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   156389篇
  免费   16008篇
  国内免费   9261篇
电工技术   11554篇
技术理论   9篇
综合类   13066篇
化学工业   21938篇
金属工艺   16563篇
机械仪表   8690篇
建筑科学   18466篇
矿业工程   6699篇
能源动力   5947篇
轻工业   10407篇
水利工程   5108篇
石油天然气   7686篇
武器工业   1556篇
无线电   12608篇
一般工业技术   17205篇
冶金工业   12684篇
原子能技术   2031篇
自动化技术   9441篇
  2024年   167篇
  2023年   2350篇
  2022年   4283篇
  2021年   5390篇
  2020年   5696篇
  2019年   4569篇
  2018年   4237篇
  2017年   5363篇
  2016年   5481篇
  2015年   5913篇
  2014年   9303篇
  2013年   9045篇
  2012年   11659篇
  2011年   12496篇
  2010年   8768篇
  2009年   9146篇
  2008年   8269篇
  2007年   10504篇
  2006年   9526篇
  2005年   7989篇
  2004年   6837篇
  2003年   6082篇
  2002年   5143篇
  2001年   4427篇
  2000年   3512篇
  1999年   2910篇
  1998年   2194篇
  1997年   1806篇
  1996年   1590篇
  1995年   1267篇
  1994年   1111篇
  1993年   753篇
  1992年   680篇
  1991年   557篇
  1990年   490篇
  1989年   350篇
  1988年   261篇
  1987年   173篇
  1986年   153篇
  1985年   129篇
  1984年   116篇
  1983年   70篇
  1982年   76篇
  1981年   61篇
  1980年   75篇
  1979年   54篇
  1964年   59篇
  1963年   45篇
  1959年   54篇
  1955年   50篇
排序方式: 共有10000条查询结果,搜索用时 15 毫秒
1.
基于分形几何理论,考虑微凸体因应变硬化而造成弹塑性变形阶段硬度随变形量变化而变化,建立结合面第一、第二弹塑性变形阶段单次加载刚度分形模型。推导出在计入硬度变化的情况下,单个微凸体在弹塑性变形阶段法向接触刚度与接触面积之间的关系式,进而得出结合面在弹塑性变形阶段法向接触刚度与接触面积、接触载荷之间量纲为一的关系式,并通过仿真分析得出相关参数对结合面法向接触刚度的影响。仿真结果显示:考虑硬度变化时,结合面量纲一法向接触刚度的值与法向实际接触载荷、实际接触面积之间存在关系;结合面法向接触刚度随着分形维数D的增大而增大;分形维数一定时,结合面法向接触刚度随表面长度尺度参数G值增大而增大。  相似文献   
2.
孙玉明  徐蒙  李文慧  王静  张华  王玉林 《质谱学报》2021,42(6):1100-1112
建立了高效液相色谱-高分辨质谱法分析鉴定拉萨大黄化学成分。选用Agilent Zorbax SB-C18柱(150 mm×4.6 mm×5 μm),以乙腈和水为流动相进行梯度洗脱,流速0.5 mL/min;采用电喷雾离子源,在正、负离子模式下对拉萨大黄提取物进行一级和多级全扫描质谱分析。综合分析化合物的色谱和质谱行为,并结合对照品、文献和数据库等相关数据鉴定化合物。在负离子模式下,鉴定出63种化合物;正离子模式下,鉴定出54种化合物。所检测到的化合物包括22种鞣质类、28种茋类、6种黄酮类、3种苯丙酸类、2种苯丁酮类和2种有机酸类,其中有53种化合物为在该药材中首次发现,且未发现蒽醌类成分。该方法快速、灵敏,不仅提高了拉萨大黄复杂基质中微量化合物的鉴定效率,同时实现了对拉萨大黄提取物中不同类型化合物的分析鉴别,为进一步阐明拉萨大黄的药效物质基础及质控标准提供了科学依据。  相似文献   
3.
为了解决高精度的直线时栅位移传感器依赖空间超精密刻线和刻线不均匀等问题,提出一种采用多参数协同调制的新型直线时栅位移传感器。该传感器通过在PCB基板上布置阵列的激励线圈和特定形状的感应线圈,通过调制感应的面积和线圈的参数,感应出电行波信号,经过整形后用高频时钟脉冲插补得到位移量。通过仿真分析设计与样机实验,得出实验结果表明,在不改变空间极距的情况下,使得分辨力在信号源头上提高1倍且有±68μm的测量精度。  相似文献   
4.
