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1.
高层建筑多层地下室内人防结构顶板核爆荷载的合理确定是目前人防结构设计中亟待解决的问题。文中在对实际工程的调查基础上,研究了双层地下室的试验模型,进行了空气冲击波在地下室模型内传播的爆炸试验,分析了作用在双层地下室底层结构顶板的爆炸压力分布特性,并得出多层地下室的底层顶板核爆荷载一般要小于单层地下室顶板核爆荷载设计值的结论.  相似文献   

2.
一种新型防护结构对爆炸冲击波衰减特性的研究   总被引:3,自引:0,他引:3  
运用大型有限元软件LS—DYNA,在相同爆炸冲击波作用下,对洞库口部普通钢板防护门和有泡沫铝夹层的钢板防护门两种防护结构的隔爆性能进行了数值模拟和对比分析,结果表明:有泡沫铝夹层的钢板防护门对爆炸冲击波有着良好的衰减特性。同时表明该新型防护结构对洞库口部抗爆炸冲击波设计有着很高的参考价值。  相似文献   

3.
新型抗冲击、抗爆炸防护结构的研究   总被引:1,自引:0,他引:1  
海湾战争、科索沃战争和伊拉克战争表明,完善的防护工程体系在高科技局部战争中具有极为重要的作用。针对目前防护工程中存在的一些问题,提出了一种新型抗冲击、抗爆炸防护结构,该防护结构以钢管混凝土短构件为基本构件,通过一定的组合方式组成一种新型的遮弹结构,由于钢管混凝土构件具有承载能力高、抗压强度大尤其是延性好的特性,因此该新型遮弹结构的抗冲击和抗爆炸能力是很强的,非常适宜在防护工程中应用。  相似文献   

4.
在防护结构设计中,通常是采用材料的动力强度和动力弹性模量以考虑应变速率效应问题。本文民提出的应变速率相关材料模型,对核武器及常规武器爆炸作用下的钢筋混凝土结构进行速率相关分析,并与考虑材料强度提高的速率无关分析对比。两种分析结果表明,对于钢筋混凝土结构,两种计算结果相差较大,而且目前防护结构设计方法偏于保守。  相似文献   

5.
冲击波载荷作用下固支正交各向异性薄板挠度特性分析   总被引:2,自引:0,他引:2  
根据能量原理,采用层合板理论和薄板大变形理论,对四边固支的矩形正交铺层的纤维增强复合材料薄板在爆炸冲击波作用下的弹性大变形进行理论分析,得到了层合板的最大挠度计算公式。有限元数值模拟计算表明,理论计算结果与有限元数值模拟的结果吻合较好,因此该方法可用来对复合材料板在弹性范围内的最大挠度进行预测,同时认为根据薄板的最大挠度,可以计算板的应力(应变)分布和复合材料板失效时的爆炸载荷。  相似文献   

6.
本文介绍了抗超高速撞击多层结构复合材料的设计、制备和实验,并对结果进行了讨论,实验证明,以SiC陶瓷基复合材料为防护层、以空心微珠或多孔变密度复合材料为缓冲层、以编织物复合材料为结构层的多层结构复合材料,具有面密度低、抗撞击速度范围宽、抗撞击性能好的特点。  相似文献   

7.
为提高结构杭力的要求,克服现有防护结构厚重苯大的缺点,将箱形钢板—钢筋混凝土组合结构引入到抗爆炸领域中,运用ANSYS大型有限元软件对该结构和普通钢筋混凝土结构在相同爆炸荷载下的响应进行数值分析,进行了变形和钢筋应力两方面的对比,得出了这种新型结构在抗力、变形方面均具有明显优势的结论,说明该结构在抗爆炸领域中具有一定的实用意义和价值。  相似文献   

8.
导弹弹体空中结构解体毁伤研究   总被引:1,自引:0,他引:1  
针对弹体结构解体破坏是导弹K级毁伤主要毁伤模式之一,进行了爆炸冲击波载荷作用下自由状态导弹弹体结构毁伤理论预测与实验验证.基于简化的弹体质量阶梯分布梁结构和能量分析,进行了导弹弹体结构解体毁伤临界冲量理论预测,通过爆炸冲击载荷作用下局部及舱段式弹体模拟结构毁伤实验,对理论模型进行了分析验证.研究结果对于导弹目标易损性分析与毁伤评估具有一定参考价值.  相似文献   

