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   70256篇
  免费   8041篇
  国内免费   4498篇
电工技术   6618篇
技术理论   6篇
综合类   5338篇
化学工业   8952篇
金属工艺   7054篇
机械仪表   4672篇
建筑科学   6497篇
矿业工程   3781篇
能源动力   1503篇
轻工业   6423篇
水利工程   1881篇
石油天然气   4480篇
武器工业   954篇
无线电   7308篇
一般工业技术   6619篇
冶金工业   5419篇
原子能技术   865篇
自动化技术   4425篇
  2024年   359篇
  2023年   1005篇
  2022年   1961篇
  2021年   2441篇
  2020年   2673篇
  2019年   2246篇
  2018年   2171篇
  2017年   2607篇
  2016年   2901篇
  2015年   2938篇
  2014年   4576篇
  2013年   3920篇
  2012年   5322篇
  2011年   5304篇
  2010年   3769篇
  2009年   3894篇
  2008年   3556篇
  2007年   4690篇
  2006年   4243篇
  2005年   3622篇
  2004年   2998篇
  2003年   2763篇
  2002年   2384篇
  2001年   2141篇
  2000年   1806篇
  1999年   1460篇
  1998年   1033篇
  1997年   787篇
  1996年   706篇
  1995年   541篇
  1994年   444篇
  1993年   307篇
  1992年   254篇
  1991年   206篇
  1990年   160篇
  1989年   132篇
  1988年   99篇
  1987年   69篇
  1986年   47篇
  1985年   50篇
  1984年   32篇
  1983年   14篇
  1982年   22篇
  1981年   24篇
  1980年   27篇
  1975年   6篇
  1964年   10篇
  1963年   6篇
  1959年   13篇
  1956年   6篇
排序方式: 共有10000条查询结果,搜索用时 15 毫秒
81.
The oxidation behavior of pure titanium has been investigated in the temperature range of 1000 K to 1300 K in CO2 or Ar-10%CO2. Optical microscopy, electron probe microanalyses, and X-ray measurements on the oxide scales formed during oxidation indicate that their structures are nearly independent of temperature and the corrosion atmosphere. The scales consisted of two layers, an external one and an internal one, having a rutile (TiO2) structure. The parabolic rate law was confirmed for growth of the external scale and the permeation depth of oxygen in titanium with apparent activation energies of 266 and 226 kJ/mol, respectively. The rate-determining diffusion species in the oxidation processes are discussed.  相似文献   
82.
眭本才 《钢管》1995,(4):20-22
介绍了用LD型冷轧管机生产高精度冷轧不锈钢管的经验和质量保证措施。  相似文献   
83.
对20G高压锅炉管产生裂纹的原因进行了分析,结果表明是冷拔工艺不当所致。  相似文献   
84.
The effects of thickness and types of gold plating on the resistance to high temperature discoloration of gold plating on cavity surface of ceramic package were investigated. It was found that the thicker gold plating, the less discoloration degree for ceramic packages. Non-cyanide gold plating performed better resistance to high-temperature aging than cyanide gold plating. The relationship between the gold plating thickness and the amount of diffused Ni to the gold plating of ceramic packages with Au/Ni and Au/Ni-Co platings after heating at 420℃for 15 min was also studied. When the gold plating thickness reach 2.0 μm and 1.6 μm for Au/Ni and Au/Ni-Co plating systems, respectively, no discoloration was observed on the gold plating surface of cavity, and the corresponding diffused Ni amounts (mass fraction) are 1.0% and 0.4%, while the diffused Co to the gold plating is 0.04%.  相似文献   
85.
Titanium carbide nano-fiber was synthesized by self-propagating high temperature synthesis (SHS) method. The final products after the SHS reaction were titanium carbide containing excess carbon and metallic titanium, which were removed by additional leaching process. TEM observation revealed that the average diameter is about 20 nm. Neutron diffraction analysis was carried out to study non-stoichiometric number of the titanium carbide. The non-stoichiometric numbers of the titanium carbide were 0.89–0.94. The Rietveld refinement of each patterns converged to good agreement (÷2=0.49–1.34). The formation mechanism of the carbide is related to a liquid-solid reaction including the preferential diffusion process of carbon atom into liquid titanium. This article is based on a presentation made in the 2002 Korea-US symposium on the “Phase Transformations of Nano-Materials,” organized as a special program of the 2002 Annual Meeting of the Korean Institute of Metals and Materials, held at Yonsei University, Seoul, Korea on October 25–26, 2002.  相似文献   
86.
1 INTRODUCTIONTheoxidationofunalloyedcopperandnickelhasalreadybeenstudiedindetail.Whilethehigh tem peratureoxidationofCu Nialloys ,alsostudiedanumberoftimestodate[13] ,isanexampleofarela tivelysimpleclassofscalingofbinaryalloysbyasin gleoxidant,becausethemetalsformacontinuousse riesofsolidsolutions ,whiletheiroxides ,CuO ,Cu2 OandNiO ,exhibitsmallmutualsolubilitiesandshowsignificantdifferencesinthethermodynamicstabilityandparabolicgrowthrates .Thus ,copper richalloysformexternalscales…  相似文献   
87.
彭涛  倪锋  魏世忠  龙锐  张新庄  邵抗振 《铸造技术》2005,26(10):954-956
针对碳化钒的不同形态,设计出定量分析软件,并利用形状因子K,实现了高钒高速钢不同碳化物形态数值化处理,当K介于0.785~1.000之间碳化钒形态为团球状;K≤0.223,碳化钒呈开花状.高钒高速钢当碳含量达到4.2%时,K为0.86和当量直径D为0.78μm,碳化物呈团球状均匀分布.  相似文献   
88.
对调质状态800MPa低合金高强度钢及其焊接接头进行了系列温度的断裂韧性测试,讨论不同焊接方法对焊接接头断裂韧性的影响。发现板材的轧制方向对断裂韧性影响显著,LT方向试件的断裂韧性远超过TL方向试件的断裂韧性。在-60℃以上,母材处于上平台延性断裂范畴。在-80℃,裂纹扩展过程中有延脆断裂模式的转变。焊条电弧焊焊缝的断裂韧性与气体保护焊焊缝的断裂韧性相当。尽管常温下焊缝金属的断裂韧性甚至优于母材,但随着试验温度的降低,焊缝金属的断裂韧性迅速下降。在-20℃已发生断裂模式转变,这在结构服役时要引起重视。本研究为大型工程机械的断裂安全评定奠定了基础。  相似文献   
89.
Different batches of natural graphite powders and electrographite powders were characterized by impurity, degree of graphitization, particle size distribution, specific surface area, and shape characteristics. The graphite balls consist of proper mix-ratio of natural graphite, electrographite and phenolic resin were manufactured and characterized by thermal conductivity, anisotropy of thermal expansion, crush strength, and drop strength. Results show that some types of graphite powders possess very high purity, degree of graphitization, and sound size distribution and apparent density, which can serve for matrix graphite of HTR-PM. The graphite balls manufactured with reasonable mix-ratio of graphite powders and process method show very good properties. It is indicated that the properties of graphite balls can meet the design criterion of HTR-PM. We can provide a powerful candidate material for the future manufacture of HTR-PM fuel elements.  相似文献   
90.
21世纪是一个信息化的知识经济时代,以计算机为代表的现代信息技术的开发利用,使图书馆发生了巨大的变革。青年馆员作为图书馆行业的新生力量,为图书馆带来了生机与活力。作为满足读者需求的重要保证,新时代的图书馆员既要拥有熟练应用图书馆相关信息技术的能力,还要拥有复合型知识结构。  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