首页 | 本学科首页   官方微博 | 高级检索  
文章检索
  按 检索   检索词:      
出版年份:   被引次数:   他引次数: 提示:输入*表示无穷大
  收费全文   318篇
  免费   80篇
  国内免费   82篇
航空   303篇
航天技术   82篇
综合类   35篇
航天   60篇
  2024年   3篇
  2023年   13篇
  2022年   21篇
  2021年   29篇
  2020年   26篇
  2019年   22篇
  2018年   19篇
  2017年   18篇
  2016年   28篇
  2015年   16篇
  2014年   31篇
  2013年   24篇
  2012年   19篇
  2011年   22篇
  2010年   16篇
  2009年   18篇
  2008年   20篇
  2007年   27篇
  2006年   13篇
  2005年   13篇
  2004年   12篇
  2003年   10篇
  2002年   9篇
  2001年   7篇
  2000年   5篇
  1999年   7篇
  1998年   10篇
  1997年   2篇
  1996年   1篇
  1995年   4篇
  1993年   6篇
  1990年   2篇
  1988年   2篇
  1987年   1篇
  1984年   4篇
排序方式: 共有480条查询结果,搜索用时 15 毫秒
41.
无人机要替代有人驾驶飞机 ,在不确定性环境中执行各类任务 ,必然面临着自主控制的巨大挑战。先进飞行控制和导航技术作为最主要的支撑技术 ,目前只能适应相对结构化任务环境的要求 ,而要解决动态、不确定环境下的自主飞行控制问题尚有很大的差距。当前 ,由自动飞行到自主飞行 ,已发展到了一个大的转折点。本文将从人与机器的关系和人 -机分工及演进的角度阐述作者对这些问题的现状、发展和面临的挑战所进行的系统分析。  相似文献   
42.
分析了数控展成电解加工成形规律研究的必要性,对展成电解加工进给运动进行分析简化,提出一种在工程中实用的加工间隙计算方法,并对实际求解结果和试验结果进行比较验证,用此研究结果指导数控编程,取得了良好的应用效果  相似文献   
43.
数控展成电解加工的阴极结构及流场研究   总被引:1,自引:0,他引:1  
介绍了应用数控展成电解在整体叶轮毛坯上开槽时的流场特点,讨论了阴极结构对加工间隙内流场的影响规律,并相应对阴极的结构设计提出了一些建议。  相似文献   
44.
Creep age forming(CAF) is an advanced forming technology that combines creep deformation and age hardening processes. When compared with the conventional forming technologies including roll bending and shot-peen forming, CAF has many advantages of low residual stress,excellent dimensional stability, good service performance and short production cycle. It is an optimal technique for precise manufacturing for shape and properties of large-scale complicated thinwalled components of light-weight and...  相似文献   
45.
DD3 单晶粘塑性损伤本构模型研究   总被引:2,自引:0,他引:2  
介绍了建立DD3单晶高温合金本构模型的理论和过程,详细推导了DD3单晶损伤演化方程,简要分析了模型的组成和特点。简单讨论了模型材料常数的标定方法,具体标定了950℃下的模型材料常数。给出了模型的预测结果和试验结果的对比曲线,从中看出,该模型能够较准确地描述DD3单晶的力学行为特点,可望用于单晶叶片的结构分析。  相似文献   
46.
本文根据物质系统演化的规律,平衡原理及熵理论,阐述了死亡是生命系统演化的必然归宿。  相似文献   
47.
