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211.
Nano-sized aluminum(Nano-Al)powders hold promise in enhancing the total energy of explosives and the metal acceleration ability at the same time.However,the near-detonation zone effects of reaction between Nano-Al with detonation products remain unclear.In this study,the overall reaction process of 170 nm Al with RDX explosive and its effect on detonation characteristics,detonation reaction zone,and the metal acceleration ability were comprehensively investigated through a variety of experiments such as the detonation velocity test,detonation pressure test,explosive/window interface velocity test and confined plate push test using high-resolution laser interferometry.Lithium fluoride(LiF),which has an inert behavior during the explosion,was used as a control to compare the contribution of the reaction of aluminum.A thermochemical approach that took into account the reactivity of aluminum and ensuing detonation products was adopted to calculate the additional energy release by afterburn.Combining the numerical simulations based on the calculated afterburn energy and experimental results,the param-eters in the detonation equation of state describing the Nano-Al reaction characteristics were calibrated.This study found that when the 170 nm Al content is from 0%to 15%,every 5%increase of aluminum resulted in about a 1.3%decrease in detonation velocity.Manganin pressure gauge measurement showed no significant enhancement in detonation pressure.The detonation reaction time and reaction zone length of RDX/Al/wax/80/15/5 explosive is 64 ns and 0.47 mm,which is respectively 14%and 8%higher than that of RDX/wax/95/5 explosive(57 ns and 0.39 mm).Explosive/window interface velocity curves show that 170 nm Al mainly reacted with the RDX detonation products after the detonation front.For the recording time of about 10 μs throughout the plate push test duration,the maximum plate velocity and plate acceleration time accelerated by RDX/Al/wax/80/15/5 explosive is 12%and 2.9 μs higher than that of RDX/LiF/wax/80/15/5,respectively,indicating that the aluminum reaction energy significantly increased the metal acceleration time and ability of the explosive.Numerical simulations with JWLM explosive equation of state show that when the detonation products expanded to 2 times the initial volume,over 80%of the aluminum had reacted,implying very high reactivity.These results are significant in attaining a clear understanding of the reaction mechanism of Nano-Al in the development of aluminized explosives. 相似文献
212.
An intersecting cavern is a common structural form used in underground engineering, and its safety and stability performance directly control the service performance of the whole project. The dynamic re-sponses of the three kinds of crossing type (+-shaped, T-shaped, L-shaped) caverns subjected to ground shock were studied by numerical simulation. The velocity plus force mode boundary setting method was proposed in the coupled static and dynamic analysis of a deep underground cavern. The results show that, among the three types of crossing caverns, the+-shaped cavern is the most significantly affected by the dynamic action, followed by T-shaped, and then L-shaped caverns. The vault settlement, straight wall deformation, vault peak particle velocity, effective plastic strain of surrounding rock, and maximum principal stress and strain at the bottom of the lining of the straight wall increase with the increase of cavern span. The vault settlement, straight wall deformation, effective plastic strain of surrounding rock, and the maximum principal stress and strain at the bottom of lining to the straight wall decrease with the increase of lateral pressure coefficient, and the peak particle velocity at the vault increases. The variation is small compared with the change of cavern span. The influence range of the underground cavern intersection is two cavern diameters from the intersection centre. The bottom of the straight wall at the intersection is the weak part. It is suggested to thicken the support locally to improve the stability of the cavern. 相似文献
213.
Abnormal voltages such as electrostatic, constant current, and strong electromagnetic signals can erro-neously trigger operation of MEMS pyrotechnics and control systems in a fuze, which may result in casualties. This study designs a solid-state micro-scale switch by combining the corona gas discharge theory of asymmetric electric fields and Peek's Law. The MEMS switch can be transferred from "off" to"on" through the gas breakdown between the corona electrodes. In the model, one of the two electrodes is spherical and the other flat, so a non-uniform electric field is formed around the electrodes. The theoretical work is as follows. First, the relation among the radius of curvature of the spherical electrode, the discharge gap, and the air breakdown voltage is obtained; to meet the low voltage (30-60 V) required to drive the MEMS switch, the radius of curvature of the spherical electrode needs to be 10-50 μm and the discharge gap between the two electrodes needs to be 9-11 μm. Second, the optimal ratio ε is introduced to parameterize the model. Finally, the corona discharge structural parameters are determined by comparing the theoretical and electric field simulation results. The switch is then fabricated via MEMS processing. A hardware test platform is built and the performing chip tested. It is found that when the electrode gap is 9 μm, the electrostatic voltage is at least 37.3 V, with an error of 2.6% between the actual and theoretical air breakdown voltages. When the electrode gap is 11 μm, the electrostatic voltage is at least 42.3 V, with an error of 10.5% between the actual and theoretical air breakdown voltages. Both cases meet the design requirements. 相似文献
214.
