1) Traveling Wave Electromagnetic Stirring
行波电磁搅拌
2) weak traveling-wave electromagnetic stirring
行波搅拌
3) electromagnetic stirring
电磁搅拌
1.
Flow and Solidification of Copper Thin-slab in Horizontal Continuous Casting with Electromagnetic Stirring;
铜板带水平连铸电磁搅拌中熔体的流动和凝固
2.
Effects of Sr and Electromagnetic Stirring on Microstructure of AZ91D Magnesium Alloy;
Sr与电磁搅拌对AZ91D合金显微组织的影响
3.
Numerical Simulation of Magnetic Field and Flow Field in Aluminum Melt with Electromagnetic Stirring;
铝熔炉电磁搅拌磁场与流场的数值模拟
4) EMS
电磁搅拌
1.
Present Situation of Research and Application of EMS of Semi-solid Forming;
电磁搅拌制备半固态浆料的研究及应用现状
2.
Effect of mould EMS on quality of high carbon steel billet;
电磁搅拌对高碳钢小方坯质量的影响
3.
Development of EMS Technology and its Application in WISCO;
电磁搅拌技术的发展及其在武钢的应用
5) M-EMS
电磁搅拌
1.
Practice on M-EMS in a bloom caster at Xuanhua Steel;
宣钢连铸机结晶器电磁搅拌工艺实践
2.
Application of M-EMS on Billet Caster for Producing Medium and Low Carbon Steel
采用结晶器电磁搅拌技术生产小方坯中低碳钢
3.
The effect of current(150~500A) of mold electromagnetic stirring(M-EMS) technology on metallurgy quality of 280 mm×380 mm,280 mm×325 mm concasting bloom of heavy rail steel U75V etc grade has been tested and studied.
试验研究了电磁搅拌的电流(150~500 A)对重轨钢U75V等钢种(mm)280×380、280×325连铸坯冶金质量的影响。
6) magnetic stirring
电磁搅拌
1.
Numerical simulation of mold electromagnetic stirring for square billet continuous casting;
小方坯连铸结晶器电磁搅拌的数值模拟
2.
The higher the rotating speed is,the stronger the effect of electromagnetic stirring on the liquid is,.
磁场的旋转速率越高,对液态的电磁搅拌作用越强,焊缝金属的晶粒越细小、Al-12Si合金共晶组织越均匀。
3.
The present paper reviews the development of the magnetic stirring technology and its various patterns and their roles, and analyzes the effects of this technology on improvement of the slab quality and foresees the prospect of development of this technology.
综述了电磁搅拌技术的发展、种类及作用 ,举例说明了电磁搅拌技术对改善铸坯质量的影响 ,并展望了电磁搅拌技术的发展前景。
补充资料:导行电磁波
全部或绝大部分电磁能量被约束在有限横截面内沿确定方向传输的电磁波。常用导体和介质的边界作约束手段,如金属波导管、介质线、金属线等。封闭波导管使电磁波局限在管内传输。凡截止波长大于工作波长的模式都可以是导行波;开波导的导行波又称表面波,其场随着与边界的距离的增加而衰减;介质中挖空的导管(见图)也能传输表面波。常见的导行电磁波的结构有传输线、微带线(见微带线和类微带线)、波导、波束波导和光波导等结构。导行波除了在上述结构中沿轴向传输外,还可沿径向或周向传输,如径向波导,由地球表面和电离层构成的环球波导等。导行电磁波的场分布可用模式表示(见电磁波模式),常采用单模传输,如同轴线用TEM模、矩形波导用TE10模等。单模易于控制,不存在模式间的能量变换;即使采用多模传输,其主要能量仍集中于一个需要模(但多模光纤传输却例外,因所有传输模都参与信息的传递)。导行波的传输特性取决于导行结构及其所传输的模式,后者以衰减小、易控制、便于检测为选择原则。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条