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91.
自蔓延高温合成技术的研究动态   总被引:3,自引:0,他引:3  
对自蔓延高温合成技术(SHS)的最新研究动态进行了介绍,指出SHS技术作为一种制备和合成材料的新技术,以其高效、节能、经济、材料性能优良等优点,现已成为制备新材料的崭新途径,并提出自蔓延高温合成技术今后的研究方向。  相似文献   
92.
根据未来高技术战争和信息技术的发展趋势,提出了建设"E体化"军事物流的宏观战略构想,论述了"E体化"军事物流的理论内涵和现实意义,明确提出了"E体化"军事物流的战略目标以及目标实现的关键基础体系.  相似文献   
93.
战场抢修器材最优筹措   总被引:2,自引:0,他引:2  
建立了一个根据携带抢修器材的能力限制,综合分配参战部队应准备的各种抢修器材使平均战场抢修时闻最短的最优化模型,为制定战时抢修器材筹措计划、抢修人员的培训计划提供依据。该模型的结果也可为评价装备的战斗恢复力提供参考依据。  相似文献   
94.
层向理论是由Reddy提出来的一种用于精确分析复合材料层合结构的三维板壳分析理论。由于不引入任何的变形和应力假设条件,因此相较于传统的等效单层板理论,层向理论在分析大厚度复合材料层合板壳结构的静动态响应及其局部层间效应时具有较大的优势。系统地综述了层向理论近年来的研究进展、数值解法及其应用情况。具体包括:层向理论的基本原理及发展现状、基于层向理论的有限元方法及改进模型、层向理论在复合材料层合结构静动态响应及含损伤问题领域的应用等。并对该理论可进一步拓展的研究方向进行了展望。  相似文献   
95.
In this study, Al-CuO nanocomposites were fabricated by sol-gel method. As a contrast, the thermite was prepared by physical mixing at the equivalence ratio of 0.5, 1, 2, respectively. The intermediates and samples as prepared were characterized by SEM and XRD. The exothermic properties of the two samples prepared at different equivalence ratios were tested and the reaction products were characterized by XRD. The SEM results show that the sample prepared by the sol-gel method demonstrates a micron-sized agglomerated sphere formed by a mutual wrapping of Al NPs and CuO NPs, and the particles are evenly distributed in the agglomerate. In addition, when the content of Al powder is seriously insufficient, the heat release of the sample prepared by physical mixing is 1.6 times that of by sol-gel method. With the increase of Al powder content, the exothermic properties of Al/CuO NPs prepared by sol-gel method began to increase significantly compared with physical mixing and the difference is 1.5 times when the equivalence ratio increases to 2. It can be concluded that the reason for this result may be attributed to the different mass transfer modes of components due to the different morphologies of samples.  相似文献   
96.
针对目前比较成熟的耐1 200℃陶瓷瓦开展了1 200℃多次重复热处理,研究了陶瓷瓦的结构和性能演变行为和重复使用性能。结果表明:1 200℃热处理20次后,耐1 200℃陶瓷瓦表现出良好的宏观热稳定性;重复热处理过程中,纤维间烧结,黏接熔融和石英纤维析晶及晶粒长大,使纤维直径发生变化,出现缩颈,进而导致了Z向收缩,收缩率达14%,从而使得压缩强度略有增大,隔热性能降低;经过1 260℃、11次单面辐射加热后,Z向收缩率为5.58%,隔热效果降低了7.59%,但隔热材料能够在6次重复加热后保持材料隔热性能不降低。  相似文献   
97.
《防务技术》2020,16(5):1073-1087
Because of the uncertainty and subjectivity of decision makers in the complex decision-making environment, the evaluation information of alternatives given by decision makers is often fuzzy and uncertain. As a generalization of intuitionistic fuzzy set (IFSs) and Pythagoras fuzzy set (PFSs), q-rung orthopair fuzzy set (q-ROFS) is more suitable for expressing fuzzy and uncertain information. But, in actual multiple attribute decision making (MADM) problems, the weights of DMs and attributes are always completely unknown or partly known, to date, the maximizing deviation method is a good tool to deal with such issues. Thus, combine the q-ROFS and conventional maximizing deviation method, we will study the maximizing deviation method under q-ROFSs and q-RIVOFSs in this paper. Firstly, we briefly introduce the basic concept of q-rung orthopair fuzzy sets (q-ROFSs) and q-rung interval-valued orthopair fuzzy sets (q-RIVOFSs). Then, combine the maximizing deviation method with q-rung orthopair fuzzy information, we establish two new decision making models. On this basis, the proposed models are applied to MADM problems with q-rung orthopair fuzzy information. Compared with existing methods, the effectiveness and superiority of the new model are analyzed. This method can effectively solve the MADM problem whose decision information is represented by q-rung orthopair fuzzy numbers (q-ROFNs) and whose attributes are incomplete.  相似文献   
98.
建立了压电界面电极的力学模型,利用有限傅里叶变换方法将相应的力电耦合问题描述为奇异积分方程,并得到了界面应力及其强度因子的解析解。讨论了结构几何参数对应力强度因子的影响。基于强度设计的观点得到两方面的结论:一是界面中心电极优于偏置电极;二是界面长度的最优值为中心电极长度的2倍。  相似文献   
99.
B4C/Al复合板中应力波行为分析(Ⅰ)   总被引:1,自引:1,他引:0  
依据7.62mm穿甲燃烧弹与B4C,Al板的物理和力学特性,提出弹、板的力学模型;在此基础上,给出弹板碰撞后B4C/Al复合板的弹性动力学方程,建立应力波的传播模型,讨论了应力波传播时复合板的力学行为,最后确定了复合板承受的初始冲击应力。理论分析表明:一维应变条件的B4C和Al板的弹性极限高于一维应力条件下的值;弹、板间的作用力服从指数衰减规律;B4C板的初始应力高于430MPa时,应力波的作用使Al板在卸载过程中发生反向屈服。  相似文献   
100.
The claim that reactor-grade plutonium cannot or will not be used to produce nuclear weapons has been used to justify non-nuclear-weapon states’ large stockpiles of plutonium that has been separated from highly radioactive spent fuel. However, by using reduced-mass plutonium cores, it is possible to manufacture reliable nuclear weapons with reactor-grade plutonium. These weapons can have the same design, size, weight, and predetonation probability as weapons using weapon-grade plutonium and would require no special cooling. The increased radiation from reactor-grade plutonium could be easily managed by shielding and operational procedures. Weapons using plutonium routinely produced by pressurized-water reactors could have a lethal area between 40 percent and 75 percent that of weapons using weapon-grade plutonium. In the past, both Sweden and Pakistan considered using reactor-grade plutonium to produce nuclear weapons, and India may be using reactor-grade plutonium in its arsenal today. Despite claims to the contrary, the United States used what was truly reactor-grade plutonium in a successful nuclear test in 1962. The capability of reactor-grade plutonium to produce highly destructive nuclear weapons leads to the conclusion that the separation of plutonium, plutonium stockpiling, and the use of plutonium-based fuels must be phased out and banned.  相似文献   
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