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   291篇
  免费   36篇
  国内免费   108篇
化学   251篇
晶体学   8篇
力学   34篇
综合类   6篇
数学   1篇
物理学   135篇
  2023年   3篇
  2022年   11篇
  2021年   7篇
  2020年   7篇
  2019年   6篇
  2018年   3篇
  2017年   4篇
  2016年   8篇
  2015年   8篇
  2014年   12篇
  2013年   12篇
  2012年   14篇
  2011年   34篇
  2010年   18篇
  2009年   38篇
  2008年   33篇
  2007年   23篇
  2006年   32篇
  2005年   29篇
  2004年   16篇
  2003年   22篇
  2002年   16篇
  2001年   8篇
  2000年   13篇
  1999年   9篇
  1998年   6篇
  1997年   7篇
  1996年   14篇
  1995年   4篇
  1994年   7篇
  1993年   4篇
  1992年   4篇
  1990年   1篇
  1988年   1篇
  1975年   1篇
排序方式: 共有435条查询结果,搜索用时 15 毫秒
51.
稀土添加剂对镍,铜刷镀层质量的影响   总被引:2,自引:0,他引:2  
通过在刷镀镀液中加入稀土添加剂,研究稀土对刷镀层质量的影响。实验结果表明,稀土起到平整、光亮、细化镀层晶粒、减少镀层应力的作用,并增强镀层结合力,提高镀层的耐磨性、耐蚀性。  相似文献   
52.
Metal layers can be deposited from aqueous solutions not only by electric current as in electroplating but also by strong reducing agents. Chemical deposition of nickel on metallic and nonmetallic substrates, together with the long-known silvering of glass, are the most widespread examples. This remarkable reaction has recently found a variety of industrial applications mainly in the preparation of corrosion-resistant, hard, and wear-resistant protective layers, in the metallizing of plastics, and in electronics.  相似文献   
53.
Quantitative analysis of the brightener component bis (sodium-sulfopropyl) disulfide (SPS) in acidic copper plating baths poses a real challenge due to the complex chemical matrix containing large amounts of Cu(II) ion and sulfuric acid together with other organic additives and additive decomposition products. We developed a new ion-pair chromatography method to analyze micro-molar amounts of SPS directly in plating bath samples without the need for sample pre-treatment. Addition of tetra-N-methylammonium cation as ion-pairing agent to a methanol-sulfuric acid-water eluent increases the retention time of the anionic SPS2- on a C18 column sufficiently to separate this compound from Cu(II) ion and additive by-products.  相似文献   
54.
Deposition of TiSiN coatings by arc ion plating process   总被引:2,自引:0,他引:2  
C.T. Guo  D. Lee 《Applied Surface Science》2008,254(10):3130-3136
Titanium silicon nitride (TiSiN) thin films were deposited on tungsten cemented carbide tools by cathode arc ion plating (AIP) process using alloy TiSi targets. The effects of silicon addition and negative substrate bias on the development of the textures of films were studied systematically by varying the bias voltage from −20 to −200 V. The structural features of the films were investigated in detail using X-ray diffraction. The effect of the texture on such mechanical properties as hardness and adhesion of the films was also studied. A maximum hardness of 42 GPa was obtained at a DC substrate bias of −150 V. The characteristics of TiSiN thin films exhibited excellent adhesion of over 150 N. The cutting performance of end-mills and drillers was evaluated by milling and drilling of highly hardened material under high-speed cutting conditions. The results reveal that cutting tools with TiSiN coatings markedly outperformed those with TiN coatings, and the uncoated cutting tools. TiSiN coating increased the cutting lifetime to seven times that of the uncoated one.  相似文献   
55.
ICF靶用泡沫铜的制备与表征   总被引:2,自引:1,他引:1  
 以次磷酸钠为还原剂的化学镀进行导电化处理,研究了ICF靶用泡沫铜的电沉积工艺。采用扫描电子显微境和X射线衍射仪对制备过程中各阶段泡沫铜的微观结构进行了表征。结果表明:经化学镀后可获得晶粒尺寸小、分布均匀的铜沉积层。电沉积后铜沉积层主要由0.55 μm的小颗粒组成,并且出现突出大颗粒的形貌特征。在氢气氛围下,经700 ℃热处理后,铜颗粒进一步长大,沉积层结晶致密。制备的泡沫铜呈3维网络状结构,分布均匀,密度为0.19 g/cm3,孔径分布为400~600 μm,孔隙率达97.9%。  相似文献   
56.
张然  冉鸣 《化学教育》2020,41(15):39-43
电镀实验是电解原理应用的重要案例,通过实验不仅要获得定性的感性认知,还应该获得定量的理性数据。针对电镀铜实验,通过改变铜离子浓度、pH、电解时间、电解电压和电解温度等因素,探究其对镀层厚度、均匀性和致密性等性质的影响,在电解原理的基础上分析其形成机制,从而确定了电镀铜较适宜的操作条件,以此为学生开展电镀实验提供参考案例与研究思路。  相似文献   
57.
《印度化学会志》2023,100(4):100962
In the proposed work, an investigation of shielding effectiveness (SE) for varying compositions of Graphene, Multiwall carbon nanotubes (MWCNT), and Iron nanoparticles coated on Graphite (Fe@Graphite) was conducted in X-band (8.2 GHz–12.4 GHz). All these are mixed in an LDPE matrix. The nanomaterial was subjected to chemical characterization, i.e., Scanning electron microscopy (SEM), X-ray diffraction (XRD), and vibrating sample magnetometry (VSM). The shielding observed is dominantly due to absorption. The lattice structure which facilitates the shielding due to absorption was the hexagonal graphite structure on whose surface iron nanoparticles were embedded and used as the magnetic filler. At the same time, Graphene and MWCNT act as electrically conducting fillers. The Total shielding effectiveness(SET) was maximum for LDPE, MWCNT, Graphene, and Fe@Graphite, in the ratio of 50: 5: 25: 20 by weight %, and is 49 dB at 9.65 GHz for a sample thickness of 3 mm.  相似文献   
58.
铜镀层的外观呈铜红色、柔软、孔隙少,常用作钢铁件多层镀铬的中间层和钢铁件镀锡和镀银的底层,以提高基体金属和表面镀层之间的结合力.  相似文献   
59.
An additive-free Watts type bath containing micron- and nano-SiC particles (1 μm and 20 nm respectively), as well as ultrafine-WC particles (200 nm), was used for the production of pure Ni and nickel matrix composite electrocoatings under both direct and pulse current conditions. Moreover, nickel nanocrystalline deposits were obtained from a Watts type bath containing small amounts of 2-butyne-1,4-diol, in order to investigate the combined advantages of additives and pulse technique on the properties of the deposits. The influence of the variable electrolysis parameters, the particle size and the organic additive concentration on the surface morphology, the structure and properties of the deposits were discussed. It has been proved that the application of pulse electrodeposition affects drastically the structural characteristics and properties of the deposits and under well-defined conditions could lead to the preparation of nanostructured materials with improved mechanical properties. Published in Russian in Elektrokhimiya, 2008, Vol. 44, No. 6, pp. 802–811. The text was submitted by the authors in English.  相似文献   
60.
钢铁表面Ni-Sn-P合金镀层组成及其耐蚀性   总被引:15,自引:0,他引:15  
化学镀;钢铁表面Ni-Sn-P合金镀层组成及其耐蚀性  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