9.
为研究装药命中角对防护结构口部爆炸毁伤的影响规律,对直墙拱结构进行了一系列爆炸模拟分析,得到了直墙拱结构拱顶、拱脚和直墙底3个位置的爆炸应力和位移时程曲线。通过分析这3个位置的应力峰值和位移峰值,发现随着装药命中角的增大,拱顶处竖直方向荷载减小,而拱脚处水平方向荷载增大;随着装药命中角的增大,拱顶处竖直方向位移变形减小,而拱脚处水平方向位移变形增大。模拟分析得到的命中角对防护结构口部爆炸毁伤的影响规律,可供防护工程设计时参考。  相似文献   

10.
通过分析被动电磁装甲和金属射流相互作用的机理,建立了被动电磁装甲系统的电路模型,设计了研究被动电磁装甲防护机理的试验装置,对多组金属导体进行了模拟金属射流的电爆炸试验,分析了脉冲电源的参数对金属导体的电爆炸时间和电流波形的影响.研究结果对金属导体的电爆炸理论应用于被动电磁装甲对射流的防护机理研究具有重要意义.  相似文献   

11.
《防务技术》2020,16(2):290-298
In order to give the energy output structure of typical explosives near-ground explosion in real ground conditions, the free-field shockwave, ground reflection shockwave and Mach wave overpressure time history of composition B explosive, RDX explosive and aluminized explosive were measured by air pressure sensors and ground pressure sensors. The shape of the free-field shock wave, ground reflection shock wave, and Mach wave and explosion flame were captured by high-speed camera. The experimental results show that, at the same horizontal distance from the initiation point, the peak overpressure of explosive shock wave of composition B explosive, both in the air and on the ground, is less than that of RDX and aluminized explosives. At a distance of 3.0 m from the initiation point, the peak overpressure of aluminized explosives is slightly less than that of RDX explosives. Owing to the exothermic effect of aluminum powder, the pressure drop of aluminized explosives is slower than that of RDX explosives. At 5.0 m from the initiation point, the peak overpressure of aluminized explosives is larger than that of RDX explosives. At the same position from the initiation point, among the three kinds of explosives, the impulse of aluminized explosives is the maximum and the impulse of composition B explosives is the minimum. With the increase of the horizontal distance from the initiation point, the height of Mach triple-points (Mach steam) of the three explosives increases gradually. At the same horizontal distance from the initiation point, there is poorly difference in the height of Mach triple-points between aluminized explosive and RDX explosive, and the height of Mach triple-points of composition B explosive is much smaller than that of other two explosives. The maximum diameter and duration of the fireball formed by aluminized explosives are the largest, followed by composition B explosive, and the maximum diameter and duration of the fireball formed by RDX explosive are the smallest.  相似文献   

12.
The explosive reaction degree and protection from explosions are concerns in the military field.In this work,the reaction degree of the composition B explosive was investigated experimentally.Multi-layered compound structures were used as barriers to weaken the blast loads.A comprehensive experiment using a high-speed camera and image processing techniques,side witness plates,and bottom witness plates was presented.Using the experimental fragment velocities,fragment piercing patterns,and damage characteristics,the reaction degree of the explosive impeded by different multi-layered com-pound structures could be precisely differentiated.Reaction parameters of the explosive obstructed by compound structures were obtained by theoretical analysis and numerical simulations.Unlike the common method in which the explosive reaction degree is only distinguished based on the initial pressure amplitude transmitted into the explosive,a following shock wave reflected from the side steel casing was also considered.Different detonation growth paths in the explosive formed.Therefore,all these shock wave propagation characteristics must be considered to analyze the explosive response impeded by compound structures.  相似文献   

13.
为了研究爆炸冲击波对武器装备的损伤,建立了炸药爆炸冲击靶板的有限元模型,对不同厚度靶板在确定爆炸冲击环境下的损伤进行了仿真试验。不同于传统的宏观破口尺寸损伤表征参数,引入了等效塑性应变来精确描述靶板损伤,并提出了一种基于主成分分析理论对靶板损伤进行评估的方法。结果表明:利用该方法所得到的计算结果与理论分析结果完全一致。这说明基于多元统计分析的靶板损伤评估方法是切实可行的,可以进一步应用于装备爆炸损伤评估与易损性研究中。  相似文献   

