1) electrostatic shielding
静电屏蔽涂层
2) static
静电
1.
Research on the influence of the antistatic agent on the friction and the static performance of the flame retardant fibers;
抗静电剂对阻燃纤维的摩擦和静电性能影响
2.
Discussion on the static hazard of wine with high spirit——Cause determination for“8·4”wine tank explosion in gongque wine factory of Luzhou;
高度白酒静电危害特性的探讨——析泸州宫阙老窖酒厂“8·4”酒罐爆炸事故原因调查与认定
3.
Design of a static electricity high voltage direct current power supply circuit with IR2110;
用IR2110设计的静电高压直流电源电路
3) Static electricity
静电
1.
Method for removing static electricity and sheets formed in fluidized bed reactor;
流化床反应器的静电与结片的消除方法
2.
Harmfulness of the static electricity generated in petrochemical plant production and it's protection;
石油化工装置生产过程中静电产生的危害及其防护
3.
The Cause,Hazard and Precautions of Static Electricity During Loading of Light Oils;
轻质油品装车过程中静电的产生、危害及预防
4) electrostatics
静电
1.
4 μm fly ash particles on a single 20 μm fiber with pretreatment conditions was observed with a microscope and CCD to study the effect of electrostatics in fibrous filtration.
为了深入研究静电对纤维滤料过滤过程的影响,利用显微镜与CCD摄像技术,实时观测对比了体积平均直径为1。
2.
This paper describes the electrostatic mechanism of FRP composites and resolution to overcoming electrostatics.
本文阐述了FRP材料产生静电的机理及克服静电的方法 ,并研制出适应于内浮顶的抗静电型FRP材料。
5) electrostatic
静电
1.
Layer-by-layer self-assembly of in-situ polymerized(PSS/PANI)_n composite films based on electrostatic interaction;
原位聚合(PSS/PANI)_n复合膜的静电层-层自组装
2.
Observation of the Disinfection Effect of Electrostatic Air Disinfection Cleaner;
静电式空气消毒洁净器空气消毒的效果观察
3.
Analysis and elimination of electrostatic interference generated in textiles negative-ion measurement;
纺织品负离子测试中的静电分析与消除
6) ESD
静电
1.
A percolation simulation of the ESD latent damages in MOSFET;
1/f噪声检测MOSFET静电潜在损伤的理论基础
2.
Analysis and Research of ESD on Aging of GaN/Si Blue LEDs;
静电对硅衬底GaN基LED老化寿命特性的分析与研究
3.
ESD (Electro-static discharge) can make calculator s memory lost or changed.
静电可能使计算器的存储器单元内容改变或丢失,严重的使计算器的集成电路损坏,无法正常工作。
参考词条
补充资料:静电屏蔽
| 静电屏蔽 electrostatic shielding 利用金属空腔隔离静电场影响的措施。由于静电感应,达到静电平衡的空腔导体内部(指金属导体自身内部,不是指空腔所包围的区域)的场强为零,从而使空腔外部的电场无法进入空腔,对空腔所包围的区域起了屏蔽和保护的作用。如果导体空腔所包围的区域内有带电体,可将空腔导体接地,则内部带电体在空腔导体外表面产生的感应电荷因接地而消失,从而使空腔内带电体的电场不能穿透到外部,消除了对空腔外区域的影响。总之,空腔导体消除了外部电场对腔内区域的影响,接地空腔导体消除了内、外电场的相互影响,这就是静电屏蔽,广泛应用于电器、仪表等各种设备上。实际上利用金属网作外罩就能很好地起到屏蔽作用。 |
说明:补充资料仅用于学习参考,请勿用于其它任何用途。