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   299947篇
  免费   47250篇
  国内免费   33973篇
电工技术   22521篇
技术理论   141篇
综合类   20897篇
化学工业   40092篇
金属工艺   20140篇
机械仪表   15353篇
建筑科学   19234篇
矿业工程   12293篇
能源动力   14501篇
轻工业   17723篇
水利工程   7583篇
石油天然气   23302篇
武器工业   5872篇
无线电   41911篇
一般工业技术   36688篇
冶金工业   16094篇
原子能技术   8270篇
自动化技术   58555篇
  2024年   613篇
  2023年   6961篇
  2022年   11920篇
  2021年   14260篇
  2020年   14813篇
  2019年   11621篇
  2018年   12137篇
  2017年   13221篇
  2016年   13846篇
  2015年   14363篇
  2014年   22140篇
  2013年   26580篇
  2012年   35620篇
  2011年   32579篇
  2010年   24219篇
  2009年   24175篇
  2008年   15541篇
  2007年   21995篇
  2006年   19894篇
  2005年   9341篇
  2004年   4641篇
  2003年   3833篇
  2002年   3859篇
  2001年   3372篇
  2000年   3413篇
  1999年   2855篇
  1998年   1846篇
  1997年   1755篇
  1996年   1697篇
  1995年   1284篇
  1994年   1017篇
  1993年   1073篇
  1992年   826篇
  1991年   603篇
  1990年   546篇
  1989年   484篇
  1988年   435篇
  1987年   348篇
  1986年   382篇
  1985年   166篇
  1984年   174篇
  1983年   108篇
  1982年   142篇
  1981年   82篇
  1980年   123篇
  1979年   44篇
  1978年   6篇
  1976年   12篇
  1959年   125篇
  1951年   77篇
排序方式: 共有10000条查询结果,搜索用时 15 毫秒
1.
2.
3.
介绍了高分子材料导热性能影响因素研究进展,重点阐释了聚合物基体的结构特性(链结构、分子间相互作用、取向、结晶度等)、导热填料(种类、含量、形态、尺寸等)以及制备方法等对高分子材料导热性能的影响。  相似文献   
4.
建立了层叠流道的三维模型和有限元网格模型,根据流变测试数据,采用Polymat对物料的黏度模型参数进行拟合,并利用Polyflow软件对聚丙烯腈(PAN)凝胶在层叠流道内的三维等温流动过程进行了数值模拟分析。研究发现,当入口流量增大时,层叠流道出口速度的不均匀性增加;沿流动方向流道内压力逐渐降低,并在出口处降低至同一最低值;流道进出口压力差与入口流量大小具有正相关性;在流道的中心截面上剪切速率分布均匀,波动较小。  相似文献   
5.
中国沉积盆地内火山岩分布广泛,松辽、准噶尔及四川等盆地不断取得重大突破与发现,火山岩已成为我国油气勘探的重要领域之一。松辽盆地长岭断陷发育火石岭组和营城组火山岩,是油气增储上产的重要领域,但其勘探成效直接取决于对火山岩圈闭的识别与刻画成果。与碎屑岩圈闭相比,火山岩圈闭成藏条件要求更为苛刻,储层条件、侧向及顶底板封堵条件是控制火山岩圈闭有效性关键要素。在解剖已发现火山岩油气藏基础上,通过攻关研究,提出了火山岩体刻画和火山岩储层的描述是火山岩圈闭识别的重点。以火山岩岩性圈闭为例形成了火山岩岩性圈闭识别描述“五步流程”,并实际应用于龙凤山鼻状构造带。钻后结果表明,火山岩岩性圈闭与钻前认识整体一致,圈闭落实可靠,验证了火山岩岩性圈闭识别描述技术方法的有效性,推进了长岭断陷火山岩的油气勘探,对国内其他盆地火山岩油气勘探具有一定的指导应用价值。   相似文献   
6.
Recently, circularly polarized organic light-emitting diodes (CP-OLEDs) fabricated with thermally activated delayed fluorescence (TADF) emitters are developed rapidly. However, most devices are fabricated by vacuum deposition technology, and developing efficient solution-processed CP-OLEDs, especially nondoped devices, is still a challenge. Herein, a pair of triptycene-based enantiomers, (S,S)-/(R,R)-TpAc-TRZ, are synthesized. The novel chiral triptycene scaffold of enantiomers avoids their intermolecular π–π stacking, which is conducive to their aggregation-induced emission characteristics and high photoluminescence quantum yield of 85% in the solid state. Moreover, the triptycene-based enantiomers exhibit efficient TADF activities with a small singlet-triplet energy gap (ΔEST) of 0.03 eV and delayed fluorescence lifetime of 1.1 µs, as well as intense circularly polarized luminescence with dissymmetry factors (|gPL|) of about 1.9 × 10−3. The solution-processed nondoped CP-OLEDs based on (S,S)-/(R,R)-TpAc-TRZ not only display obvious circularly polarized electroluminescence signals with gEL values of +1.5 × 10−3 and −2.0 × 10−3, respectively, but also achieve high efficiencies with external quantum, current, and power efficiency up to 25.5%, 88.6 cd A−1, and 95.9 lm W−1, respectively.  相似文献   
7.
8.
In the recent advancements in image and video analysis, the detection of salient regions in the image becomes the initial step. This plays a crucial role in deciding the performance of such algorithms. In this work, a Multi-Resolution Feature Extraction (MRFE) technique that makes use of Discrete Wavelet Convolutional Neural Network (DWCNN) for generating features is employed. An Enhanced Feature Extraction (EFE) module extracts additional features from the high level features of the DWCNN, which are used to frame both channel as well as spatial attention models for yielding contextual attention maps. A new hybrid loss function is also proposed, which is a combination of Balanced Cross Entropy (BCE) loss and Edge based Structural Similarity (ESSIM) loss that effectively identifies and segments the salient regions with clear boundaries. The method is tested exhaustively with five different benchmark datasets and is proved superior to the existing state-of-the-art methods with a minimum Mean Absolute error (MAE) of 0.03 and F-measure of 0.956.  相似文献   
9.
Alumina platelets were arranged horizontally in submicron alumina particles by shear force in the flow of slurries during casting. The obtained alumina green bodies with platelets were pressureless-sintered in vacuum, producing ceramics with thoroughly oriented grains and high transmittance. The effects of sintering parameters on the densification, microstructure evolution, and orientation degree of alumina ceramics were investigated and discussed. The results showed that the densification, grain size, orientation degree, and in-line transmittance were increased with increasing sintering temperature. The enhancement of orientation degree was mainly coherent with grain growth. The grain-oriented samples exhibited a much higher in-line transmittance (at 600 nm) of 61 % than that of the grain random sample (29 %). Moreover, the transmission remained a high level in the ultraviolet range (<300 nm).  相似文献   
10.
Plant cell wall polysaccharides (PCWP) are abundantly present in the food of humans and feed of livestock. Mammalians by themselves cannot degrade PCWP but rather depend on microbes resident in the gut intestine for deconstruction. The dominant Bacteroidetes in the gut microbial community are such bacteria with PCWP-degrading ability. The polysaccharide utilization systems (PUL) responsible for PCWP degradation and utilization are a prominent feature of Bacteroidetes. In recent years, there have been tremendous efforts in elucidating how PULs assist Bacteroidetes to assimilate carbon and acquire energy from PCWP. Here, we will review the PUL-mediated plant cell wall polysaccharides utilization in the gut Bacteroidetes focusing on cellulose, xylan, mannan, and pectin utilization and discuss how the mechanisms can be exploited to modulate the gut microbiota.  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