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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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刚性安装设备缩比设计的冲击环境影响因素分析
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作者 陈攀 魏强 +1 位作者 陈威 刘志忠 《舰船科学技术》 北大核心 2026年第3期1-7,共7页
针对舰船设备在水下爆炸冲击下的安全性问题,本文基于1∶3缩比理论模型,建立了缩比双层底结构及设备模型,通过数值计算方法对舰船缩比结构和设备模型遭受水下爆炸时的动态响应进行研究,探讨刚性安装设备缩比设计时,实际缩比模型相比理... 针对舰船设备在水下爆炸冲击下的安全性问题,本文基于1∶3缩比理论模型,建立了缩比双层底结构及设备模型,通过数值计算方法对舰船缩比结构和设备模型遭受水下爆炸时的动态响应进行研究,探讨刚性安装设备缩比设计时,实际缩比模型相比理论缩比模型在质心偏移、连接螺栓数量及刚性接触面设置对缩比设备冲击环境的影响规律。研究表明,缩比设备质心三向偏移1/4时,设备基础的加速度、速度及位移响应变化范围均小于4%,影响可忽略;缩比后设备连接螺栓数量2个时,加速度峰值降低了13.4%,建议缩比设备模型螺栓安装点数量不少于4个;接触面设置对缩比设备基础加速度响应影响显著,全约束工况加速度峰值较节点接触高283.5%,需选择合适的刚性设备接触设置模式。研究结果阐明了舰船刚性安装设备缩比设计时冲击环境的主要影响因素,为舰船缩比模型设计提供了借鉴作用。 展开更多
关键词 水下爆炸 缩比模型 刚性安装设备 冲击环境
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金属桥箔电爆炸驱动飞片过程流场瞬态观测与数值模拟
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作者 伍俊英 郑富德 +3 位作者 姚雨乐 李钧剑 刘瑞政 刘丹阳 《爆炸与冲击》 北大核心 2026年第1期167-178,共12页
金属桥箔电爆炸驱动绝缘飞片的冲击起爆与点火技术在武器装备的起爆与点火系统中被广泛应用。为弥补现有研究对飞片运动过程中流场演化规律描述不足的缺陷,促进该技术向能量高效利用以及小型化等方面发展,搭建了双脉冲激光纹影瞬态观测... 金属桥箔电爆炸驱动绝缘飞片的冲击起爆与点火技术在武器装备的起爆与点火系统中被广泛应用。为弥补现有研究对飞片运动过程中流场演化规律描述不足的缺陷,促进该技术向能量高效利用以及小型化等方面发展,搭建了双脉冲激光纹影瞬态观测实验系统,获得了不同时刻下流场的密度分布以及飞片的运动距离,同时,建立了金属桥箔电爆炸驱动飞片运动过程的二维轴对称流体动力学计算模型与计算方法,计算时充分考虑了加速膛内外流场在飞片运动、冲击波压缩以及高温高压等离子体膨胀等作用下的演化规律,采用相变体积分数法描述桥箔在电能作用下由固相到等离子体相的转变,建立了等离子体状态方程以准确描述等离子体的状态,采用动网格模型描述了飞片在流场驱动下的运动。计算与实验得到的流场密度分布具有较好的贴合性,且飞片运动距离和飞片运动速度的最大相对误差分别为6.1%与8.1%,验证了计算模型与计算方法的准确性。研究结果表明:电容为0.33μF、起爆电压为2800 V时,研究范围内,流场压强最大值基本维持在1×10^(7)Pa左右;流场温度逐渐从516 ns时刻的9950 K降低到2310 ns时的3100 K;流场等离子体相分布逐渐由扁平状发展为长条状,等离子体相与飞片运动垂直方向的最大扩散距离为0.8 mm。1360 ns后,由于飞片突破冲击波波阵面,流场的压强分布与温度分布的前端突起。 展开更多
关键词 金属桥箔 电爆炸 飞片 流场
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液态CO_(2)相变气爆爆破孔爆能分布特征
