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71.
复合材料元件吸能能力的数值模拟 总被引:2,自引:0,他引:2
运用MSC/DYTRAN有限元软件,对碳纤维一环氧树脂“┼”字型、“┬”字型、“┐”字型3种典型复合材料元件的破坏过程、峰值栽荷、平均栽荷和能量吸收能力进行了数值模拟研究。鉴于MSC/DYTRAN有限元软件不能直接用于复合材料的吸能分析,分析时采用了等效的方法。将复合材料结构元件的数值计算结果与准静态轴向压溃试验的结果进行对比,两者较为一致,从而说明运用该有限元软件并采用等效的方法模拟复合材料结构吸能能力的可行性。 相似文献
72.
液体压力激波加工技术研究 总被引:3,自引:1,他引:3
机械产品的零部件,通常需要通过成形与改性才具有所需形状及实用功能,本文提出了一种新型材料成形与改性加工的方法——液体压力激波加工。采用脉冲超声波聚焦技术,通过压电陶瓷激波发生器在液体介质中产生高能瞬时压力激波,对材料进行冲击,产生变形或表面改性。经过理论研究和试验验证,初步掌握了液体压力激波的产生、激波能量的控制和激波加工的动力学机制。这种加工方法具有能量可控性好、成本低廉和安全高效等优点,非常适合具有复杂结构和型面的中小零件加工,是一种颇具竞争力的先进制造技术手段。 相似文献
73.
首先通过相识集、招标集、投标集和中标者的概念,描述了车间调度系统中的调度Agent与资源Agent间任务分配的招投标关系;运用粗集理论,基于任务的属性和资源Agent完全任务的成本、质量、负荷和时间等属性构造决策表;在分析了决策表的特征基础上,生成调度规则集,即调度知识库;最后给出车间调度Agent的调度过程算法。 相似文献
74.
This article studies the efficiency of ejecting waste generated by the life support system (LSS) of a manned spacecraft to reduce initial mass on low earth orbit. The spacecraft is used for a long-duration interplanetary mission and is equipped with either a chemical or a nuclear-thermal propulsion system. For this study we simulate an optimal control problem for a given spacecraft maneuver. An impulsive approximation of the optimal interplanetary spacecraft trajectory is assumed, which allows us to reduce the general optimal control problem to hierarchic structure of 'outer' and 'inner' subproblems. This structure is analyzed using the Pontryagin's Maximum principle. Numerical results, illustrating the efficiency of waste ejection are shown for typical Earth-Mars transfer trajectories. This results confirm in theory that using a waste ejection system makes an early manned Mars mission possible without having to design and build new, advanced biological LSS. 相似文献
75.
从汉译英的赘冗和疏漏问题看汉英语法特征之差异——汉语语法的柔性之于英语语法的刚性 总被引:1,自引:0,他引:1
本文从汉译英的翻译实践出发,从英语译文的错误以及汉英译文对比中,去发现并分析汉语和英语语法特征的差异。论述了英语语法的刚性、显性和汉语语法的柔性、隐性,并从语言对思维的影响的角度,探讨了汉语语言文化的深邃独特和英语语言的缜密精确。 相似文献
76.
77.
In 1994–1995 Lavochkin Association (Russia) together with the other enterprises in accordance with technical requirements of the Russian Space agency, developed a new Russian communication satellite of a small class that will operate in both the geostationary (GSO) and high-elliptical (HEO) orbits. This satellite may be injected into operational orbits using a SOYUZ-2 launch vehicle (LV) and a FREGAT upper stage (US) from Plesetsk and Baykonur space launch sites (SLS).The main reason for creating such a satellite was to decrease the cost of the support and development of the Russian communication geostationary satellites group.Russian satellites Horizont, Express, Ekran and Gals, which operate in GSO, are the basis of the space segment for communications, radio and TV broadcasting. All of these satellites are injected into GSO by the PROTON LV. PROTON is a launch vehicle of a heavy class. The use of a middle class LV instead of a heavy class will allow to reduce considerably the launch cost. The change of a heavy class LV to a LV of middle class determined one economic reason for this project. Besides, the opportunity to launch S/C into GSO from Russian Plesetsk SLS increases the independence of Russia in the domain of space communications, despite the presence of the contract with Kazachstan about the rent of Baykonur SLS. Finally, use of small satellites with a rather small number of transponders is more effective than the use of big satellites. It will allow also to increase a satellite group (by the launch of additional satellites) precisely in accordance to the development of the ground segment. 相似文献
78.
较详细地对复合材料壳体与喷管卡环连接结构进行了有限元应力,应变分析,对卡环,接头及倒锥等多体接触问题进行研究;对“I”型及“L”型卡环结构分别进行了计算和比较,并给出计算结果及结果分析。 相似文献
79.
80.
In 1994-1995 Lavochkin Association (Russia) together with the other enterprises in accordance with technical requirements of the Russian Space agency, developed a new Russian communication satellite of a small class that will operate in both the geostationary (GSO) and high-elliptical (HEO) orbits. This satellite may be injected into operational orbits using a SOYUZ-2 launch vehicle (LV) and a FREGAT upper stage (US) from Plesetsk and Baykonur space launch sites (SLS).The main reason for creating such a satellite was to decrease the cost of the support and development of the Russian communication geostationary satellites group.Russian satellites Horizont, Express, Ekran and Gals, which operate in GSO, are the basis of the space segment for communications, radio and TV broadcasting. All of these satellites are injected into GSO by the PROTON LV. PROTON is a launch vehicle of a heavy class. The use of a middle class LV instead of a heavy class will allow to reduce considerably the launch cost. The change of a heavy class LV to a LV of middle class determined one economic reason for this project. Besides, the opportunity to launch S/C into GSO from Russian Plesetsk SLS increases the independence of Russia in the domain of space communications, despite the presence of the contract with Kazachstan about the rent of Baykonur SLS. Finally, use of small satellites with a rather small number of transponders is more effective than the use of big satellites. It will allow also to increase a satellite group (by the launch of additional satellites) precisely in accordance to the development of the ground segment. 相似文献