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   12431篇
  免费   955篇
  国内免费   349篇
电工技术   82篇
综合类   1311篇
化学工业   3797篇
金属工艺   165篇
机械仪表   308篇
建筑科学   3753篇
矿业工程   430篇
能源动力   112篇
轻工业   538篇
水利工程   401篇
石油天然气   1072篇
武器工业   1篇
无线电   184篇
一般工业技术   1140篇
冶金工业   185篇
原子能技术   105篇
自动化技术   151篇
  2024年   65篇
  2023年   233篇
  2022年   466篇
  2021年   585篇
  2020年   330篇
  2019年   227篇
  2018年   298篇
  2017年   451篇
  2016年   414篇
  2015年   462篇
  2014年   715篇
  2013年   582篇
  2012年   776篇
  2011年   824篇
  2010年   627篇
  2009年   643篇
  2008年   552篇
  2007年   850篇
  2006年   714篇
  2005年   648篇
  2004年   572篇
  2003年   488篇
  2002年   442篇
  2001年   343篇
  2000年   307篇
  1999年   233篇
  1998年   186篇
  1997年   144篇
  1996年   117篇
  1995年   96篇
  1994年   91篇
  1993年   68篇
  1992年   42篇
  1991年   31篇
  1990年   42篇
  1989年   22篇
  1988年   15篇
  1987年   12篇
  1986年   4篇
  1985年   7篇
  1984年   2篇
  1982年   4篇
  1980年   1篇
  1979年   3篇
  1955年   1篇
排序方式: 共有10000条查询结果,搜索用时 0 毫秒
1.
一种可替代漂珠的低密度材料   总被引:3,自引:0,他引:3  
漂珠低密度水泥浆由于密度低、强度高、体系稳定而在油田低压易漏层及低压油气层长封固段固井作业中获得了广泛的应用。但近年来,由于漂珠的产量越来越少,油田低成本要求急需开发代替漂珠的新型减轻材料,以满足配制低密度水泥浆的需求。开发了BCL-10S低密度混合减轻材料,其物化性能与漂珠相当,用它作减轻剂配制的低密度水泥浆性能与用漂珠作减轻剂配制的低密度水泥浆性能相媲美,并已经在长庆油田获得了应用。  相似文献   
2.
Characterisation of raw materials for Portland cement manufacture by use of the methylene blue adsorption method is discussed. The method is shown to be a simple, convenient ‘rule of thumb’ procedure. It provides a guide to the quantity and type of argillaceous minerals present in a given raw material sample.  相似文献   
3.
1Introduction Reconstructivesurgeryisoneofthehottestre searchedsubjectsthatdealingwithbonedefects.Thetra ditionalmethodisimplantationoffreshautograftbonebe causeofitsnon immunoreactiveproperty.Butautologousbonewasnotabundantinsomecases.Sowefoundbeta trica…  相似文献   
4.
长庆天然气田属于低压、低渗透气田,存在承压能力较低的地层,固井设计要求全井段封固,并且采用双级双凝施工工艺。但由于用于低密度水泥浆中的漂珠生产量降低,价格上升,研究应用替代产品是固井技术发展的方向。在一级领浆中研究应用了粉煤灰水泥浆体系,其性能和固井质量可完全满足固井要求。粉煤灰水泥浆体系价格低和固井质量优良,使其成为漂珠水泥浆体系的替代配方。  相似文献   
5.
偏高岭土的研究现状及展望   总被引:9,自引:0,他引:9  
简要介绍了偏高岭土的反应机理和在国内外的研究现状。同时对偏高岭土的研究进行了展望 ,提出因麦特林水泥原料丰富 ,污染小 ,加工简单 ,性能优越 ,其应用前景广阔 ,应对其加强研究。  相似文献   
6.
1Introduction HA(hydroxyapatite)wasakindofbioactiveceram ics,whichhadexcellentbiocompatibilityandtissueaffin ityinthatitscomponentsweresimilartothoseofhuman bone[1].Soitwasthebestknownhumanbonesubstitute,andunprecedentedeffecthadbeenharvestedinrecenttwo d…  相似文献   
7.
