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   5754篇
  免费   340篇
  国内免费   188篇
电工技术   472篇
技术理论   1篇
综合类   441篇
化学工业   133篇
金属工艺   123篇
机械仪表   433篇
建筑科学   258篇
矿业工程   64篇
能源动力   157篇
轻工业   238篇
水利工程   21篇
石油天然气   78篇
武器工业   35篇
无线电   1227篇
一般工业技术   374篇
冶金工业   41篇
原子能技术   18篇
自动化技术   2168篇
  2024年   13篇
  2023年   88篇
  2022年   126篇
  2021年   166篇
  2020年   200篇
  2019年   100篇
  2018年   79篇
  2017年   149篇
  2016年   162篇
  2015年   238篇
  2014年   492篇
  2013年   314篇
  2012年   450篇
  2011年   458篇
  2010年   294篇
  2009年   272篇
  2008年   325篇
  2007年   375篇
  2006年   347篇
  2005年   373篇
  2004年   271篇
  2003年   256篇
  2002年   167篇
  2001年   135篇
  2000年   137篇
  1999年   78篇
  1998年   62篇
  1997年   46篇
  1996年   31篇
  1995年   26篇
  1994年   16篇
  1993年   11篇
  1992年   4篇
  1991年   4篇
  1990年   3篇
  1989年   3篇
  1988年   3篇
  1987年   2篇
  1986年   1篇
  1985年   2篇
  1962年   1篇
  1959年   1篇
  1957年   1篇
排序方式: 共有6282条查询结果,搜索用时 15 毫秒
1.
Various methods have been developed to monitor the health and strain state of carbon fiber reinforced polymers, each with a unique set of pros and cons. This research assesses the use of piezoresistive sensors for in situ strain measurement of carbon fiber and other composite structures in multidirectional laminates. The piezoresistive sensor material and the embedded circuitry are both evaluated. For the piezoresistive sensor, a conductive nickel nanocomposite sensor is compared with the piezoresistivity of the carbon fiber itself. For the circuit, the use of carbon fibers already present in the structure is compared with the use of nickel coated carbon fiber. Successful localized strain sensing is demonstrated for several sensor and circuitry configurations. Numerous engineering applications are possible in the ever-growing field of carbon-composites.  相似文献   
2.
This paper presents an effective approach to achieve efficient electrical actuation and monitoring of shape recovery based on patterned Au electrodes on shape memory polymer (SMP). The electrically responsive shape recovery behavior was characterized and monitored by the evolution change in electrical resistance of patterned Au electrode. Both electrical actuation and temperature distribution in the SMP have been improved by optimizing the Au electrode patterns. The electrically actuated shape recovery behavior and temperature evolution during the actuation were monitored and characterized. The resistance changes could be used to detect beginning/finishing points of the shape recovery. Therefore, the Au electrode not only significantly enhances the electrical actuation performance to achieve a fast electrical actuation, but also enables the resistance signal to detect the free recovery process.  相似文献   
3.
Inspired by biological systems in which damage triggers an autonomic healing response, a polymer composite material that can heal itself when cracked has been developed. In this work, compression and tensile properties of a self-healed fibre reinforced epoxy composites were investigated. Microencapsulated epoxy and mercaptan healing agents were incorporated into a glass fibre reinforced epoxy matrix to produce a polymer composite capable of self-healing. The self-repair microcapsules in the epoxy resin would break as a result of microcrack expansion in the matrix, and letting out the strong repair agent to recover the mechanical strength with a relative healing efficiency of up to 140% which is a ratio of healed property value to initial property value or healing efficiency up to 119% if using the healed strength with the damaged strength.  相似文献   
4.
“Smart firefighting” construction as a part of the “smart city” has been a concern of the public security and fire agencies at all levels. In this study, the status, problems, and reflections of “smart firefighting” construction in China are discussed. A recent survey indicates that China has launched its smart firefighting construction and initially created a new perspective on its regional smart firefighting work based on three main aspects: intelligent disaster perception by Internet of Things (IoT) construction, intelligent disaster prevention by big data construction, and intelligent disaster disposal by emergency rescue platform construction. However, the current smart firefighting construction in China still has some prominent problems such as the data interconnectivity and normalized management of various platforms, the extensibility of smart firefighting platforms, and the intelligent level of smart firefighting researches, which need to be solved urgently. Therefore, we argue that smart firefighting construction in China should establish data interconnectivity, industrial normalized management, 2D/3D geographic information interaction and extension, high-integration fire protection theory, and many other aspects in the near future and truly realize firefighting visualization and efficient data applications for 4D time space. This study could provide valuable reference for smart firefighting and smart city construction.  相似文献   
5.
