7-tetrazocine in Polymer-bonded Explosives via Neutron Reflectivity
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作者 Xin-Xi Li Xiao-Ling Xiong +7 位作者 Kun Song Jia-Hui Liu Liang-Fei Bai Jun Chen Jie Chen Xiao-Qing Tu Yue Yin Dong Liu 《Chinese Journal of Polymer Science》 2025年第9期1651-1660,I0012,共11页
The current work addresses the challenge of elucidating the performance of fluoroelastomers within the HMX(octahydro-1,3,5,7-tetranitro-1,3,5,7-tetrazocine)based polymer-bonded explosives(PBXs).To simulate the confine... The current work addresses the challenge of elucidating the performance of fluoroelastomers within the HMX(octahydro-1,3,5,7-tetranitro-1,3,5,7-tetrazocine)based polymer-bonded explosives(PBXs).To simulate the confined interface in PBXs,bilayer films of F2314/HMX and F2311/HMX were designed.Neutron reflectivity(NR),nanoindentation,and X-ray reflectivity(XRR)were employed to examine the layer thickness,interface characteristics,diffusion behavior,and surface morphology of the bilayers.NR measurements revealed interface thicknesses of 45Å and 98Å for F2314/HMX and F2311/HMX,respectively,indicating deeper penetration of F2311 into the HMX matrix.NR also suggested a denser polymer network with a higher scattering length density(SLD)near the HMX interface for both fluoroelastomers,while the bound layer of F2311 was notably thicker.Nanoindentation cross-checks and confirms the presence of a bound layer,highlighting the differences in stiffness and diffusion ability between the two polymers.The consistency between the NR and nanoindentation results suggests that F2311 demonstrates better flexibility and elasticity,whereas F2314 is stiffer and more plastic.Accordingly,the structures and performances of different fluoroelastomers at the HMX interface are discussed,which can provide valuable insights into the selection of binders for PBX formulations tailored to specific applications. 展开更多
关键词 Polymer-bonded explosives Interface characterization Neutron reflectivity NANOINDENTATION Bilayer films
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Control model for burning-bubble clouds formed by confined meltcast explosives under thermal stimulation
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作者 Zhi Li Zhuoping Duan +4 位作者 Zhiling Bai Jixuan Jiao Liji Xu Liansheng Zhang Fenglei Huang 《Defence Technology(防务技术)》 2025年第6期268-283,共16页
DNAN-based insensitive melt-cast explosives have been widely utilized in insensitive munition in recent years. When constrained DNAN-based melt-cast explosives are ignited under thermal stimulation, the base explosive... DNAN-based insensitive melt-cast explosives have been widely utilized in insensitive munition in recent years. When constrained DNAN-based melt-cast explosives are ignited under thermal stimulation, the base explosive exists in a molten liquid state, where high-temperature gases expand and react in the form of bubble clouds within the liquid explosive;this process is distinctly different from the dynamic crack propagation process observed in the case of solid explosives. In this study, a control model for the reaction evolution of burning-bubble clouds was established to describe the reaction process and quantify the reaction violence of DNAN-based melt-cast explosives, considering the size distribution and activation mechanism of the burning-bubble clouds. The feasibility of the model was verified through experimental results. The results revealed that under geometrically similar conditions, with identical confinement strength and aspect