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31.
内编队系统通过实现内卫星纯引力轨道环境和内卫星精密定轨,完成高精度地球重力场测量,实现了不依赖于加速度计的重力卫星实施新途径。针对内编队重力场测量性能难以解析分析的情况,基于MATLAB并行程序设计进行了重力场测量数值模拟,获得了内编队重力场测量的有效阶数及其精度。在内编队轨道高度为300km、内卫星干扰力为1.0×10-10m/s2、外卫星定轨精度为3cm、内外卫星相对状态测量精度为1mm的条件下,计算得到内编队测量重力场的有效阶数为72,相应的大地水准面累积误差为44cm,重力异常累积误差为4.5mGal,由此可知内编队测量重力场的有效阶数主要分布在低阶部分。  相似文献   
32.
《防务技术》2022,18(10):1822-1833
High-performance ballistic fibers, such as aramid fiber and ultra-high-molecular-weight polyethylene (UHMWPE), are commonly used in anti-ballistic structures due to their low density, high tensile strength and high specific modulus. However, their low modulus in the thickness direction and insufficient shear strength limits their application in certain ballistic structure. In contrast, carbon fiber reinforced epoxy resin matrix composites (CFRP) have the characteristics of high modulus in the thickness direction and high shear resistance. However, carbon fibers are rarely used and applied for protection purposes. A hybridization with aramid fiber reinforced epoxy resin matrix composites (AFRP) and CFRP has the potential to improve the stiffness and the ballistic property of the typical ballistic fiber composites. The hybrid effects on the flexural property and ballistic performance of the hybrid CFRP/AFRP laminates were investigated. Through conducting mechanical property tests and ballistic tests, two sets of reliable simulation parameters for AFRP and CFRP were established using LS-DYNA software, respectively. The experimental results suggested that by increasing the content of CFRP that the flexural properties of hybrid CFRP/AFRP laminates were enhanced. The ballistic tests’ results and the simulation illustrated that the specific energy absorption by the perforation method of CFRP achieved 77.7% of AFRP. When CFRP was on the striking face, the shear resistance of the laminates and the resistance force to the projectiles was promoted at the initial penetration stage. The proportion of fiber tensile failures in the AFRP layers was also enhanced with the addition of CFRP during the penetration process. These improvements resulted in the ballistic performance of hybrid CFRP/AFRP laminates was better than AFRP when the CFRP content was 20 wt% and 30 wt%.  相似文献   
33.
《防务技术》2014,10(4):349-353
In order to explore the rules of the deformation force during the launching of a small-diameter steel cartridge, the semi-closed bomb test method is used to test the greatest strains on chamber outer wall under the different chamber pressures. The pressure curves of cartridge chamber are measured in experiment, and the tensile test data of cartridge are loaded into the numerical calculation to compare with the experimental data. The conclusion was obtained that the calculated results match better with the experimental results by considering strain rate bilinear kinematic hardening material constitutive model. The forces on the various parts of the cartridge during launching and their deformation rules are achieved, in which the equivalent plastic strain decreases and the cylinder ring withstands the maximum equivalent stress when the cartridge case clings to the bore from the mouth to the bottom.  相似文献   
34.
《防务技术》2014,10(2):211-218
It has been said that, once a bomb casing has fractured, “detonation gases will then stream around the fragments or bypass them, and the acceleration process stops there.” However, while apparently copious gas flow through casing fractures indicates some pressure release, it is also an indication of significant gas drive pressure, post casing fracture. This paper shows two approaches to the problem of calculating the actual loss of drive. One presents first-order analytical calculations, in cylindrical geometry, of pressure loss to the inside surface of a fractured casing. The second shows the modelling of a selected example in the CTH code. Both approaches reveal that gas escape, while occurring at its own sound-speed relative to the adjacent casing fragments, has to compete with rapid radial expansion of the casing. Together with some historic experiments now publicly available, our calculations indicate that post-fracture casing fragment acceleration is, for most systems, unlikely to be reduced significantly.  相似文献   
35.
