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superconducting magnetic
相关语句
  超导磁
     Effect of Superconducting Magnetic Shield on Noise of High T_c-SQUID Magnetometer
     超导磁屏蔽对高T_c-SQUID磁强计噪声的影响
短句来源
     As nonlinear PID(Proportional Integration Differential) controller is free of the math model of the controlled system in design procedure,a nonlinear PID controller for SMES(Superconducting Magnetic Energy Storage) unit connected to power system is proposed.
     基于非线性比例积分微分PID(Proportional Integration Differential)控制器在设计上具有不依赖于被控系统数学模型的特点,设计了用于电力系统的超导磁储能装置SMES(Superconducting Mag-netic Energy Storage)的非线性PID控制器。
短句来源
     The Superconducting magnetic shiedding field and transport Critical current density of the sample were 1.37mT and 500A/cm~2,respertively, No evidence showed the delay of trapping field after 10~4s.
     所制备的样品其超导磁屏蔽场为1.37mT,传输电流密度500A/cm~2,捕获磁场持续时间达10~4 s未见衰减。
短句来源
     Application of nonlinear PID controller in superconducting magnetic energy storage
     非线性PID控制器在超导磁储能装置中的应用
短句来源
     RESEARCH ON APPLICATION OF NONLINEAR PID CONTROLLER IN SUPERCONDUCTING MAGNETIC ENERGY STORAGE
     非线性PID控制器在超导磁储能装置中的应用研究
短句来源
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  超导
     Effect of Superconducting Magnetic Shield on Noise of High T_c-SQUID Magnetometer
     超导磁屏蔽对高T_c-SQUID磁强计噪声的影响
短句来源
     As nonlinear PID(Proportional Integration Differential) controller is free of the math model of the controlled system in design procedure,a nonlinear PID controller for SMES(Superconducting Magnetic Energy Storage) unit connected to power system is proposed.
     基于非线性比例积分微分PID(Proportional Integration Differential)控制器在设计上具有不依赖于被控系统数学模型的特点,设计了用于电力系统的超导磁储能装置SMES(Superconducting Mag-netic Energy Storage)的非线性PID控制器。
短句来源
     Design for the Bidirectional DC/DC Conveter for the Application of Superconducting Magnetic Energy Storage
     应用于超导储能的双向DC/DC变换器的设计
短句来源
     MR imaging was perfomed with a 1.0T superconducting magnetic system.
     磁共振为1.0T 超导系统.
短句来源
     The Superconducting magnetic shiedding field and transport Critical current density of the sample were 1.37mT and 500A/cm~2,respertively, No evidence showed the delay of trapping field after 10~4s.
     所制备的样品其超导磁屏蔽场为1.37mT,传输电流密度500A/cm~2,捕获磁场持续时间达10~4 s未见衰减。
短句来源
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  “superconducting magnetic”译为未确定词的双语例句
     WELDING TECHNOLOGY OF SUS316LN TUBES USED IN SUPERCONDUCTING MAGNETIC SYSTEM OF EAST
     EAST超导磁体SUS316LN不锈钢管焊接工艺
短句来源
     ROTATING SPACE VECTOR CONTROL ALGORITHM OF SUPERCONDUCTING MAGNETIC ENERGY STORAGE (SMES)
     旋转空间矢量算法在电压型SMES控制中的应用
短句来源
     CONTROL SCHEME OF VOLTAGE TYPE SUPERCONDUCTING MAGNETIC ENERGY STORAGE (SMES) UNDER ASYMMETRICAL VOLTAGE
     电压不对称条件下并联电压源型SMES的触发方式
短句来源
     The Study and Experiment on the Hybrid High-Temperature Superconducting Magnetic Bearing System~2
     高温超导混合磁悬浮轴承系统的研究与实验
短句来源
     THE FUTURE AND DEVELOPMENT OF HYBRID SUPERCONDUCTING MAGNETIC BEARINGS
     超导混合磁力轴承的发展现状和前景
短句来源
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  superconducting magnetic
Superconducting magnetic shields have potential weight advantages over conventional materials as efficient, light, shielding materials.
      
Superconducting magnetic shields of Bi1.7Pb0.4Sr1.6Ca2.4Cu3.6Oy with or without Ag2O superconductor were fabricated in tubular form with one end closed by using a cold isostatic pressing method.
      