ratio, larger charge structures led to extended initial gas flow and surface burning processes, resulting in greater reaction equivalence and violence at the casing fracture.Under constant charge volume and size, a stronger casing confinement accelerated self-enhanced burning, increasing the internal pressure, reaction degree, and reaction violence. Under a constant casing thickness and radius, higher aspect ratios led to a greater reaction violence at the casing fracture.Moreover, under a constant charge volume and casing thickness, higher aspect ratios resulted in a higher internal pressure, increased reaction degree, and greater reaction violence at the casing fracture. Further,larger ullage volumes extended the reaction evolution time and increased the reaction violence under constant casing dimensions. Through a matching design of the opening threshold of the pressure relief holes and the relief structure area, a stable burning reaction could be maintained until completion,thereby achieving a control of the reaction violence. The proposed model could effectively reflect the effects of the intrinsic burning rate, casing confinement strength, charge size, ullage volume, and pressure relief structure on the reaction evolution process and reaction violence, providing a theoretical method for the thermal safety design and reaction violence evaluation of melt-cast explosives. 展开更多
关键词 Melt-cast explosives Non-shock-initiated reaction Self-sustaining enhanced combustion Burning-bubble cloud model Pressure relief area Reaction violence
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Efficiently enhancing thermal conductivity of polymer bonded explosives via the construction of primary-secondary thermal conductivity networks
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作者 Xunyi Wang Peng Wang +4 位作者 Jie Chen Zhipeng Liu Yuxin Luo Wenbin Yang Guansong He 《Defence Technology(防务技术)》 2025年第6期95-103,共9页
Realizing effective enhancement in the thermally conductive performance of polymer bonded explosives(PBXs) is vital for improving the resultant environmental adaptabilities of the PBXs composites. Herein, a kind of pr... Realizing effective enhancement in the thermally conductive performance of polymer bonded explosives(PBXs) is vital for improving the resultant environmental adaptabilities of the PBXs composites. Herein, a kind of primary-secondary thermally conductive network was designed by water-suspension granulation, surface coating, and hot-pressing procedures in the graphene-based PBXs composites to greatly increase the thermal conductive performance of the composites. The primary network with a threedimensional structure provided the heat-conducting skeleton, while the secondary network in the polymer matrix bridged the primary network to increase the network density. The enhancement efficiency in the thermally conductive performance of the composites reached the highest value of 59.70% at a primary-secondary network ratio of 3:1. Finite element analysis confirmed the synergistic enhancement effect of the primary and secondary thermally conductive networks. This study introduces an innovative approach to designing network structures for PBX composites, significantly enhancing their thermal conductivity. 展开更多
关键词 Thermally conductive performance Primary-secondary thermally conductive networks Network density Polymer-bonded explosives
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Determining the parameters and chemical behaviour of the overdriven detonation reaction zone of CL-20-based aluminized explosives