《防务技术》2020,16(1):50-68
The interface defeat phenomenon always occurs when a long-rod projectile impacting on the ceramic target with certain velocity, i.e., the projectile is forced to flow radially on the surface of ceramic plates for a period of time without significant penetration. Interface defeat has a direct effect upon the ballistic performance of the armor piercing projectile, which is studied numerically and theoretically at present. Firstly, by modeling the projectiles and ceramic targets with the SPH (Smoothed Particle Hydrodynamics) particles and Lagrange finite elements, the systematic numerical simulations on interface defeat are performed with the commercial finite element program AUTODYN. Three different responses, i.e., complete interface defeat, dwell and direct penetration, are reproduced in different types of ceramic targets (bare, buffered, radially confined and oblique). Furthermore, by adopting the validated numerical algorithms, constitutive models and the corresponding material parameters, the influences of projectile (material, diameter, nose shape), constitutive models of ceramic (JH-1 and JH-2 models), buffer and cover plate (thickness, constraints, material), as well as the prestress acted on the target (radial and hydrostatic) on the interface defeat (transition velocity and dwell time) are systematically investigated. Finally, based on the energy conservation approach and taking the strain rate effect of ceramic material into account, a modified model for predicting the upper limit of transition velocity is proposed and validated. The present work and derived conclusions can provide helpful reference for the design and optimization of both the long-rod projectile and ceramic armor.  相似文献   
36.
制导航空子母炸弹高速抛撒分离数值仿真   总被引:1,自引:0,他引:1  
制导航空子母炸弹在跨音速抛撒子弹药过程中,子弹药与母弹的分离伴随着复杂的流场和激波干扰,该过程中不仅存在着激波与激波的相互碰撞、部分激波的多次反射,而且由于受到多体运动的相互作用,其气流方向也发生变化,形成了变化复杂的压力、速度分布区域。采用数值模拟的方法对制导航空子母炸弹子弹药高速抛撒分离过程进行了数值仿真分析,应用嵌套网格技术,耦合多体动力学方程以及 N-S 方程求解子母炸弹高速分离过程,为工程设计、研究提供理论指导与计算依据。  相似文献   
37.
由于油料具有热膨胀性,在运输和储存期间,如果油罐装油超过安全容量,当温度升高时,罐内油料体积膨胀,就可能导致溢油事故的发生,不仅造成油料数量的损失,甚至会引发火灾事故。正确确定不同油罐的安全容量,对油料的安全具有重要意义。文章阐述了油罐安全容量的概念,分析了安全容量计算不准确可能造成的危害,提出了油罐安全容量的计算方法。  相似文献   
38.
信息融合技术可以大大减轻指挥决策的工作量,增加信息置信度,减少模糊性,改善系统可靠性.针对靶场实时测控数据处理中急待解决的成片野值干扰等难题,在实时环境中采用数据融合处理方法,讨论了外弹道数据融合实时算法所面临的关键技术,并通过分析与论证得出可行性结论.结论对进一步的系统设计与软件实现具有指导意义.  相似文献   
39.
综合消磁过程中工作线圈安匝数的估算方法   总被引:1,自引:1,他引:0  
提出应以满足船壳退磁要求来确定交变磁场的最大振幅,研究了船壳内的磁场与外加磁场的关系,给出了工作线圈总安匝数的计算公式,讨论了如何分配“安”与“匝”等问题.  相似文献   
40.
反舰导弹纯方位发射捕捉概率计算方法   总被引:8,自引:0,他引:8  
反舰导弹的纯方位发射对目标信息要求不高,在目标信息的探测越来越艰难的今天,是反舰导弹较为重要的一种发射方式,也将会成为未来海战场上常用的作战方式.介绍了反舰导弹捕捉概率的计算方法和传统纯方位发射的捕捉概率的计算方法,并从分析反舰导弹捕捉概率的计算模型和影响因素出发,指出传统的反舰导弹纯方位发射的捕捉概率计算模型存在不足,并给出了修正后的计算模型.  相似文献   
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