Min Zhu Sheng-ao Wang Huang Huang Gui Huang Fei Wu Shao-hua Sun Biao Li Zi-jian Xu 《防务技术》2021,17(4):1444-1452
The response characteristics of the warhead under thermal stimuli conditions are important to the safety improvement. The goal of this study is to obtain data on the warhead in the fast cook-off process. In this paper, a numerical calculation method is proposed, whose reliability is supported by comparison with experimental results. Through the numerical calculation, the temperature distribution, temperature change, and ignition time are acquired. The numerical results show that the ignition time is 76 s after the warhead started to burn and that the maximum temperature of the explosive's outer surface is 238.3 C at the ignition time. The fast cook-off experiment of the warhead is implemented so as to get the flame temperature and reaction grades that are not available through numerical calculation. The experimental results show that the overpressure fails to reach the preset minimum value which is equivalent to 6 kg of TNT and that the reaction grade is deflagration. The research results have reference value for the design of the warhead and the reduction of detonation risks. 相似文献
215.
毛泽东运动战的情报信息思想研究 总被引:1,自引:1,他引:0
毛泽东的运动战具有以现代信息技术为核心的多样式信息来源,其效率之高和效应之大不仅是中国战史的奇迹,也堪称世界战史的典范。毛泽东当时自觉不自觉地站在了用情报信息指导战争这一世界军事领域的前沿,在战争中学习战争,成功地利用情报信息对红军的作战样式进行了全新的革命,发明和发展了当年红军以类似今天的制信息权为特征的运动战,名副其实地成为中国战史上使作战样式与现代无线电信息技术结合最早也最为出色的战略战术的创始人,当然也就赢得了战争。 相似文献
216.
人工智能技术在众多领域获得广泛应用.为满足现代战争对防化指挥手段的现代化要求,针对不易量化的防化指挥决策问题的评估,提出了构建知识库并应用模糊推理机制建立专家系统,据此进行防化保障预案的评估选优方法,并对该方法的求解过程进行了探讨. 相似文献
217.
通过超宽谱对配用不同弹体的无线电引信的辐照,分析了不同弹体以及配用某种弹体的引信不同放置方向对超宽谱电磁脉冲与无线电引信能量耦合的影响,并分析了弹体大小对能量耦合的影响。通过辐照、分析和计算最终得出:弹体是影响能量耦合的主要因素。弹体口径越大,超宽谱电磁脉冲与无线电引信的耦合能量越大。另外,配用弹体引信的不同放置方向也是影响能量耦合的重要因素;配用弹体的引信竖直放置时,超宽谱电磁脉冲与无线电引信的耦合能量最大。 相似文献
218.
219.
毛泽东军事思想是把马列主义的基本原理和中外优秀军事思想与中国革命实践相结合而产生的关于中国革命战争、国防和军队建设问题的科学理论体系.新中国成立以后,毛泽东军事思想以它的科学性、阶级性、创造性、系统性、时代性和正义性等鲜明特征,受到世界各国的重视,对鼓舞和指导第三世界人民争取民族独立解放,推动当代世界多元化政治格局的发展,促进世界军事科学的繁荣等方面,发挥了重要作用并产生了深刻影响,在当今世界军事思想领域中占有重要地位.对毛泽东军事思想在世界广泛传播进行理性思考,全方位认识毛泽东军事思想的地位、作用和影响,对坚持和发展毛泽东军事思想具有重要的意义. 相似文献
220.
增量比例导引弹道仿真研究 总被引:3,自引:2,他引:1
通过引入附加增量,对传统的比例导引方法进行改进。建立了增量比例导引方法的数学模型,运用Matlab语言进行仿真计算,分析了不同的比例导引系数、附加增量对导引弹道及导弹与目标相遇时间的影响,得到不同导引系数及附加增量下的弹道曲线和弹目相遇时间,仿真结果表明与传统的比例导引方法相比,在比例导引系数不变的情况下,选择合适的附加增量可以减少导弹与目标的相遇时间。 相似文献