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作者 Moyan Liu Yan Liu +3 位作者 Fan Bai Hongfu Wang Shanyong Chu Fenglei Huang 《Defence Technology(防务技术)》 2025年第5期46-66,共21页
The new CL-20(hexanitrohexaazaisowurtzitane)type aluminized explosives in the overdrive detonation(ODD)conditions of the core problem is how to accurately represent the state of the overdrive detonation products.To th... The new CL-20(hexanitrohexaazaisowurtzitane)type aluminized explosives in the overdrive detonation(ODD)conditions of the core problem is how to accurately represent the state of the overdrive detonation products.To this end,this paper is based on the impedance matching method to test the ODD conditions of CL-20 type aluminium explosive particle velocity.Calculated the interfacial pressure of the shock wave in different media.Determined the characteristic parameters of the reaction zone of the detonation of CL-20 aluminized explosives.Calibrated the parameters of the JoneseWilkinseLee(JWL)+γ equation for the detonation products(DPs).Revealed the effect of different DPs equation of state(EOS)on the Hugoniot pressure of ODD.The results indicate that when the content of aluminum powder ranges from 0%to 30%,the duration of the ODD reaction zone and the width of the detonation reaction zone of the CL-20-based aluminized explosive are directly proportional to the content of aluminum powder.The width of the detonation reaction zone is increased by 1.97 times to 2.7 times compared to that of the reaction zone without the addition of aluminum powder.However,the energy release efficiency of the detonation reaction zone is inversely proportional to the content of aluminum powder.When the aluminum powder content was held constant,the incorporation of AP caused a 25%reduction in the energy release efficiency of the detonation reaction zone.Compared with existing ODD state equations,the JWL +γ equation is superior in calibrating overpressure Hugoniot data and the isentropic expansion in the C-J state.The deviation between calculated pressure results and experimental measurements is within 6%. 展开更多
关键词 Equation of state for ODD CL-20-based aluminized explosives Detonation reaction zone Impedance matching Interfacial particle velocity
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Evaluation of detonation performance of explosives ICM-101,ONC,and TNAZ based on improved VHL equation of state
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作者 Yong Han Qin Liu +2 位作者 Yingliang Duan Yaqi Zhao Xinping Long 《Defence Technology(防务技术)》 2025年第2期83-97,共15页
Detonation performance is crucial for evaluating the power of high explosives(HEs),and the equation of state(EOS)that accurately describes the high-temperature,high-pressure,and high-temperature,medium-pressure states... Detonation performance is crucial for evaluating the power of high explosives(HEs),and the equation of state(EOS)that accurately describes the high-temperature,high-pressure,and high-temperature,medium-pressure states of detonation products is key to assessing the damage efficiency of these energetic materials.This article examines the limitations of the VLW EOS in representing the thermodynamic states of explosive detonation gas products under high-temperature and medium-to high-pressure conditions.A new gas EOS for detonation products,called VHL(Virial-Han-Long),is proposed.The accuracy of VHL in describing gas states under high-temperature and medium-to high-pressure conditions is verified,and its performance in evaluating explosive detonation and