14.
临近空间高超声速飞行器再入过程中会产生等离子体鞘套,干扰电磁波对飞行器的探测.针对这一问题,对典型临近空间飞行器模型进行建模,模拟其再入过程中不同飞行工况下的流场分布.基于流场分布对等离子体参数分布进行建模,利用散射矩阵方法从理论上对太赫兹波在等离子体鞘套中的传输特性进行计算.计算结果表明高频太赫兹波能够有效穿透等离子...  相似文献   

15.
榴弹攻击下铝质结构抗爆能力的数值评估   总被引:2,自引:1,他引:1  
在静爆试验的基础上,结合有限元数值方法对小口径(30 mm)燃烧榴弹舷侧接触爆炸攻击下铝质艇体结构的毁伤进行评估,着重分析了铝质艇体结构在小口径武器攻击下,弹体的攻击角度、弹体的初始侵彻速度以及爆炸产物等对艇体结构破损和毁伤范围的影响以及榴弹爆炸的破片效应.  相似文献   

16.
Reactive Materials (RMs), a new material with structural and energy release characteristics under shock-induced chemical reactions, are promising in extensive applications in national defense and military fields. They can increase the lethality of warheads due to their dual functionality. This paper focuses on the energy release characteristics of RM casings prepared by alloy melting and casting process under explosive loading. Explosion experiments of RM and conventional 2A12 aluminum alloy casings were conducted in free field to capture the explosive fireballs, temperature distribution, peak overpressure of the air shock wave and the fracture morphology of fragments of reactive material (RM) warhead casings by using high-speed camera, infrared thermal imager temperature and peak overpressure testing and scanning electron microscope. Results showed that an increase of both the fireball temperature and air shock wave were observed in all RM casings compared to conventional 2A12 aluminum ally casings. The RM casings can improve the peak overpressure of the air shock wave under explosion loading, though the results are different with different charge ratios. According to the energy release characteristics of the RM, increasing the thickness of RM casings will increase the peak overpressure of the near-field air shock wave, while reducing the thickness will increase the peak overpressure of the far-field air shock wave.  相似文献   

17.
在使用马尔柯夫链分析多层防御系统的防御效用值时,发现防御矩阵是否满足乘法交换律将关系到多层防御系统变换部署后的防御效用值,因此有必要对防御矩阵是否满足乘法交换律进行证明。首先介绍了防御矩阵的概念、物理意义、重要性质及计算方法,分析了防御矩阵满足乘法交换律的重要意义,最后综合运用数学归纳法和随机矩阵性质证明了防御矩阵满足乘法交换律的事实,此结论无论对于多层防御系统的防御效用值研究还是矩阵理论研究都有一定的指导作用。  相似文献   

18.
《防务技术》2020,16(4):883-892
The influence of initiation modes on the explosive dispersion process of the multi-layer composite charge (MCC) was studied. Overpressure sensors and high-speed photography system were used to investigate the energy release process of an MCC with a specific structure. The shock wave pressure and explosive dispersion characteristics of the MCC under different initiation modes were compared. The forming and expanding process of the shock wave of the composite charge under different initiation modes was determined. The separation position of the shock wave and fireball interface was determined. The calculation formulas of the shock radius and overpressure of the composite charge are presented. The radius of the shock wave of the composite charge was significantly affected by the initiation mode. Moreover, the development process of the composite explosive fireball under different initiation modes was analyzed, the variation rules of the composite charge dispersion radius and fireball dispersion velocity with time were obtained under the different initiation modes, the explosion energy release rate of composite charge under simultaneous initiation modes was the highest, and the peak overpressure under the simultaneous initiation mode was 1.61 times that of central single-point initiation.  相似文献   

19.
为了提高线式爆炸分离装置的安全性,本研究基于扩展有限元法,通过创建二维和三维动态裂纹扩展模型,探索了线式爆炸分离装置在爆轰波作用过程中的动态裂纹扩展和止裂机理。研究表明,分离壳体的裂纹扩展路径独立于裂纹初始角度;不考虑载荷时序时,二维和三维动态裂纹扩展的主方向分别沿着分离壳体的径向和环向;考虑载荷时序时,受不同区域应力波的联合作用,三维裂纹沿环向扩展的同时会沿着轴向扩展,但裂纹的扩展均不会影响到止裂槽以外的结构。所提方法和相应结论可为线式爆炸分离装置设计提供参考。  相似文献   

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