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   21758篇
  免费   2775篇
  国内免费   1706篇
电工技术   2212篇
技术理论   3篇
综合类   1865篇
化学工业   2895篇
金属工艺   1513篇
机械仪表   1384篇
建筑科学   1885篇
矿业工程   619篇
能源动力   713篇
轻工业   1658篇
水利工程   464篇
石油天然气   853篇
武器工业   279篇
无线电   2661篇
一般工业技术   2525篇
冶金工业   838篇
原子能技术   233篇
自动化技术   3639篇
  2024年   157篇
  2023年   546篇
  2022年   905篇
  2021年   1337篇
  2020年   948篇
  2019年   710篇
  2018年   783篇
  2017年   872篇
  2016年   763篇
  2015年   1017篇
  2014年   1188篇
  2013年   1519篇
  2012年   1681篇
  2011年   1699篇
  2010年   1513篇
  2009年   1376篇
  2008年   1357篇
  2007年   1328篇
  2006年   1164篇
  2005年   950篇
  2004年   718篇
  2003年   635篇
  2002年   741篇
  2001年   663篇
  2000年   430篇
  1999年   294篇
  1998年   146篇
  1997年   162篇
  1996年   129篇
  1995年   113篇
  1994年   77篇
  1993年   67篇
  1992年   57篇
  1991年   37篇
  1990年   40篇
  1989年   17篇
  1988年   18篇
  1987年   9篇
  1986年   17篇
  1985年   3篇
  1984年   4篇
  1983年   4篇
  1982年   8篇
  1981年   3篇
  1980年   4篇
  1979年   5篇
  1977年   3篇
  1976年   8篇
  1973年   4篇
  1951年   4篇
排序方式: 共有10000条查询结果,搜索用时 15 毫秒
1.
A digital light processing (DLP) technology has been developed for 3D printing lead-free barium titanate (BTO) piezoelectric ceramics. By comparing the curing and rheological properties of slurries with different photosensitive monomer, a high refractive index monomer acryloyl morpholine (ACMO) was chosen, and a design and preparation method of BTO slurry with high solid content, low viscosity and high curing ability was proposed. By further selecting the printing parameters, the single-layer exposure time was reduced and the forming efficiency has been greatly improved. Sintered specimens were obtained after a nitrogen-air double-step debinding and furnace sintering process, and the BTO ceramics fabricated with 80 wt% slurry shows the highest relative density (95.32 %) and piezoelectric constant (168.1 pC/N). Furthermore, complex-structured BTO ceramics were prepared, impregnated by epoxy resin and finally assembly made into hydrophones, which has significance for the future design and manufacture of piezoelectric ceramic-based composites that used in functional devices.  相似文献   
2.
黄科  袁启平  董薇  孙沂昆  亢勇  王天翔 《电视技术》2021,45(10):129-135
恶意代码数量已经呈现爆炸式增长,对于恶意代码的检测防护显得尤为重要.近几年,基于深度学习的恶意代码检测方法开始出现,基于此,提出一种新的检测方法,将恶意代码二进制文件转化为十进制数组,并利用一维卷积神经网络(1 Dimention Convolutional Neural Networks,1D CNN)对数组进行分类和识别.针对代码家族之间数量不平衡的现象,该算法选择在分类预测上表现良好的XGBoost,并对Vision Research Lab中的25个不同恶意软件家族的9458个恶意软件样本进行了实验.实验结果表明,所提的方法分类预测精度达到了97%.  相似文献   
3.
4.
The purpose of the current work was to research the effect of alkali metal oxide on the structure, thermal properties, viscosity and chemical stability in the glass system (R2O–CaO–B2O3–SiO2) systematically. Because the glass would emulsify when Li2O was added to the glass batch, this article did not discuss Li2O. The results showed that when the amount of Na2O was less than 4 mol.%, there was a higher interconnectivity of borate and silicate sub-networks in glass, as more mixed Si–O–B bonds were present in glass. The glass samples exhibited excellent thermal properties and chemical stabilities. As the amount of Na2O exceeded 4 mol.%, the interconnectivity of borate and silicate sub-networks was weakened. The thermal properties and chemical stabilities of the glass samples were reduced. The connectivity of the silicate sub-network was weakened slightly as the Na/K ratio varied, and the coefficient of thermal expansion (CTE) of the glass samples gradually increased, and the resistance to thermal shock (RTS) value gradually decreased. Moreover, the viscosity of the glass samples decreased with the ratio of Na/Si and Na/K increased.  相似文献   
5.
Titanium and boron are simultaneously introduced into LiNi0.8Co0.1Mn0.1O2 to improve the structural stability and electrochemical performance of the material. X-ray diffraction studies reveal that Ti4+ ion replaces Li+ ion and reduces the cation mixing; B3+ ion enters the tetrahedron of the transition metal layers and enlarges the distance of the [LiO6] layers. The co-doped sample has spherical secondary particles with elongated and enlarged primary particles, in which Ti and B elements distribute uniformly. Electrochemical studies reveal the co-doped sample has improved rate performance (183.1 mAh·g-1 at 1 C and 155.5 mAh·g-1 at 10 C) and cycle stability (capacity retention of 94.7% after 100 cycles at 1 C). EIS and CV disclose that Ti and B co-doping reduces charge transfer impedance and suppresses phase change of LiNi0.8Co0.1Mn0.1O2.  相似文献   
6.
7.
Effective thermal management of electronic integrated devices with high powder density has become a serious issue, which requires materials with high thermal conductivity (TC). In order to solve the problem of weak bonding between graphite and Cu, a novel Cu/graphite film/Cu sandwich composite (Cu/GF/Cu composite) with ultrahigh TC was fabricated by electro-deposition. The micro-riveting structure was introduced to enhance the bonding strength between graphite film and deposited Cu layers by preparing a rectangular array of micro-holes on the graphite film before electro-deposition. TC and mechanical properties of the composites with different graphite volume fractions and current densities were investigated. The results showed that the TC enhancement generated by the micro-riveting structure for Cu/GF/Cu composites at low graphite content was more effective than that at high graphite content, and the strong texture orientation of deposited Cu resulted in high TC. Under the optimizing preparing condition, the highest in-plane TC reached 824.3 W·m−1·K−1, while the ultimate tensile strength of this composite was about four times higher than that of the graphite film.  相似文献   
8.
道教洞天福地作为中国名山风景的经典类型之一,在宗教山岳景观中占据独特地位。浙东天台山水神秀,历代高道以入山隐修为主要目的,形成了道教在区域山林的景观文化基础。从天台山“神仙之乡”的文化背景出发,从“想象与实践”的视角切入,梳理了天台山洞天福地的景观流变:分析其“不死之福庭”地域性景观的形成经历了“赤城→桐柏”的信仰转移过程;以天台山为坐标,洞天福地格局打破了区域“层级”分布特征,而呈现大范围“州郡”空间格局。作为“联结点”的天台山,洞天世界沟通了宇宙、山、人3个基本场域,由此衍生出“洞宫”式和“周回”式山岳空间营建典范。旨在挖掘洞天福地中典型案例的价值,为中国洞天福地体系的构建提供理论依据。  相似文献   
9.
10.
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