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1)  electrostatically suspended
电悬浮
1.
A preliminary design of an electrostatically suspended triaxial accelerometer;
电悬浮式三轴加速度传感器的初步设计
2)  electromagnetic suspension
电磁悬浮
1.
Application of fuzzy-PID control to electromagnetic suspension platform;
模糊PID控制在电磁悬浮平台中的应用
2.
Then we designed a H∞ robust controller to improve the rigidity of electromagnetic suspension air-gap.
然后针对扰动设计了可以提高电磁悬浮气隙高度之刚度的H∞鲁棒控制器。
3.
Taking the magnetic field of magnetic levitation ball control system as an example,the FEM analysis method for the axial magnetic field have been described, which in nonlinear on the base of analysis of the principles of electromagnetic suspension control system.
在分析电磁悬浮控制系统基本原理的基础上,以磁浮球控制系统的磁场为例,论述了轴对称非线性磁场的有限元分析方法,建立了有限元方程,应用二维磁场有限元软件对在不同的悬浮气隙下的磁场吸力进行了精确的计算。
3)  electromagnetic levitation
电磁悬浮
1.
On the construction of electromagnetic levitation melting system and levitating force;
电磁悬浮熔炼系统的结构及其悬浮力的研究
2.
Theory analysis of steady magnetic field on rotational stability of electromagnetic levitation melting;
直流磁场控制电磁悬浮熔炼旋转稳定性的理论分析
3.
Finite element analysis of an electromagnetic levitation micro-actuator
电磁悬浮式微驱动器的有限元分析研究
4)  electromagnetic suspension
电磁-悬浮
1.
Effect of electromagnetic suspension casting on grain refinement for wrought magnesium alloy;
电磁-悬浮铸造对变形镁合金晶粒细化的影响
2.
The electromagnetic suspension casting of AZ61 wrought magnesium alloy was studied using electromagnetic stirring technique and the suspension casting during the casting process.
结果表明:利用电磁-悬浮铸造制备的镁合金,其显微组织细化,晶间β相细小并且网状结构减少,当CaC2悬浮剂加入量(质量分数)为0。
5)  Suspension electrolysis
悬浮电解
1.
Therefore we have developed a new process of suspension electrolysis for treating iron blend.
对不同悬浮电解液中高铁闪锌矿阳极氧化产物进行研究,结果表明高铁闪锌矿在硫酸锌、硫酸铵和硫酸的悬浮电解液中能够有效被氧化,闪锌矿中>90%的锌进入电解液,从而推导出高铁闪锌矿悬浮电解的全新处理工艺。
2.
According to this analysis, technics route was determined as suspension electrolysis and solvent extraction.
在此基础上提出了悬浮电解法提纯铜与溶剂萃取法提纯金的复合工艺路线。
6)  floating potential
悬浮电位
1.
AISI 316L austenitic stainless steel was nitirded in floating potential and anodic (zero) potential at low temperature by active screen plasma nitriding (ASPN).
用活性屏离子渗氮技术分别对处于悬浮电位和阳极电位的AISI316L奥氏体不锈钢进行低温渗氮处理。
2.
AISI 316L austenitic stainless steel in anodic(zero) potential was nitirded at low temperature by active screen plasma nitriding,and compared the microstructures,morphologies,phase structures,microhardness and corrosion resistance of the nitrided layers with those of the samples nitrided in floating potential.
用活性屏离子渗氮技术对处于阳极电位的AISI 316L奥氏体不锈钢进行低温渗氮处理,并将渗氮层的组织、形貌、相结构、显微硬度和耐蚀性能与在悬浮电位下处理的试样作对比。
3.
In this paper, an algorithm to compute 2 D floating potential is put forward.
本文给出了一种求解悬浮电位的有限元算法 ,并利用它对二维电场 (平面场 ,轴对称场 )的悬浮电位进行了求解。
补充资料:厂用电受电


厂用电受电
energizing of auxiliary power system

chongyongd一on sho一Jd一on厂用电受电(energizing of auxiliary powersystem)机组附属设备安装完毕后需通电试运行,所需厂用电源由外部供给,因此厂用电受电是调试工作开始的标志。 受电步骤新建电厂先由电力系统向变电站供电,再依次对高压起动/备用变压器、3~10kv厂用配电装置、厂用工作变压器及380V配电装置供电。扩建电厂因高压起动/备用变压器已经投人运行,故可利用它的电源对扩建的厂用配电装置等供电。 调试项目主要有:①用额定电压依次对空载线路、变电站母线、隔离开关、断瘩器、互感器、变压器及厂用配电装置等进行冲击合闸试验。有条件时.冲击合闸前应先进行递升加压试验。升压过程中注意检查各设备有无放电声及短路现象,发现问题及时处理后再进行升压。②检查三相电压应平衡,相序应正确,各段母线的相位彼此应一致。对配电装置供电时,有时会由于母线电容和与母线连接的电磁式电压互感器的电感相互作用而出现铁磁谐振,此时相电压升高,中性点明显位移。为消除谐振可在电压互感器的剩余电压绕组处并联电阻以去振。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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