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   56658篇
  免费   6877篇
  国内免费   4876篇
电工技术   7318篇
综合类   6003篇
化学工业   7271篇
金属工艺   1945篇
机械仪表   2428篇
建筑科学   5563篇
矿业工程   2459篇
能源动力   1860篇
轻工业   5609篇
水利工程   2772篇
石油天然气   1971篇
武器工业   517篇
无线电   3015篇
一般工业技术   4515篇
冶金工业   1552篇
原子能技术   322篇
自动化技术   13291篇
  2024年   321篇
  2023年   1014篇
  2022年   1448篇
  2021年   1811篇
  2020年   2082篇
  2019年   1993篇
  2018年   1870篇
  2017年   2020篇
  2016年   2259篇
  2015年   2404篇
  2014年   3341篇
  2013年   3611篇
  2012年   3949篇
  2011年   4316篇
  2010年   3254篇
  2009年   3606篇
  2008年   3418篇
  2007年   3912篇
  2006年   3460篇
  2005年   2972篇
  2004年   2488篇
  2003年   2060篇
  2002年   1641篇
  2001年   1398篇
  2000年   1257篇
  1999年   1146篇
  1998年   878篇
  1997年   775篇
  1996年   688篇
  1995年   581篇
  1994年   495篇
  1993年   386篇
  1992年   376篇
  1991年   255篇
  1990年   180篇
  1989年   156篇
  1988年   114篇
  1987年   78篇
  1986年   53篇
  1985年   38篇
  1984年   54篇
  1983年   48篇
  1982年   41篇
  1981年   17篇
  1980年   23篇
  1979年   23篇
  1978年   12篇
  1977年   10篇
  1961年   9篇
  1951年   10篇
排序方式: 共有10000条查询结果,搜索用时 15 毫秒
11.
协同作战能力简析   总被引:2,自引:0,他引:2  
协同作战能力(CEC)是一种充分利用网络技术的新型海岸防空技术,给系统的作战能力带来了革命性的交破。本文对协同作战能力的产生、功能、组成以及未来的发展趋势作了详细的介绍,阐述了CEC系统的总体设计思想。在此基础上,将CEC系统与传统的作战系统的性能和设计思想在各方面进行了比较,交出了CEC系统各方面的优越性能。协同作战能力是现代和未来作战系统的发展方向,CEC系统的发展必将成为衡量各国国防科技现代化的重要指标。  相似文献   
12.
吐哈油田部分区块地层压力系数小于0.9,常规水基压井液对储层伤害大,若使用油基压井液成本高,环境污染严重。通过实验优选出了一种低密度水基微泡沫压井液。该压井液具有密度低、泡沫强度高、稳定性好、携砂能力强等优点。现场应用表明,低密度微泡沫压井液稳定时间大于48 h,密度在0.70~0.99 g/cm3之间可调,抗油污染能力强,抗油大于8%,抗温在100℃以上,岩心污染后渗透率恢复值大于80%;并且施工方便,成本低,具有储层保护能力,使用微泡沫压井液的井表皮系数在0.20~2.34之间。  相似文献   
13.
方文鹏  郭必新  潘庆军  窦有水 《电焊机》2002,32(1):34-35,46
从一起NSA-500-1型氩弧焊机故障,分析其高压脉冲旁路二极管VD9不同接法对引弧、稳弧及设备安全的影响。  相似文献   
14.
可拓检测的方案生成   总被引:5,自引:0,他引:5  
以可拓学理论为基础,论述了可拓检测的有关定义和概念,提出了可拓检测的方案生成方法及过程,同时探讨了检测方法的优化和评价方法。  相似文献   
15.
Repeated batch operation using two fermentors (RBTF) to penicillin fermentation was demonstrated by computer simulation to improve productivity. Three operation modes were compared: chemostat, repeated batch operation using a single fermentor (RBSF) and RBTF; in each case account was made of the lag period before growth. The simulated fermentor performances were assessed on the basis of the penicillin productivity and concentration; the simulation was based on published batch fermentation data. It was shown that RBTF was superior to RBSF and chemostat. The advantage of RBTF increased as the lag period became greater.  相似文献   
16.
