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501.
目前,生物技术已成为科学界公认的重要技术,甚至是主导性技术,生物技术已越来越多地涌入军事领域.文章介绍了生物技术的特点,阐述了生物技术在军事领域的主要应用,对其军事应用前景进行了分析. 相似文献
502.
刘雷 《军队政工理论研究》2011,12(2):35-37
贯彻落实新的<党委工作条例>,应当充分认清形势任务要求,按照新条例提升党委工作的起点和层次;紧紧围绕中心任务,遵循新条例聚焦党委工作的领导效能;着力强化依法办事,依据新条例规范党委工作有效运行,努力推进部队党委工作创新发展. 相似文献
503.
刘祖华 《军队政工理论研究》2011,12(2)
牢牢把握国防和军队建设的主题和主线,充分体现了国防和军队建设又好又快发展的内在要求;对实现国防和军队建设"十二五"目标任务具有决定性意义;必须把握主题和主线,进一步推进国防和军队建设科学发展创新发展. 相似文献
504.
积极运用网络开展思想政治教育 总被引:3,自引:1,他引:2
刘正斌 《军队政工理论研究》2011,12(1)
网络思想政治教育必须以加强基层部队政治教育网络建设、科学设置思想政治教育内容、打造思想交流互动平台、建立网络政治教育工作评价考核体系为着力点,并处理好"趋利"与"避害"、互联网与军队内部网、自我教育与网络教育、硬件建设与软件建设的关系. 相似文献
505.
We consider the single machine parallel batch scheduling problems to minimize makespan and total completion time, respectively, under precedence relations. The complexities of these two problems are reported as open in the literature. In this paper, we settle these open questions by showing that both problems are strongly NP‐hard, even when the precedence relations are chains. When the processing times of jobs are directly agreeable or inversely agreeable with the precedence relations, there is an O(n2) time algorithm to minimize the makespan. © 2004 Wiley Periodicals, Inc. Naval Research Logistics, 2004 相似文献
506.
为了提高声自导鱼雷一次转角射击的发现概率,建立了一次转角射击的解析模型,并将射击参数的优化归结为一个带约束的优化问题。使用了一种改进的粒子群算法解决了上述问题,优化了自导扇面相遇点系数和出管直航距离两个射击参数。实验结果表明,使用优化后的射击参数显著提高了鱼雷的发现概率。 相似文献
507.
隐身涂料的研究及发展现状 总被引:2,自引:0,他引:2
综述了隐身涂料的分类、研究及发展现状,包括可见光隐身涂料,红外隐身涂料,激光隐身涂料、雷迭隐身涂料,声呐隐身涂料和多功能隐身涂料等。 相似文献
508.
In order to study the influences of confining pressure and strain rate on the mechanical properties of the Nitrate Ester Plasticized Polyether (NEPE) propellant, uniaxial tensile tests were conducted using the self-made confining pressure system and material testing machine. The stress-strain responses of the NEPE propellant under different confining pressure conditions and strain rates were obtained and analyzed. The results show that confining pressure and strain rate have a remarkably influence on the mechanical responses of the NEPE propellant. As confining pressure increases (from 0 to 5.4 MPa), the maximum tensile stress and ultimate strain increase gradually. With the coupled effects of confining pressure and strain rate, the value of the maximum tensile stress and ultimate strain at 5.4 MPa and 0.0667 s−1 is 2.03 times and 2.19 times of their values under 0 MPa and 0.00333 s−1, respectively. Afterwards, the influence mechanism of confining pressure on the NEPE propellant was analyzed. Finally, based on the viscoelastic theory and continuous damage theory, a nonlinear constitutive model considering confining pressure and strain rate was developed. The damage was considered to be rate-dependent and pressure-dependent. The constitutive model was validated by comparing experimental data with predictions of the constitutive model. The whole maximum stress errors of the model predictions are lower than 4% and the corresponding strain errors are lower than 7%. The results show that confining pressure can suppress the damage initiation and evolution of the NEPE propellant and the nonlinear constitutive model can describe the mechanical responses of the NEPE propellant under various confining pressure conditions and strain rates. This research can lay a theoretical foundation for analyzing the structural integrity of propellant grain accurately under working pressure loading. 相似文献
509.
Yi-jiang Xue Qing-ming Zhang Dan-yang Liu Ren-rong Long Yang-yu Lu Tian-fei Ren Liang-fei Gong 《防务技术》2021,17(2):375-381,383
Impact flash occurs when objects collide at supersonic speeds and can be used for real-time damage assessment when weapons rely on kinetic energy to destroy targets.However,the mechanism of impact flash remains unclear.A series of impact flash experiments of flat-head long-rod projectiles impacting thin target plates were performed with a two-stage light gas gun.The impact flash spectra for 6061 aluminum at 1.3-3.2 km/s collision speeds were recorded with a high-speed camera,a photoelectric sensor,and a time-resolved spectrometer.The intensity of the impact flash exhibited a pulse charac-teristic with time.The intensity(I)increased with impact velocity(V0)according to I∝Vn0,where n = 4.41 for V0 > 2 km/s.However,for V0 < 2 km/s,n = 2.21,and the intense flash duration is an order of magnitude less than that of higher V0.When V0 > 2 km/s,a continuous spectrum(thermal radiation background)was observed and increased in intensity with V0.However,for V0 < 2 km/s,only atomic line spectra were detected.There was no aluminum spectral lines for V0 < 2 km/s,which indicated that it had not been vaporized.The initial intense flash was emission from excited and ionized ambient gases near the impact surface,and had little relationship with shock temperature rise,indicating a new mechanism of impact flash. 相似文献
510.
Ying Yuan Zhen-yang Liu Suo He Chao Ge Qing-bo Yu Yuan-feng Zheng Hai-fu Wang 《防务技术》2021,17(5):1687-1698
In this paper, the ballistic impact experiments, including impact test chamber and impact double-spaced plates, were conducted to study the reaction behaviors of a novel functionally graded reactive material (FGRM), which was composed of polytetrafluoroethylene/aluminum (PTFE/Al) and PTFE/Al/bismuth trioxide (Bi2O3). The experiments showed that the impact direction of the FGRM had a significant effect on the reaction. With the same impact velocity, when the first impact material was PTFE/Al/Bi2O3, compared with first impact material PTFE/Al, the FGRM induced higher overpressure in the test chamber and larger damaged area of double-spaced plates. The theoretical model, which considered the shock wave generation and propagation, the effect of the shock wave on reaction efficiency, and penetration behaviors, was developed to analyze the reaction behaviors of the FGRM. The model predicted first impact material of the FGRM with a higher shock impedance was conducive to the reaction of reactive materials. The conclusion of this study provides significant information about the design and application of reactive materials. 相似文献