Analysis of a superconducting magnetic induction meter in the working standard of the unit of magnetic induction of weak alterna
      
Superconducting magnetic system of a 400-MHz high-resolution NMR spectrometer
      
Measurement of maximum resolution of a superconducting magnetic system of an NMR radiospectrometer at 200 MHz
      
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This report sets to descrebe brietfly a disposition for cryopumping surface and its function of superconducting magnetic mirror device and action of chevron baffle of arrayes before condensing surface. The experimental results of the simulation cryopump are secured: desorption level N=1×10~1H_2/H~+, specific speed S_H+=12.91/cm~2·sec, S_(H_2)=18.71/cm~2·sec, descending energy efficiency became η=0.19%. Ar and N_2 films all can sorb gas of H_2.

本文简要地介绍了超导磁镜装置的低温抽气表面的配置及其作用,也介绍了“人”字形挡板的作用,得到了模拟低温泵的实验结果:解吸程度N=1×10~1H_2/H~+,比抽速S_H+=12.9升/秒·厘米~2,S_(H_2)=18.7升/秒·厘米~2,降能效率η=0.19%,Ar、N_2膜均能吸附氢气。

In this paper, the experimental results of a high-current H2+ ion source are described. The ion source has been used as injector for a superconducting magnetic mirror machine. Due to improvement on the shape of the extraction electric field, the mean extraction field intensity has reached 106kV/cm and a total beam current of 700mA and beam density of 400mA/cm2 have been obtained. In optimum conditions the content of H2+ ions reaches 40% with a beam current of 130mA. This current reduces to ,50mA on a target...

In this paper, the experimental results of a high-current H2+ ion source are described. The ion source has been used as injector for a superconducting magnetic mirror machine. Due to improvement on the shape of the extraction electric field, the mean extraction field intensity has reached 106kV/cm and a total beam current of 700mA and beam density of 400mA/cm2 have been obtained. In optimum conditions the content of H2+ ions reaches 40% with a beam current of 130mA. This current reduces to ,50mA on a target 11m from the source, focused by a pair of magnetic quadrupole lenses and it is 15mA at the centre of the magnetic trap after passing through a 4×6 cm2 diaphragm.

本文叙述了用于稳态超导磁镜装置注入器的H_2~+离子源的实验结果。由于改进了引出系统的电场形态,使引出区平均电场达106千伏/厘米,引出离子束为700毫安,束密度为400毫安/厘米。在引出最佳状态下,H_2~+束含量为40%,束流强为130毫安,经过四极磁透镜聚焦,传输到距源11.8米处的流强为50毫安,经4×6厘米的限制孔注入到捕集室中为15毫安。

This system consists of five parts: a 10T superconducting magnet, a 150 A power supply, a metallic inner dewar, a 80 1 liquid helium outer dewar and some other auxiliaries including the thermal shield, the magnet support, current leads, etc. The inner dewar which is placed in the bore-hole of the magnet provides a φ = 30 mm variable-temperature space from 4.2 K to 400 K and the superconducting magnetic field can be adjusted from 0 to 10 T. The samples can be changed at any time when the magnet is in operating...

This system consists of five parts: a 10T superconducting magnet, a 150 A power supply, a metallic inner dewar, a 80 1 liquid helium outer dewar and some other auxiliaries including the thermal shield, the magnet support, current leads, etc. The inner dewar which is placed in the bore-hole of the magnet provides a φ = 30 mm variable-temperature space from 4.2 K to 400 K and the superconducting magnetic field can be adjusted from 0 to 10 T. The samples can be changed at any time when the magnet is in operating state. The construction of the outer dewar is a gas-cooling multi-shield insulation without liquid nitrogen protection. The loss rate of the liquid helium is 0.21 liter per hour. At 10T field strengh, when the temperature in the inner dewar is at 70 K, the loss rate is in the range of 1.3-1.6 liters per hour.

该装置由11T超导强磁体;ф_内=30mm室温孔径的金属内杜瓦瓶;80升液氦金属外杜瓦瓶;JWL-150A超导磁体电源以及防辐射屏、吊杆、引线等五部分构成。金属内杜瓦瓶直接插在磁体内径中,其实验空间与外界相通,它可在4.2—400K之间变温,在0—10T之间改变磁场强度,也可随时更换测试样品。金属外杜瓦瓶采用气冷多屏绝热的结构。它自身的蒸发率为0.21升/小时。在内杜瓦瓶温度~70K、场强为10T时,液氦蒸发率为1.3—1.6升/小时之间。

 
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