首页 | 官方网站   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   3019篇
  免费   105篇
  国内免费   18篇
工业技术   3142篇
  2023年   29篇
  2022年   51篇
  2021年   114篇
  2020年   77篇
  2019年   81篇
  2018年   95篇
  2017年   82篇
  2016年   98篇
  2015年   53篇
  2014年   94篇
  2013年   173篇
  2012年   128篇
  2011年   155篇
  2010年   119篇
  2009年   103篇
  2008年   117篇
  2007年   113篇
  2006年   95篇
  2005年   90篇
  2004年   59篇
  2003年   56篇
  2002年   48篇
  2001年   28篇
  2000年   42篇
  1999年   39篇
  1998年   162篇
  1997年   104篇
  1996年   89篇
  1995年   57篇
  1994年   63篇
  1993年   54篇
  1992年   38篇
  1991年   33篇
  1990年   23篇
  1989年   25篇
  1988年   25篇
  1987年   17篇
  1986年   21篇
  1985年   26篇
  1984年   32篇
  1983年   14篇
  1982年   20篇
  1981年   19篇
  1980年   19篇
  1978年   17篇
  1977年   17篇
  1976年   31篇
  1975年   15篇
  1974年   20篇
  1972年   12篇
排序方式: 共有3142条查询结果,搜索用时 15 毫秒
101.
There has been a rapid increase in the resolution of small‐sized and medium‐sized displays. This study determines an upper discernible limit for display resolution. A range of resolutions varying from 254–1016 PPI were evaluated using simulated display by 49 subjects at 300 mm viewing distance. The results of the study conclusively show that users can discriminate between 339 and 508 PPI and in many cases between 508 and 1016 PPI.  相似文献   
102.
单星 《工具技术》2014,(6):87-90
在油井管特殊扣产品的加工过程中,拧接是一个重要工序,而拧接设备是否具有自动判定的功能,自动判定方法合适与否,都会对生产节奏和质量控制产生影响。本文介绍了一种自动判定的方法,通过对拐点的扭矩数值、圈数的判断,再加上一些防错手段,实现对特殊扣拧接曲线的自动判定。  相似文献   
103.
104.
The commercial development and current economic incentives associated with energy storage using redox flow batteries (RFBs) are summarised. The analysis is focused on the all‐vanadium system, which is the most studied and widely commercialised RFB. The recent expiry of key patents relating to the electrochemistry of this battery has contributed to significant levels of commercialisation in, for example, Austria, China and Thailand, as well as pilot‐scale developments in many countries. The potential benefits of increasing battery‐based energy storage for electricity grid load levelling and MW‐scale wind/solar photovoltaic‐based power generation are now being realised at an increasing level. Commercial systems are being applied to distributed systems utilising kW‐scale renewable energy flows. Factors limiting the uptake of all‐vanadium (and other) redox flow batteries include a comparatively high overall internal costs of $217 kW?1 h?1 and the high cost of stored electricity of ≈ The commercial development and current economic incentives associated with energy storage using redox flow batteries (RFBs) are summarised. The analysis is focused on the all‐vanadium system, which is the most studied and widely commercialised RFB. The recent expiry of key patents relating to the electrochemistry of this battery has contributed to significant levels of commercialisation in, for example, Austria, China and Thailand, as well as pilot‐scale developments in many countries. The potential benefits of increasing battery‐based energy storage for electricity grid load levelling and MW‐scale wind/solar photovoltaic‐based power generation are now being realised at an increasing level. Commercial systems are being applied to distributed systems utilising kW‐scale renewable energy flows. Factors limiting the uptake of all‐vanadium (and other) redox flow batteries include a comparatively high overall internal costs of $217 kW?1 h?1 and the high cost of stored electricity of ≈ $0.10 kW?1 h?1. There is also a low‐level utility scale acceptance of energy storage solutions and a general lack of battery‐specific policy‐led incentives, even though the environmental impact of RFBs coupled to renewable energy sources is favourable, especially in comparison to natural gas‐ and diesel‐fuelled spinning reserves. Together with the technological and policy aspects associated with flow batteries, recent attempts to model redox flow batteries are considered. The issues that have been addressed using modelling together with the current and future requirements of modelling are outlined. Copyright © 2011 John Wiley & Sons, Ltd.  相似文献   
105.
106.
107.
108.
109.
110.
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-23

京公网安备 11010802026262号