砂基中泥浆盾构法隧道施工开挖面稳定性试验研究   总被引:18,自引:0,他引:18  
 通过模型试验,对泥浆盾构施工中泥浆维持开挖面稳定的力学机理,开挖面前缘土体的应力变化规律,泥浆压力作用机理及泥皮形态进行了研究,提出了中粗砂地基中临界泥浆压力 公式。  相似文献   
17.
针对单轴传动滚切式双边剪生产过程中出现的薄钢板经双边剪剪后出现“错牙”及“飞边”的问题,从多个方面入手对薄钢板出现“错牙”及“飞边”的原因进行了分析对比,提出了相应的解决方案,对今后滚切式双边剪的设计、制造及安装调试有借鉴和参考价值。  相似文献   
18.
The miscibility and phase behavior of ternary blends containing dimethylpolycarbonate (DMPC), tetramethylpolycarbonate (TMPC) and poly[styrene‐co‐(methyl methacrylate)] copolymer (SMMA) have been explored. Ternary blends containing polystyrene (PS) instead of SMMA were also examined. Blends of DMPC with SMMA copolymers (or PS) did not form miscible blends regardless of methyl methacrylate (MMA) content in copolymers. However, DMPC blends with SMMA (or PS) blends become miscible by adding TMPC. The miscible region of ternary blends is compared with the previously determined miscibility region of binary blends having the same chemical components and compositions. The region where the ternary blends are miscible is much narrower than that of binary blends. Based on lattice fluid theory, the observed phase behavior of ternary blends was analyzed. Even though the term representing the Gibbs free energy change of mixing for certain ternary blends had a negative value, blends were immiscible. It was revealed that a negative value of the Gibbs free energy change of mixing was not a sufficient condition for miscible ternary blends because of the asymmetry in the binary interactions involved in ternary blends. Copyright © 2004 Society of Chemical Industry  相似文献   
19.
A series of new alternating aromatic poly(ester‐imide)s were prepared by the polycondensation of the preformed imide ring‐containing diacids, 2,2′‐bis(4‐trimellitimidophenoxy)biphenyl (2a) and 2,2′‐bis(4‐trimellitimidophenoxy)‐1,1′‐binaphthyl (2b) with various aromatic dihydroxy compounds in the presence of pyridine and lithium chloride. A model compound (3) was also prepared by the reaction of 2b with phenol, its synthesis permitting an optimization of polymerization conditions. Poly(ester‐imides) were fully characterized by FTIR, UV‐vis and NMR spectroscopy. Both biphenylene‐ and binaphthylene‐based poly(ester‐imide)s exhibited excellent solubility in common organic solvents such as tetrahydrofuran, m‐cresol, pyridine and dichloromethane. However, binaphthylene‐based poly(ester‐imide)s were more soluble than those of biphenylene‐based polymers in highly polar organic solvents, including N‐methyl‐2‐pyrrolidone, N,N‐dimethylacetamide, N,N‐dimethylformamide and dimethyl sulfoxide. From differential scanning calorimetry thermograms, the polymers showed glass‐transition temperatures between 261 and 315 °C. Thermal behaviour of the polymers obtained was characterized by thermogravimetric analysis, and the 10 % weight loss temperatures of the poly(ester‐imide)s was in the range 449–491 °C in nitrogen. Furthermore, crystallinity of the polymers was estimated by means of wide‐angle X‐ray diffraction. The resultant poly(ester‐imide)s exhibited nearly an amorphous nature, except poly(ester‐imide)s derived from hydroquinone and 4,4′‐dihydroxybiphenyl. In general, polymers containing binaphthyl units showed higher thermal stability but lower crystallinity than polymers containing biphenyl units. Copyright © 2005 Society of Chemical Industry  相似文献   
20.
A numerical solution of the inverse problem of the gravitational field at a single point is obtained using six field elements for a point, a spherical cap, a differential spherical sector and a vertical segment. In the system of six equations obtained, the unknowns are the mass of the body, the depth of its center, and the second, third, and fourth degree moments. The accuracy of the solution of this system is ten times higher than when using three field elements. __________ Translated from Izmeritel’naya Tekhnika, No. 5, pp. 3–8, May, 2007.  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