working capabilities is explored.The results demonstrate that VHL exhibits high precision in calculating detonation performance.Subsequently,the detonation performance of three new HEs(ICM-101,ONC,and TNAZ)was calculated and compared to traditional HEs(TATB,CL-20,and HMX).The results indicate that ONC has superior detonation performance compared to the other explosives,while ICM-101 shows a detonation velocity similar to CL-20 but with slightly lower detonation pressure.The detonation characteristics of TNAZ are comparable to those of the standard HE HMX.From the perspective of products,considering the comprehensive work performance(mechanical work and detonation heat),both ONC and ICM-101demonstrate relatively superior performance. 展开更多
关键词 Equation of state Detonation performance Working capability THERMODYNAMICS High explosive
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An improved efficient adaptive method for large-scale multiexplosives explosion simulations
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作者 Tao Li Cheng Wang Baojun Shi 《Defence Technology(防务技术)》 2025年第3期28-47,共20页
Shock wave caused by a sudden release of high-energy,such as explosion and blast,usually affects a significant range of areas.The utilization of a uniform fine mesh to capture sharp shock wave and to obtain precise re... Shock wave caused by a sudden release of high-energy,such as explosion and blast,usually affects a significant range of areas.The utilization of a uniform fine mesh to capture sharp shock wave and to obtain precise results is inefficient in terms of computational resource.This is particularly evident when large-scale fluid field simulations are conducted with significant differences in computational domain size.In this work,a variable-domain-size adaptive mesh enlargement(vAME)method is developed based on the proposed adaptive mesh enlargement(AME)method for modeling multi-explosives explosion problems.The vAME method reduces the division of numerous empty areas or unnecessary computational domains by adaptively suspending enlargement operation in one or two directions,rather than in all directions as in AME method.A series of numerical tests via AME and vAME with varying nonintegral enlargement ratios and different mesh numbers are simulated to verify the efficiency and order of accuracy.An estimate of speedup ratio is analyzed for further efficiency comparison.Several large-scale near-ground explosion experiments with single/multiple explosives are performed to analyze the shock wave superposition formed by the incident wave,reflected wave,and Mach wave.Additionally,the vAME method is employed to validate the accuracy,as well as to investigate the performance of the fluid field and shock wave propagation,considering explosive quantities ranging from 1 to 5 while maintaining a constant total mass.The results show a satisfactory correlation between the overpressure versus time curves for experiments and numerical simulations.The vAME method yields a competitive efficiency,increasing the computational speed to 3.0 and approximately 120,000 times in comparison to AME and the fully fine mesh method,respectively.It indicates that the vAME method reduces the computational cost with minimal impact on the results for such large-scale high-energy release problems with significant differences in computational domain size. 展开更多
关键词 Large-scale explosion Shock wave Adaptive method Fluid field simulations Efficient method
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Ordered Solidification Technique Under Low Pressures in the Loading of Molten Explosives 被引量:7