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作者 赵宝友 季廷秀 孙建宁 《振动与冲击》 北大核心 2026年第3期271-281,共11页
液态CO_(2)致裂器喷射到爆破孔中的CO_(2)是其致裂煤岩体的唯一能量源,爆破孔爆能即CO_(2)的冲击压力分布特征对煤岩体致裂效果与机理的研究具有重要意义。采用自主研发的气爆爆能测试系统开展了现场原型致裂器气爆爆破孔爆能测试的试... 液态CO_(2)致裂器喷射到爆破孔中的CO_(2)是其致裂煤岩体的唯一能量源,爆破孔爆能即CO_(2)的冲击压力分布特征对煤岩体致裂效果与机理的研究具有重要意义。采用自主研发的气爆爆能测试系统开展了现场原型致裂器气爆爆破孔爆能测试的试验研究,考虑CO_(2)等熵流动,建立了液态CO_(2)相变气爆形成的超临界CO_(2)射流模型,并结合试验结果系统分析了气爆爆破孔爆能分布特征及其成因。结果表明:受到爆破孔限制,超临界CO_(2)射流流体产生连续脉冲式的冲击波,远离致裂器喷气口的爆能时程呈现多次间隔性瞬间升高和降低且显著非对称的倒“V”字型;宏观上爆压时程呈现快速升高和降低的三角形脉冲形式,且最高爆能分布于致裂器喷气口附近,爆压峰值可达230.000 MPa,其峰前升压和峰后降压速率均显著大于爆破孔其余位置的爆能时程特征;渗失孔即爆生裂隙周围的冲击压力还具有梯形脉冲特征,气爆爆能主要聚集在爆生裂隙周围,越靠近爆生裂隙爆能越高,爆生裂缝周围冲击压力为79.160~84.970 MPa,其中20.000 MPa以上的高压持时可维持220.000 ms左右,即液态CO_(2)相变气爆属于典型的长持时中频动载。基于试验所获得的爆能分布规律,对当前气爆工艺进行改进,提出了超临界CO_(2)点式射流冲击气爆致裂新方法。研究成果可为液态CO_(2)致裂器气爆的现场应用和理论研究提供参考。 展开更多
关键词 超临界CO_(2) 气爆 爆能 爆破孔 冲击波 等熵流
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基于缩比设计的弹性安装设备冲击响应影响规律分析
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作者 陈攀 魏强 +1 位作者 陈威 刘志忠 《舰船科学技术》 北大核心 2026年第2期46-51,共6页
针对舰船设备在水下爆炸冲击下的安全性问题,通过1∶3缩比模型数值模拟,探究实际加工和安装等偏差对设备基础冲击响应的影响规律。建立实尺度与缩比模型,分析质心偏移、隔振器数量、刚度及阻尼变化对缩比模型基础垂向加速度、速度、位... 针对舰船设备在水下爆炸冲击下的安全性问题,通过1∶3缩比模型数值模拟,探究实际加工和安装等偏差对设备基础冲击响应的影响规律。建立实尺度与缩比模型,分析质心偏移、隔振器数量、刚度及阻尼变化对缩比模型基础垂向加速度、速度、位移的影响。研究表明设备质心偏移、隔振器数量及刚度变化(±20%)对基础加速度峰值影响小于5%,速度与位移的影响可忽略;隔振器阻尼变化(±20%)导致加速度峰值差异达11%,需重点关注。研究结果阐明了舰船设备缩比模型简化规律,为舰船缩比模型设计及抗冲击性能评估提供借鉴作用。 展开更多
关键词 水下爆炸 缩比模型 弹性安装设备 冲击响应 隔振器参数
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基于OpenRadioss的RHT模型改进及地下自由场爆炸分析
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作者 邓鹏 胡世君 +4 位作者 李霖炜 张舵 冉宪文 张超 陈仁朋 《兵器装备工程学报》 北大核心 2026年第1期15-23,共9页