The optimization of energy consumption, with consequent cost reduction, is one of the main challenges for the present and future smart grid. Demand response (DR) program is expected to be vital in home energy management system (HEMS) which aims to schedule the operation of appliances to save energy costs by considering customer convenience as well as characteristics of electric appliances. The DR program is a challenging optimization problem especially when the formulations are non-convex or NP-hard problems. In order to solve this challenging optimization problem efficiently, an effective heuristic approach is proposed to achieve a near optimal solution with low computational costs. Different from previously proposed methods in literatures which are not suitable to be run in embedded devices such as a smart meter. The proposed algorithm can be implemented in an embedded device which has severe limitations on memory size and computational power, and can get an optimal value in real-time. Numerical studies were carried out with the data simulating practical scenarios are provided to demonstrate the effectiveness of the proposed method.  相似文献   
6.
Static stresses analysis of carbon nano-tube reinforced composite (CNTRC) cylinder made of poly-vinylidene fluoride (PVDF) is investigated in this study. Non-axisymmetric thermo-mechanical loads are applied on cylinder in presence of uniform longitudinal magnetic field and radial electric field. The surrounded elastic medium is modeled by Pasternak foundation because of its advantages to the Winkler type. Distribution of radial, circumferential and effective stresses, temperature field and electric displacements in CNTRC cylinder are determined based on Mori–Tanaka theory. The detailed parametric study is conducted, focusing on the remarkable effects of magnetic field intensity, elastic medium, angle orientation and volume fraction of carbon nano-tubes (CNTs) on distribution of effective stress. Results demonstrated that fatigue life of CNTRC cylinder will be significantly dependent on magnetic intensity, angle orientation and volume fraction of CNTs. Results of this research can be used for optimum design of thick-walled cylinders under multi-physical fields.  相似文献   
7.
通过对解决GSM移动通信网络热点区域话务拥塞问题的研究,提出了利用可控功分器实现智能动态网络资源的分配,解决不同种类的话务拥塞问题,并着重讨论了该系统目前的成功运用及前景。  相似文献   
8.
用CMOS工艺实现非接触IC卡天线的集成化设计   总被引:2,自引:0,他引:2  
倪昊  徐元森 《半导体学报》2003,24(5):466-471
论述了用CMOS工艺实现非接触式IC卡天线的集成化需要考虑的各个方面,建立了集成天线的模型,给出了合理的设计方案,并通过实验验证了模型和设计方案.实验结果表明,采用片上天线完全可以提供非接触式IC卡工作所需要的能量.在频率为2 2 .5 MHz、感应强度为6×10 - 4 T的磁场中,面积为2 m m×2 mm的集成天线可以为10 kΩ的负载提供1.2 2 5 m W的能量.  相似文献   
9.
基站智能天线多波束合成技术   总被引:5,自引:2,他引:3       下载免费PDF全文
采用数字波束形成的技术,给出了基站智能天线多波束合成的有效算法。对圆环阵分布的基站天线多波束方向图进行了综合,得到了空间隔离度很好的多个波束,并将副瓣控制在30dB以下,结果令人满意。该方法可用于任意单元构成的不均匀阵列天线,还可用于波束展宽及扇形波束的合成。  相似文献   
10.
许参  艾晓辉  王超 《电子器件》2003,26(2):122-124
设计了GMSK(Gauss Minimum Shift Keying,高斯最小频移键控)无线接收终端的硬件与软件系统。硬件的射频电路对空中信号进行接收与滤波,再由以MX589构成的解调模块解调,输出数字信号;数字硬件以单片机GMS97L5为核心。软件系统设计了对IC卡AT88SCl608加密卡的认证以及对串行数据的接收与处理的中断程序。终端系统接收数据快、性能稳定。  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