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作者 徐更光 刘德润 +1 位作者 王廷增 何德昌 《Journal of Beijing Institute of Technology》 EI CAS 1993年第1期90-97,共8页
In order to improve the quality of loading and make the ammuni- tion safe in use,a new loading technique of ordered solidification has been studied.The study shows that the adoption of this new technique makes the cha... In order to improve the quality of loading and make the ammuni- tion safe in use,a new loading technique of ordered solidification has been studied.The study shows that the adoption of this new technique makes the charge more compact and brings about a satisfactory supplement of liquid ex- plosives,thus increasing the charge density,which is most advantageous to the crimination of pores,cavities,gaps at the bottom and in loose struc- tures.The physical mechanical properties of the charge are hence greatly im- proved,and the sensitivity of the charge to environmental stimulations is much lowered. 展开更多
关键词 explosives explosive charges/TNT
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Detonation Behavior of Intermolecular Explosives EAR
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作者 王廷增 徐更光 +1 位作者 徐军培 刘云剑 《Journal of Beijing Institute of Technology》 EI CAS 2000年第3期341-346,共6页
In order to find out the detonation mechanism of intermolecular explosives (IMX), the EAR15 explosive is studied by the experiments and numerical modeling. The results show that EAR15 is a nonideal explosive, since in... In order to find out the detonation mechanism of intermolecular explosives (IMX), the EAR15 explosive is studied by the experiments and numerical modeling. The results show that EAR15 is a nonideal explosive, since in the detonation reaction zone both reacted and unreacted ammonium nitrate (AN) absorb the energy through the interface, resulting in the characteristic of nonideal detonation. In our tests, only 19%-49% active AN takes part in reaction, the rest behaves as the inert at the detonation wave front. 展开更多
关键词 EXPLOSIVE DETONATION nonideal explosive ammonium nitrate(AN)
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含推进剂复合凝胶炸药的能量输出特性
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作者 刘玺辰 王一鸣 +1 位作者 刘大斌 王泽山 《含能材料》 北大核心 2026年第1期16-25,共10页
为推进退役HTPB推进剂的资源化利用,研究将其与含能凝胶复合制备了复合凝胶炸药:含三组元推进剂的复合炸药1-PxDyΦz、含9%RDX四组元推进剂的复合凝胶炸药2-PxDyΦz、含15%RDX推进剂的复合炸药3-PxDyΦz以及含20%HMX推进剂复合炸药4-PxD... 为推进退役HTPB推进剂的资源化利用,研究将其与含能凝胶复合制备了复合凝胶炸药:含三组元推进剂的复合炸药1-PxDyΦz、含9%RDX四组元推进剂的复合凝胶炸药2-PxDyΦz、含15%RDX推进剂的复合炸药3-PxDyΦz以及含20%HMX推进剂复合炸药4-PxDyΦz(x为推进剂P的含量,x=30%,40%,50%,y为粒径D的大小,y=5,10,15 mm,z装药尺寸Φ的大小,z=40,50,65 mm),并对该复合凝胶炸药开展爆速、验证板毁伤及水下爆炸能量的研究,研究含不同推进剂的含量和粒度以及装药直径条件下的复合凝胶炸药能量特性。结果表明,1-PxDyΦz和2-PxDyΦz复合炸药中推进剂的含量增加会降低复合炸药的爆速和猛度,3-PxDyΦz和4-PxDyΦz随推进剂含量增加会使爆速和猛度提高。1-PxDyΦz~4-PxDyΦz随推进剂粒度的减小均有助于复合炸药爆速和猛度的提升,并且装药直径增大显著增加毁伤能力。水下爆炸实验结果表明,1-PxDyΦz和2-PxDyΦz中推进剂的含量增加会降低水下总能量输出,3-PxDyΦz随推进剂含量增加总能量基本不变,4-PxDyΦz随推进剂含量增加会使水下总能量提高。此外,1-PxDyΦz~4-PxDyΦz随推进剂粒度的减小水下总能量呈现上升趋势。 展开更多
关键词 退役推进剂 含能凝胶 复合炸药 爆轰性能
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冲塞载荷下浇注炸药局域化变形流动-点火响应模拟
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作者 盛星宇 杨昆 +3 位作者 路一鸣 吴艳青 段卓平 黄风雷 《含能材料》 北大核心 2026年第1期1-15,共15页
针对浇注炸药冲塞安全性评价试验中装药变形与点火响应机制不清的问题,发展了浇注PBX炸药粘弹粘塑性变形-多热点竞争点火模型,考虑微裂纹摩擦,微孔洞塌缩、局部粘性剪切流动生热等多种热点机制,开展了冲塞撞击下浇注炸药宏细观流变-点... 针对浇注炸药冲塞安全性评价试验中装药变形与点火响应机制不清的问题,发展了浇注PBX炸药粘弹粘塑性变形-多热点竞争点火模型,考虑微裂纹摩擦,微孔洞塌缩、局部粘性剪切流动生热等多种热点机制,开展了冲塞撞击下浇注炸药宏细观流变-点火响应模拟,获取了不同落高、冲塞长度与冲塞形状下炸药装药压力、剪切流动与点火响应规律。结果表明:冲塞撞击下装药点火响应过程由压力与剪切应变率共同驱动,两者在高位重叠时,其所导致的局部粘性剪切流动为主导热点机制。相同冲塞直径下,较大的冲塞长径比会诱发冲塞上方装药产生更高压力与剪切流动,伴随更长的冲塞作用时间,形成较大的冲量,使得装药点火更易发生,点火临界高度降低。相较于平头冲塞,卵形头冲塞会显著降低装药的点火临界高度。研究结果可为穿刺式低速长脉冲机械刺激下浇注炸药点火响应及其细观机制解读、异物刺入下弹药跌落安全性评价及数值计算表征方法构建提供技术支撑。 展开更多