数值模拟是当今研究钻地武器对地下岩石和结构毁伤的主要方法,而岩石和混凝土的动态本构模型是地下爆炸模拟准确可靠的关键。基于3强度面的RHT模型,从残余应力面、拉压子午比、应变率增强因子及拉伸损伤演化模型4个方面进行改进,梳理了... 数值模拟是当今研究钻地武器对地下岩石和结构毁伤的主要方法,而岩石和混凝土的动态本构模型是地下爆炸模拟准确可靠的关键。基于3强度面的RHT模型,从残余应力面、拉压子午比、应变率增强因子及拉伸损伤演化模型4个方面进行改进,梳理了RHT模型的应力更新和本构计算流程,提出了在开源仿真软件OpenRadioss中的实现与应用方法,并开展了混凝土单元拉压测试和地下自由场爆炸模拟分析,分析结果表明:改进RHT模型解决了传统RHT模型双轴压缩没有应力下降段及三轴拉伸不能损伤累积的错误,优化了单轴、双轴拉伸的损伤演化规律;对于地下自由场爆炸,改进RHT模型计算的应力时程曲线在峰值之后的平稳度更好,数值振荡较低,11个测点应力峰值与试验相比平均误差由传统RHT模型的32.58%降低至12.59%。 展开更多
关键词 RHT模型改进 应力更新算法 OpenRadioss 数值模拟 地下自由场爆炸
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蜂窝结构对极窄脉宽载荷防护效果的考核试验研究
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作者 随亚光 陈博 +5 位作者 仵可 徐畅 徐海斌 董鹏举 王等旺 李进 《振动与冲击》 北大核心 2026年第4期191-197,209,共8页
高空强X射线辐射在空间目标表面会产生热击波,具有载荷脉宽窄、峰值高,且在辐照范围内同步性高等特点,可能对结构造成严重损伤。蜂窝结构具有密度低、高吸能等优点,被广泛用于冲击防护。文章基于光敏炸药加载试验技术,设计了蜂窝结构对... 高空强X射线辐射在空间目标表面会产生热击波,具有载荷脉宽窄、峰值高,且在辐照范围内同步性高等特点,可能对结构造成严重损伤。蜂窝结构具有密度低、高吸能等优点,被广泛用于冲击防护。文章基于光敏炸药加载试验技术,设计了蜂窝结构对热击波防护效果的考核试验方法,将光敏炸药均匀地喷涂在1 mm厚薄铝板上作为加载源,光敏炸药的面密度为40 mg/cm^(2),成功实现了加载载荷峰值约为189 MPa、脉宽小于5μs、加载面积为16 cm×16 cm、载荷同步性优于3μs的极窄脉宽载荷模拟。开展试验研究了不同厚度蜂窝板对极窄脉宽载荷的防护效果,测量发现经过不同厚度蜂窝结构缓冲后,冲击波首峰峰值降低幅值均超过80%,且随着蜂窝厚度增加,降低幅值增大。试验结果表明设计的考核方法可行,蜂窝结构在空间目标防护方面具备较好的应用前景。 展开更多
关键词 热击波 蜂窝结构 光敏炸药 极窄脉宽载荷
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热震理论及其意义
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作者 张旗 陈万峰 +4 位作者 原杰 李承东 汤军 焦守涛 张雪荣 《东华理工大学学报(自然科学版)》 北大核心 2026年第1期1-8,共8页
浅源强震的成因机制至今存在争议。传统构造地震模型以断层滑动与弹性回跳为核心,但难以解释部分震源区缺乏显著断裂活动迹象的强震事件,尤其是震前出现的地热异常和气体泄漏等现象。为弥补现有理论的局限性,提出热震理论,旨在探讨由深... 浅源强震的成因机制至今存在争议。传统构造地震模型以断层滑动与弹性回跳为核心,但难以解释部分震源区缺乏显著断裂活动迹象的强震事件,尤其是震前出现的地热异常和气体泄漏等现象。为弥补现有理论的局限性,提出热震理论,旨在探讨由深部热流体活动及其相变爆炸引发强震的可能机制。通过野外地质调查与典型震例分析,识别出广泛分布的隐爆角砾岩(角砾岩筒)作为古热震的关键地质证据,构建了热震成因模型。热震的触发需满足3个条件:浅部存在花岗岩侵入体及持续岩浆热场提供热源;高压超临界流体在岩浆活动中进入热场并聚集;在地质构造扰动下局部压强骤降,导致流体相变膨胀并爆炸。热震通常表现为震中区在平面分布上呈椭圆形或圆形、前震缺失、余震频发等特征,这些特征与传统构造地震(冷震)有显著差异。基于此理论,提出通过监测地下热场、流体活动及地球化学异常指标实现临震预测,为地震预报提供了可验证的路径。 展开更多