张涛    霍然  刘景  李逸鸿  霍黎明 《陕西电力》2021,(9):1-7,55
智能软开关(SOP)可控制潮流、提供无功补偿,进而改善配电网电压、降低网损。因此,针对可再生能源大规模接入配电网后电能质量下降问题,采用K-means算法构建风-光典型场景,同时建立了基于SOP、可投切电容器的含高渗透率分布式电源的主动配电网优化运行模型。该模型以电压偏差、系统网损最小以及系统运行成本最低为目标,综合考虑了能源利用率及系统运行稳定性。最后利用基于参考点的非支配排序方法的多目标优化算法(NSGA-III)进行求解,输出Pareto最优解集,并采用改进的IEEE 33节点系统对所建立模型的有效性进行了验证。  相似文献   
5.
为研究废石?风砂高浓度充填料浆自流输送管道输送特性,将矿山实际充填管路进行还原,应用FLUENT软件进行输送模拟研究。结果表明:充填料浆在管道的管径方向有明显的速度梯度;随料浆流速的增大,料浆的输送沿程阻力损失基本呈线性增大;质量浓度对管输阻力的影响非常大,在充填料浆质量浓度相差2%左右时,管道单位长度的阻力损失会相差20%~30%。通过对不同骨料比的充填料浆进行数值模拟,可知废石风砂质量比为6:4的浆体稳定性和流动性相对较好,更有利于管道输送。建立了管输阻力新模型,并通过工业试验对模型进行检验,验证了新的管输阻力模型的可靠性,研究结果为该矿选取充填系统的运行参数提供了重要依据。  相似文献   
6.
为了获取TC11钛合金拉伸性能随应变率的变化规律,对该材料开展了宽应变率范围下的单轴拉伸试验。结果表明,随着应变率从准静态增加到动态,TC11钛合金的屈服强度略有上升,而应变硬化模量下降。此外,在准静态和动态拉伸下,TC11钛合金均发生了剪切断裂,但动态断裂面上韧窝尺寸小于准静态断面上韧窝尺寸。进一步对材料在变形过程中的温升进行了分析,结果发现,高应变率下材料断裂面上更小尺寸的韧窝和材料更容易发生应变软化归因于动态加载情况下材料中产生了更高的温升。  相似文献   
7.
Soybean oil hydrogenation alters the linolenic acid molecule to prevent the oil from becoming rancid, however, health reports have indicated trans-fat caused by hydrogenation, is not generally regarded as safe. Typical soybeans contain approximately 80 g kg−1 to 120 g kg−1 linolenic acid and 240 g kg−1 of oleic acid. In an effort to accommodate the need for high-quality oil, the United Soybean Board introduced an industry standard for a high oleic acid greater than 750 g kg−1 and linolenic acid less than 30 g kg−1 oil. By combing mutations in the soybean plant at four loci, FAD2-1A and FAD2-1B, oleate desaturase genes and FAD3A and FAD3C, linoleate desaturase genes, and seed oil will not require hydrogenation to prevent oxidation and produce high-quality oil. In 2017 and 2018, a study comparing four near-isogenic lines across multiple Tennessee locations was performed to identify agronomic traits associated with mutations in FAD3A and FAD3C loci, while holding FAD2-1A and FAD2-1B constant in the mutant (high oleic) state. Soybean lines were assessed for yield and oil quality based on mutations at FAD2-1 and FAD3 loci. Variations of wild-type and mutant genotypes were compared at FAD3A and FAD3C loci. Analysis using a generalized linear mixed model in SAS 9.4, indicated no yield drag or other negative agronomic traits associated with the high oleic and low linolenic acid genotype. All four mutations of fad2-1A, fad2-1B, fad3A, and fad3C were determined as necessary to produce a soybean with the new industry standard (>750 g kg−1 oleic and <30 g kg−1 linolenic acid) in a maturity group-IV-Late cultivar for Tennessee growers.  相似文献   
8.