关键词 冲塞试验 浇注炸药 宏细观模型 局域化流动-点火 数值模拟
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气传致敏花粉爆发性增长过程的气象成因分析
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作者 胡祉懿 孙兆彬 +4 位作者 张宇 张涵 马锋 张勇 唐源 《中国环境科学》 北大核心 2026年第1期503-514,共12页
气象条件对花粉浓度具有显著影响,本研究以我国花粉发病率最高的城市之一——陕西省榆林市为例,使用2019~2021年花粉浓度数据、气象数据,采用统计分析和天气学诊断的方法,分析了2021年8月4~7日榆林市一次花粉浓度爆发性增长过程的气象成... 气象条件对花粉浓度具有显著影响,本研究以我国花粉发病率最高的城市之一——陕西省榆林市为例,使用2019~2021年花粉浓度数据、气象数据,采用统计分析和天气学诊断的方法,分析了2021年8月4~7日榆林市一次花粉浓度爆发性增长过程的气象成因.结果表明:榆林市花粉浓度变化具有典型的季节性特征,呈现春秋两季双峰型.温度升高与低湿度环境共同触发沙蒿花药开裂,而1.5~3.0m/s风速区间有利于花粉扩散效率.研究时段内较大的近地面风速为花粉局地扩散提供了动力条件,但多变的风向阻碍了稳定传输通道的形成,造成花粉累积.就环流形势而言,高空槽脊转换与中低层反气旋活动是花粉累积的关键动力条件,下沉运动通过降低边界层高度及形成逆温层显著抑制大气扩散能力.总云量通过调控地表辐射收支与垂直运动,进一步影响边界层热力结构,低云量时段与边界层压缩的协同是浓度日累积高峰形成的关键气象因素. 展开更多
关键词 气传花粉 爆发性 气象因素 下沉运动 逆温
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机器学习助力高效含能材料分子筛选与设计——基于主动学习的策略
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作者 杨琳 张晓龙 +2 位作者 王鹤 周余伟 滕波涛 《燃料化学学报(中英文)》 北大核心 2026年第1期135-145,共11页
含能材料在军事和航天等领域应用广泛,但其发现与合成主要依赖“试错法”,严重制约了新型含能材料的研发与突破。本研究选取含能材料关键热力学性质——生成焓作为预测目标,提出一种融合主动学习策略与SMILES分子特征表示的机器学习构... 含能材料在军事和航天等领域应用广泛,但其发现与合成主要依赖“试错法”,严重制约了新型含能材料的研发与突破。本研究选取含能材料关键热力学性质——生成焓作为预测目标,提出一种融合主动学习策略与SMILES分子特征表示的机器学习构效关系模型。基于G4高精度量子化学方法构建了包含1447种气相含能分子的数据集,提取了93个SMILES有效描述符,建立了基于线性模型的气相生成焓初步预测模型。对从PubChem数据库中获取的221738种潜在含能分子进行了系统预测。进一步引入主动学习策略,对高误差样本迭代优化,得到了泛化能力更好的预测模型,该模型在典型含能分子上得到了验证。最终筛选出20个威力指数超过2.0倍TNT的候选分子,其中,大多数未见于现有已知含能材料库,显示出本研究在高性能含能材料发现方面的潜力,为新型含能材料的开发提供新策略与新途径。 展开更多
关键词 含能材料筛选 主动学习 SMILES特征 生成焓 爆炸热
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基于三角模糊数的舰船结构毁伤评估
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作者 梁霄 赵延菲 +1 位作者 王言金 王瑞利 《哈尔滨工程大学学报》 北大核心 2026年第1期131-138,共8页
针对水下武器攻击产生的爆炸造成舰船结构毁伤的问题,目前的评估模型未充分考虑多毁伤因素的影响,为此,本文通过改进的模糊评判对舰船毁伤因子进行评估。通过爆炸载荷作用机理,挖掘舰船毁伤因素并构建层级模型;采用三角模糊数融合多个... 针对水下武器攻击产生的爆炸造成舰船结构毁伤的问题,目前的评估模型未充分考虑多毁伤因素的影响,为此,本文通过改进的模糊评判对舰船毁伤因子进行评估。通过爆炸载荷作用机理,挖掘舰船毁伤因素并构建层级模型;采用三角模糊数融合多个不同学科专家意见进行群决策,实现对模糊性的处理;通过构造评判因子矩阵,使用标准离差率调整判断矩阵以计算权重;通过加权平均算子导出隶属度,使用有效度原则优化隶属度得到模糊综合评判的最终结果。结果表明,结合三角模糊数的模糊层次分析法在多属性决策中具有更高的稳定性,所得评估结果更加可靠。此外,采用有效度原则对隶属度进行定量描述,避免最大隶属度原则可能失效的问题。研究结果能有效地判断舰船生命力状态,验证了模型的合理性和有效性。 展开更多
关键词 舰船 结构毁伤 水下爆炸 层次分析 模糊综合评判 三角模糊数 隶属度 有效度
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基于改进智能优化算法的爆破参数优化研究
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作者 刘唱 王孝东 《水电能源科学》 北大核心 2026年第1期123-127,共5页
针对水利工程岩石料场及矿山爆破参数优化难以确定的问题,传统方法主要依赖经验公式和试验调整。为解决这一问题,提出了一种结合改进鲸鱼算法(GWOA)反向神经网络(BP)的参数优化方法。首先采用改进鲸鱼优化算法,构建了GWOA-BP模型,以炸... 针对水利工程岩石料场及矿山爆破参数优化难以确定的问题,传统方法主要依赖经验公式和试验调整。为解决这一问题,提出了一种结合改进鲸鱼算法(GWOA)反向神经网络(BP)的参数优化方法。首先采用改进鲸鱼优化算法,构建了GWOA-BP模型,以炸药单耗、孔距和排距为优化目标,并结合云南省某工程实测爆破数据进行对比研究。结果显示,GWOA-BP模型在预测精度、稳定性方面均优于BP模型,误差指标显著降低。该研究成果为类似工程爆破参数优化提供了一种新技术手段。 展开更多
关键词 台阶爆破 炸药单耗 孔网参数 神经网络 鲸鱼优化方法
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不同聚能装药结构侵彻花岗岩高精度数值仿真与验证
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作者 李拓键 王成 +1 位作者 郭宇阳 邵楠 《北京理工大学学报》 北大核心 2026年第2期111-122,共12页
为研究不同聚能装药结构的高精度数值仿真算法,基于欧拉网格下的流体弹塑性方程组,构建了聚能射流成型及侵彻花岗岩的高精度数值求解算法,对不同聚能装药结构进行模拟并开展试验验证.设计并实现了两种新型聚能装药结构,开展了与单锥型... 为研究不同聚能装药结构的高精度数值仿真算法,基于欧拉网格下的流体弹塑性方程组,构建了聚能射流成型及侵彻花岗岩的高精度数值求解算法,对不同聚能装药结构进行模拟并开展试验验证.设计并实现了两种新型聚能装药结构,开展了与单锥型聚能装药结构的侵彻花岗岩静破甲对比验证试验,将仿真结果与试验结果进行了对比.结果表明:高精度数值仿真算法与试验结果在稳定开孔直径与侵彻深度方面误差均小于12%;A型聚能装药结构相比于单锥聚能装药结构射流稳定开孔孔径提高了45.2%,B型聚能装药结构相比于单锥聚能装药结构射流稳定开孔孔径提高了58.1%. 展开更多
关键词 爆炸力学 新型聚能装药 花岗岩 高精度数值算法 聚能射流成型以及侵彻
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