Influnce of stucture shape and rubber property on 220 kV cable terminal stress cone;
结构形式及材料性能对220kV电缆终端应力锥的影响
Optimization of material and structure parameters in cable terminal based on response surface methodology;
基于响应表面法的电缆终端结构和材料参数优化
Numerical simulation analysis of 220 kV cable terminal stress cone in force field;
220kV电缆终端应力锥在力场中的数值模拟分析
Development in the design of HV cable termination;
高压电缆终端结构设计的进展
The use of prefabricated rubber stress cone in high voltage cross-linking power cable termination was presented.
介绍了高压交联电力电缆终端中预制橡胶应力锥的应用情况,探讨了应力锥的锥面曲线设计方法,分析了橡胶应力锥的电气性能、力学性能以及热性能。
Further simulation was conducted for examining the effects of a replacement of linear SCT by nonlinear one in an optimized cable termination e.
基于变分原理推导了非线性的时域有限元电场计算方程和稳态热场有限元方程,并引进了响应表面法,实现了响应表面法与时域有限元方法的结合,针对含非线性应力管(Stress Control Tube,SCT)的电缆终端,进行了材料和结构的参数优化。
The indirectly-heated terminating type MEMS microwave power sensor s structure and process were presented,and based on these,the match design among the coplanar waveguide,the terminal resistors and the thermopile were done.
在提出间接加热终端式MEMS微波功率传感器的结构和工艺的基础上,对其基本单元:共面波导(CPW)、终端电阻和热电堆之间进行了匹配性设计,用软件HFSS进行了模拟,模拟结果包括共面波导与接触垫间的阻抗匹配的分析以及热电偶的数目和热电堆的接近对CPW性能影响的分析。
The thermal simulations were done and compared,according to the thermopile s three different positions:under(structure A),above(structure B)and outside(structure C)the terminal resistors.
在提出间接加热终端式MEMS微波功率传感器结构和工艺的基础上,用Coventorware软件和ANSYS软件对其温度分布进行了模拟,根据热电堆的放置位置不同,分别对热电堆处于终端电阻的下方(结构A)、上方(结构B)和外侧(结构C)三种结构进行了模拟和比较,最后采用了热电堆处于终端电阻下方的结构,热电堆的热端可以测得的温度范围为417。
The reliability and the automation level of distribution terminal directly affect the reliability and the automation level of entire distribution automation (DA).
配电终端的可靠性和自动化水平直接影响了整个配电自动化(DA)系统的可靠性和自动化水平。
cable distribution box
电缆交接箱,电缆分线盒,电缆终端盒
Cable termination, single line symbol. Complete symbol can be specified.
电缆终端,单线符号。可以指定完整符号。
Cable termination, single line symbol. Right-click for complete symbol.
电缆终端,单线符号。右击指定完整符号。
Phase-checking Method of the Cable Connected to Cubicle Type Gas Insulated Switchgear (C-GIS) without Dismounting Cable Terminal
柜式GIS电缆终端不拆装核相方法
Accident Analysis of Power Cable Terminal on 110kV Liangrong Line
110kV良容线电缆终端故障分析
Test on Incorrectly Installed Stress Cone of Prefabricated Cable Terminal
预制式电缆终端应力锥安装错位试验
Thinking on Short Circuit Accident due to Discharge of 110 kV Dry Cable Terminal
一起110 kV干式电缆终端头放电短路事故的思考
Analysis of Electric Field in Incorrectly Installed Stress Cone of Prefabricated Cable Terminal
预制式电缆终端应力锥安装错位时的电场分析
Causes of 110 kV cable terminal faults of Bao Steel Power Plant and countermeasures
宝钢电厂110kV电缆终端故障原因分析及对策
Analysis and treatment of SF_6 micro water content exceedance for power cable terminal
220kV电缆终端SF_6气体微水含量超标分析及处理
Field Measurement and Analysis of Stress Variation in Stress Cone of High Voltage Cable Terminal
高压电缆终端应力锥应力变化的现场测试分析
Simulating Electric Field Distributing and Optimizing Designs of HV Compound Insulation Wall Bushing and Cable Termination;
高压复合绝缘穿墙套管和电缆终端电场仿真及优化设计
Computer Aided Design Injection Mold of Silicone Rubber Stress Cone of the 35Kv Terminal Cable;
35Kv电缆终端应力锥硅橡胶注射模具计算机辅助设计
Further more, the distribution of electric field in cable termination is analyzed as cavities reside on the interface of a capacitive and a nonlinear resistive material.
进一步分析电缆终端中电容性和非线性电阻性材料知其分界面处含有气隙时的电场分布。
Apply a thin coating of petroleum jelly or chassis grease to the exposed surfaces of the cable terminal clamps and the battery terminal posts.
为电缆终端线夹和电池接线柱露出部分涂一层薄的凡士林油或车用底盘滑脂。
Thus, most undersea vehicles -- particularly ROVs -- operate at the end of long ropes.
因此,大多数海底运载工具,特别是无人深水潜艇,要在很长的电缆终端进行通讯。
live cable test cap
电缆在加压测试时用的终端接头
Minmum thickness of sheath and maximum overall of cable refer to Table 3.
终端电缆的护套最小厚度和电缆最大外径见表2。
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