采用高效液相色谱-二极管阵列检测器法(HPLC-DAD)测定西瓜中残留的膨大剂(即:氯吡脲)。西瓜样品溶于乙酸乙酯进行提取,提取物经固相萃取柱(ENVI-18)富集、净化后,在265 nm处,流动相为甲醇-水(65∶35,V∶V)条件下进行检测。结果表明,质量浓度在2.5~80.0 mg/kg范围内呈良好的线性关系,相关系数(R2)为0.999 9,样品加标回收率为95.0%~107.0%,氯吡脲的最低检测限为0.001 mg/kg,用三维光谱-色谱图进行比对,相似度高。该方法快速、灵敏、准确,专属性和特征性高,可用于西瓜中氯吡脲残留的测定。  相似文献   
9.
Evaporative phase transitions are widely present in industrial production and daily life such as thin film processes and crystal growth. The evaporation of the liquid layer and the thermocapillary convection affect each other and restrict each other, making the energy transfer mechanism of the evaporation interface very complicated. To understand the evaporation characteristics of water in its low-pressure pure vapor environment, a series of experimental studies were carried out on the temperature distributions and evaporating rate of water evaporation in the annular pool. The cylinder temperature of the annular liquid pool is controlled between 3℃ and 15℃, and the evaporation environment pressure ranges from 394 Pa to 1467 Pa, when the temperature measurement starts, the depth of water is 10 mm. The results show that the temperature of the vapor side on the liquid-vapor interface is higher than that of the liquid side and there is an obvious temperature jump across the vapor-liquid interface. With the decrease of the pressure ratio, the evaporation rate increases, and the interface temperature jump is enlarged. Meanwhile, with the increase of the distance from the cylinder, the local evaporation rate decreases, thus, the temperature jump decreases. At the same pressure ratio, as the cylinder temperature increases, the heat flux from vapor side decreases, the temperature jump decreases at all measurement points. Within the experimental controlled parameters, the maximum temperature jump obtained in the measurements is 2.56℃. Due to the coupling effect of evaporation cooling and thermocapillary convection, there is a uniform temperature layer with a thickness of about 2 mm under the evaporation interface. The thickness of the uniform temperature layer near the cylinder is always larger than that in the middle of the evaporation interface. In the uniform temperature layer, the thermocapillary convection induced by radial temperature gradient transfers heat from the cylinder to the liquid-vapor interface to compensate for the latent heat of evaporation. Below the uniform temperature layer, the temperature rises rapidly due to heat conduction and buoyancy convection.  相似文献   
10.
Fully dense ceramics with retarded grain growth can be attained effectively at relatively low temperatures using a high-pressure sintering method. However, there is a paucity of in-depth research on the densification mechanism, grain growth process, grain boundary characterization, and residual stress. Using a strong, reliable die made from a carbon-fiber-reinforced carbon (Cf/C) composite for spark plasma sintering, two kinds of commercially pure α-Al2O3 powders, with average particle sizes of 220 nm and 3 μm, were sintered at relatively low temperatures and under high pressures of up to 200 MPa. The sintering densification temperature and the starting threshold temperature of grain growth (Tsg) were determined by the applied pressure and the surface energy relative to grain size, as they were both observed to increase with grain size and to decrease with applied pressure. Densification with limited grain coarsening occurred under an applied pressure of 200 MPa at 1050 °C for the 220 nm Al2O3 powder and 1400 °C for the 3 μm Al2O3 powder. The grain boundary energy, residual stress, and dislocation density of the ceramics sintered under high pressure and low temperature were higher than those of the samples sintered without additional pressure. Plastic deformation occurring at the contact area of the adjacent particles was proved to be the dominant mechanism for sintering under high pressure, and a mathematical model based on the plasticity mechanics and close packing of equal spheres was established. Based on the mathematical model, the predicted relative density of an Al2O3 compact can reach ~80 % via the plastic deformation mechanism, which fits well with experimental observations. The densification kinetics were investigated from the sintering parameters, i.e., the holding temperature, dwell time, and applied pressure. Diffusion, grain boundary sliding, and dislocation motion were assistant mechanisms in the final stage of sintering, as indicated by the stress exponent and the microstructural evolution. During the sintering of the 220 nm alumina at 1125 °C and 100 MPa, the deformation tends to increase defects and vacancies generation, both of which accelerate lattice diffusion and thus enhance grain growth.  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