关键词 热震 超临界流体 压强骤降 隐爆角砾岩 深部侵入岩 爆炸成矿
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尾翼EFP对半无限靶侵彻机理及规律
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作者 陈鹏 李文彬 +3 位作者 李一鸣 王彦盛 洪毕辉 王晓鸣 《火炸药学报》 北大核心 2026年第1期65-77,I0003,共14页
针对尾翼稳定型EFP侵彻能力问题,基于Aleksevevskii-Tate模型,通过引入尾翼空心长度与尾翼偏折角变量,建立了适用于尾翼EFP的侵彻深度计算模型;结合数值模拟,深入分析了尾翼EFP的侵彻机制,揭示了尾翼EFP对半无限靶的侵彻机理与规律。结... 针对尾翼稳定型EFP侵彻能力问题,基于Aleksevevskii-Tate模型,通过引入尾翼空心长度与尾翼偏折角变量,建立了适用于尾翼EFP的侵彻深度计算模型;结合数值模拟,深入分析了尾翼EFP的侵彻机制,揭示了尾翼EFP对半无限靶的侵彻机理与规律。结果表明,所建立的理论模型计算结果与数值仿真及试验结果吻合良好,能有效预测尾翼EFP对半无限靶的侵彻深度;当尾部空腔长度占EFP全长比例不超过0.5时,尾翼偏折角对EFP侵彻孔径的影响不显著,但显著影响其侵彻深度和孔洞形态;提高着靶速度可显著增强尾翼EFP的侵彻性能;在保持质量一致和密实度基本相同的条件下,增加EFP长径比虽可一定程度提升侵彻能力,但导致无量纲侵彻深度下降;入射角在0~25°范围内对侵彻深度影响有限。 展开更多
关键词 爆炸力学 尾翼EFP 半无限靶 侵彻机理 侵彻深度 侵彻战斗部
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接触爆炸作用下RC箱梁桥损伤机理试验与数值模拟研究
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作者 闫秋实 吕辰旭 +1 位作者 杜修力 李述涛 《土木工程学报》 北大核心 2026年第2期113-125,共13页
作为关键基础设施的钢筋混凝土箱梁桥可能面临潜在的接触爆炸威胁。为揭示钢筋混凝土箱梁桥接触爆炸损伤机理,设计1/4比尺的3跨箱梁桥模型并开展野外化爆试验,分析箱梁桥的动力响应与损伤模式。采用LS-DYNA建立箱梁桥数值模型,通过与试... 作为关键基础设施的钢筋混凝土箱梁桥可能面临潜在的接触爆炸威胁。为揭示钢筋混凝土箱梁桥接触爆炸损伤机理,设计1/4比尺的3跨箱梁桥模型并开展野外化爆试验,分析箱梁桥的动力响应与损伤模式。采用LS-DYNA建立箱梁桥数值模型,通过与试验结果对比,验证数值模型准确性。基于数值模型分析箱梁内应力波传播过程,探究箱梁桥局部化损伤形成机制,并参数分析腹板高厚比、TNT装药质量对箱梁局部化损伤的影响。研究结果表明:接触爆炸下RC箱梁呈现典型局部化损伤模式,整体结构响应相对轻微。高强压缩波造成迎爆面的开坑、顶板贯穿孔洞及腹板的破裂,穿过腹板的压缩波在底板自由表面反射形成拉伸波导致背爆面的层裂剥落。增大腹板高厚比能够减弱反射拉伸波的强度,进而减小或避免RC箱梁背爆面层裂剥落损伤,在抗爆设计中应注意控制腹板高厚比在合理范围。线性拟合得到的局部损伤特征尺寸与高厚比、装药质量之间的关系式可为实际桥梁工程抗爆防护设计及应急抢修提供参考。 展开更多
关键词 钢筋混凝土箱梁桥 接触爆炸试验 数值模拟 损伤机理 应力波
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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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