Because the solar radiation and particle environment plays a major role in all atmospheric processes such as ionization, dissociation, heating of the upper atmospheres, and thermal and non-thermal atmospheric loss processes, the long-time evolution of planetary atmospheres and their water inventories can only be understood within the context of the evolving Sun. We compare the effect of solar induced X-ray and EUV (XUV) heating on the upper atmospheres of Earth, Venus and Mars since the time when the Sun arrived at the Zero-Age-Main-Sequence (ZAMS) about 4.6 Gyr ago. We apply a diffusive-gravitational equilibrium and thermal balance model for studying heating of the early thermospheres by photodissociation and ionization processes, due to exothermic chemical reactions and cooling by IR-radiating molecules like CO2, NO, OH, etc. Our model simulations result in extended thermospheres for early Earth, Venus and Mars. The exospheric temperatures obtained for all the three planets during this time period lead to diffusion-limited hydrodynamic escape of atomic hydrogen and high Jeans’ escape rates for heavier species like H2, He, C, N, O, etc. The duration of this blow-off phase for atomic hydrogen depends essentially on the mixing ratios of CO2, N2 and H2O in the atmospheres and could last from ∼100 to several hundred million years. Furthermore, we study the efficiency of various non-thermal atmospheric loss processes on Venus and Mars and investigate the possible protecting effect of the early martian magnetosphere against solar wind induced ion pick up erosion. We find that the early martian magnetic field could decrease the ion-related non-thermal escape rates by a great amount. It is possible that non-magnetized early Mars could have lost its whole atmosphere due to the combined effect of its extended upper atmosphere and a dense solar wind plasma flow of the young Sun during about 200 Myr after the Sun arrived at the ZAMS. Depending on the solar wind parameters, our model simulations for early Venus show that ion pick up by strong solar wind from a non-magnetized planet could erode up to an equivalent amount of ∼250 bar of O+ ions during the first several hundred million years. This accumulated loss corresponds to an equivalent mass of ∼1 terrestrial ocean (TO (1 TO ∼1.39×1024 g or expressed as partial pressure, about 265 bar, which corresponds to ∼2900 m average depth)). Finally, we discuss and compare our findings with the results of preceding studies.  相似文献   
48.
The dynamical and chemical effects of the Galactic Wind are discussed. This wind is primarily driven by the pressure gradient of the Cosmic Rays. Assuming the latter to be accelerated in the Supernova Remnants of the disk which at the same time produce the Hot Interstellar Medium, it is argued that the gas removed by the wind is enriched in the nucleosynthesis products of Supernova explosions. Therefore the moderate mass loss through this wind should still be able to remove a substantial amount of metals, opening the way for stars to produce more metals than observed in the disk, by e.g. assuming a Salpeter-type stellar initial mass function beyond a few Solar masses. The wind also allows a global, physically appealing interpretation of Cosmic Ray propagation and escape from the Galaxy. In addition the spiral structure of the disk induces periodic pressure waves in the expanding wind that become a sawtooth shock wave train at large distances which can re-accelerate “knee” particles coming from the disk sources. This new Galactic Cosmic Ray component can reach energies of a few×1018 eV and may contribute to the juncture between the particles of Galactic and extragalactic origin in the observed overall Cosmic Ray spectrum.  相似文献   
49.
整体叶轮数控展成电解加工的计算机辅助编程   总被引:1,自引:0,他引:1  
分析了整体叶轮数控展成电解加工的数据处理及编程参数计算方法,用C++语言实现计算机辅助数控编程。  相似文献   
50.
为了研究高应变率载荷对于碳纤维增强树脂基复合材料变形破坏行为的影响,通过应变率修正式对复合材料的刚度与强度进行修正,建立了可考虑应变率效应的复合材料损伤数值模型,采用该模型对不同应变率条件下层板结构的面内破坏行为进行了模拟并与文献实验进行了对比分析。计算结果表明:本文所构建的数值模型可以有效预测树脂基层板结构在不同应变率条件下的破坏特征,并在材料刚度与强度硬化现象的预测方面有着较高精度;对于0°、90°铺层主导的试件,由于其力学性能近似为线性,数值模型在强度预测方面获得了较高精度;而对于±45°铺层主导试件,其在不同应变率条件下表现出较强的非线性损伤特性,因此模型在其强度性能预测方面存在一定误差。  相似文献   
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号