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   151716篇
  免费   11921篇
  国内免费   5736篇
电工技术   8098篇
技术理论   19篇
综合类   9062篇
化学工业   26332篇
金属工艺   7844篇
机械仪表   8980篇
建筑科学   12220篇
矿业工程   3753篇
能源动力   4320篇
轻工业   9999篇
水利工程   2686篇
石油天然气   8044篇
武器工业   1001篇
无线电   18198篇
一般工业技术   19216篇
冶金工业   7988篇
原子能技术   1493篇
自动化技术   20120篇
  2024年   615篇
  2023年   2393篇
  2022年   4212篇
  2021年   5796篇
  2020年   4442篇
  2019年   3682篇
  2018年   4149篇
  2017年   4502篇
  2016年   4334篇
  2015年   5467篇
  2014年   7194篇
  2013年   8765篇
  2012年   9310篇
  2011年   10008篇
  2010年   8613篇
  2009年   8276篇
  2008年   8011篇
  2007年   7734篇
  2006年   7782篇
  2005年   6882篇
  2004年   4838篇
  2003年   4303篇
  2002年   3863篇
  2001年   3530篇
  2000年   3905篇
  1999年   4495篇
  1998年   4044篇
  1997年   3242篇
  1996年   3077篇
  1995年   2548篇
  1994年   2179篇
  1993年   1551篇
  1992年   1177篇
  1991年   919篇
  1990年   745篇
  1989年   671篇
  1988年   529篇
  1987年   327篇
  1986年   272篇
  1985年   193篇
  1984年   158篇
  1983年   102篇
  1982年   109篇
  1981年   86篇
  1980年   72篇
  1979年   45篇
  1977年   42篇
  1976年   27篇
  1974年   21篇
  1973年   20篇
排序方式: 共有10000条查询结果,搜索用时 32 毫秒
81.
(1-x)Pb(Zn1/3Nb2/3)O3-xPbTiO3 ((1-x)PZN-xPT in short) is one of the most important piezoelectric materials. In this work, we extensively investigated (1-x)PZN-xPT (x = 0.07–0.11) ferroelectric single crystals using in-situ synchrotron μXRD, complemented by TEM and PFM, to correlate microstructures with phase transitions. The results reveal that (i) at 25 °C, the equilibrium state of (1-x)PZN-xPT is a metastable orthorhombic phase for x = 0.07 and 0.08, while it shows coexistence of orthorhombic and tetragonal phases for x = 0.09 and x = 0.11, with all ferroelectric phases accompanied by ferroelastic domains; (ii) upon heating, the phase transformation in x = 0.07 is Orthorhombic  Monoclinic  Tetragonal  Cubic. The coexistence of ferroelectric tetragonal and paraelectric cubic phases was in-situ observed in x = 0.08 above Curie temperature (TC), and (iii) phase transition can be explained by the evolution of the ferroelectric and ferroelastic domains. These results disclose that (1-x)PZN-xPT are in an unstable regime, which is possible factor for its anomalous dielectric response and high piezoelectric coefficient.  相似文献   
82.
The extensive research interests in environmental temperature can be linked to human productivity / performance as well as comfort and health; while the mechanisms of physiological indices responding to temperature variations remain incompletely understood. This study adopted a physiological sensory nerve conduction velocity (SCV) as a temperature‐sensitive biomarker to explore the thermoregulatory mechanisms of human responding to annual temperatures. The measurements of subjects’ SCV (over 600 samples) were conducted in a naturally ventilated environment over all four seasons. The results showed a positive correlation between SCV and annual temperatures and a Boltzmann model was adopted to depict the S‐shaped trend of SCV with operative temperatures from 5°C to 40°C. The SCV increased linearly with operative temperatures from 14.28°C to 20.5°C and responded sensitively for 10.19°C‐24.59°C, while tended to be stable beyond that. The subjects’ thermal sensations were linearly related to SCV, elaborating the relation between human physiological regulations and subjective thermal perception variations. The findings reveal the body SCV regulatory characteristics in different operative temperature intervals, thereby giving a deeper insight into human autonomic thermoregulation and benefiting for built environment designs, meantime minimizing the temperature‐invoked risks to human health and well‐being.  相似文献   
83.
84.
85.
86.
87.
88.
89.
90.
SiCf/PyC/SiC and SiCf/BN/SiC mini-composites comprising single tow SiC fibre-reinforced SiC with chemical vapor deposited PyC or BN interface layers are fabricated. The microstructure evolutions of the mini-composite samples as the oxidation temperature increases (oxidation at 1000, 1200, 1400, and 1600?°C in air for 2?h) are observed by scanning electron microscopy, energy dispersive spectrometry, and X-ray diffraction characterization methods. The damage evolution for each component of the as-fabricated SiCf/SiC composites (SiC fibre, PyC/BN interface, SiC matrix, and mesophase) is mapped as a three-dimensional (3D) image and quantified with X-ray computed tomography. The mechanical performance of the composites is investigated via tensile tests.The results reveal that tensile failure occurs after the delamination and fibre pull-out in the SiCf/PyC/SiC composites due to the volatilization of the PyC interface at high temperatures in the air environment. Meanwhile, the gaps between the fibres and matrix lead to rapid oxidation and crack propagation from the SiC matrix to SiC fibre, resulting in the failure of the SiCf/PyC/SiC composites as the oxidation temperature increases to 1600?°C. On the other hand, the oxidation products of B2O3 molten compounds (reacted from the BN interface) fill up the fracture, cracks, and voids in the SiC matrix, providing excellent strength retention at elevated oxidation temperatures. Moreover, under the protection of B2O3, the SiCf/BN/SiC mini-composites show a nearly intact microstructure of the SiC fibre, a low void growth rate from the matrix to fibre, and inhibition of new void formation and the SiO2 grain growth from room to high temperatures. This work provides guidance for predicting the service life of SiCf/PyC/SiC and SiCf/BN/SiC composite materials, and is fundamental for establishing multiscale damage models on a local scale.  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