Using a mediating alkyne gas during the radiation treatment prevents the degradation of natural and synthetic polysaccharides and proteins. The product has higher viscosity and is more elastic than the original material and, therefore, gives enhanced functionality. Protein, within demineralised bone, too can be modified to give enhanced osteoinductive capacity after transplantation. Thus new functionalities can be achieved from the new products produced in food and medical products.  相似文献   
8.
This study investigates quantitatively and qualitatively the sol-gel derived bioactive glass-ceramic system (BGS)—apatite-wollastonite (AW) type granules in the size range of 0.5–1 mm, as an effective graft material for bone augmentation and restoration. Scanning electron micrographs (SEM) of the sintered granules revealed the rough material surface with micropores in the range 10–30 μm. X-ray diffraction (XRD) pattern of the granules revealed the presence of crystalline phases of the hydroxyapatite and wollastonite, and the functional groups of the silicate and phosphates were identified by Fourier transform infrared spectroscopy (FT-IR). Thein vitro cell culture studies with L929 mouse fibroblast cell line showed very few cells adhered on the BGS disc after 24 h. This could be due to the highly reactive surface of the disc concomitant with the crystallization but not due to the cytotoxicity of the material, since the cellular viability (MTT assay) with the material was 80‰ Cytotoxicity and cytocompatibility studies proved that the material was non-toxic and biocompatible. After 12 weeks of implantation of the BGS granules in the tibia bone of New Zealand white rabbits, the granules were found to be well osteointegrated, as observed in the radiographs. Angiogram with barium sulphate and Indian ink after 12 weeks showed the presence of microcapillaries in the vicinity of the implant site implicating high vascularity. Gross observation of the implant site did not show any inflammation or necrosis. SEM of the implanted site after 24 weeks revealed good osteointegration of the material with the newly formed bone and host bone. New bone was also observed within the material, which was degrading. Histological evaluation of the bone healing with the BGS granules in the tibial defect at all time intervals was without inflammation or fibrous tissue encapsulation. After 2 weeks the new bone was observed as a trabeculae network around the granules, and by 6 weeks the defect was completely closed with immature woven bone. By 12 weeks mature woven bone was observed, and new immature woven bone was seen within the cracks of the granules. After 24 weeks the defect was completely healed with lamellar bone and the size of the granules decreased. Histomorphometrically the area percentage of new bone formed was 67.77% after 12 weeks and 63.37% after 24 weeks. Less bone formation after 24 weeks was due to an increased implant surface area contributed by the material degradation and active bone remodeling. The osteostimulative and osteoconductive potential of the BGS granules was established by tetracycline labelling of the mineralizing areas by 2 and 6 weeks. This sol-gel derived BGS granules proved to be bioactive and resorbable which in turn encouraged active bone formation.  相似文献   
9.
在不同酸度下巯基棉可以从溶液中富集和分离Au、As、Ag、Br、Cu、Ca Co、InHg、Ni、Se、Sb、Sn、Pb、W、Fe和In等30多种元素。由于用巯基棉吸附待测元素后不必洗脱,因此大大提高了富集能力,可用于海水、地下水、地表水及工业废水中一些元素的测量。本文用巯基棉富集后进行中子活化分析测定水泥及其浸出水中的汞。  相似文献   
10.
苏平l井完井方式运用了技术套管一次上返、悬挂尾管和筛管技术。该井技术套管段井眼大、裸眼段长,加上大斜度、小间隙的尾管段.对水泥浆体系的性能要求较高。总结分析了长庆天然气水平井苏平l井的固井技术问题,介绍了苏平l井的井身结构与地层性质。通过研究.确定采用低失水GSJ水泥浆体系。该体系成功地应用在三次工程建井过程中,解决了长裸眼、大灰量、大斜度、尾管小间隙等固井技术问题。固井质量达到工程要求。  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