2) Arc spraying
电弧喷涂
1.
The synthesis of nano-alumina powder in the oxygen-rich surrounding by electric arc spraying;
富氧条件下电弧喷涂反应合成纳米氧化铝粉末
2.
High temperature sulphidization corrosion resistance of Al-based coating by arc spraying;
电弧喷涂铝基涂层耐高温硫化腐蚀性能的研究
3.
Rapid steel mould manufacture based on arc spraying;
基于电弧喷涂的快速钢基模具制造
3) arc-spraying
电弧喷涂
1.
The effect of annealing on microstructure and high temperature erosion property of arc-spraying coatings containing nanosized ceramic powders;
退火处理对含纳米陶瓷粉电弧喷涂层组织结构与高温冲蚀性能的影响
2.
The study on the optimized test of arc-spraying on cast iron;
铸铁零件电弧喷涂工艺规范优化试验研究
3.
Application study of arc-spraying in the protection of water wall of uti lity boilers;
电弧喷涂在电厂锅炉水冷壁防护的应用研究
4) WESC
电爆喷涂
1.
The research progress and application of preparing coating on substrate of materials by means of wire exploding spray coating (WESC) is reviewed in this paper.
综述了电爆喷涂技术在材料表面制备涂层的研究进展和应用。
5) electric arc spraying
电弧喷涂
1.
Choice of technological parameter about electric arc spraying zinc on surface of magnesium alloys;
镁合金表面电弧喷涂锌工艺参数选择
2.
Development of electric arc spraying and application in petroleum industry;
电弧喷涂技术的发展及在石油行业的应用
3.
This paper introduces procedures of electric arc spraying rapid mold making by an example, expatiates of the theory and how to select equipment, material and parameters related to rapid mold making process.
通过实例介绍了电弧喷涂快速模具制造的工艺流程,阐述了制模过程中的工作原理,对实验设备的选用、喷涂材料和喷涂参数的合理选择作了详细的分析,论述了低熔点金属电弧喷涂快速模具制造,具有工艺简单,制作周期短,模具成本低,精度高等优点。
6) Arc spray
电弧喷涂
1.
Analysis on temperature and stress fields of arc sprayed coating;
电弧喷涂涂层温度场及应力应变分析
2.
Design of Arc Spraying Injection Mould for Auto Tail Lampshade;
汽车尾灯灯罩电弧喷涂注射模设计
3.
The present researching and applying situation of the technology of automatic arc spraying;
自动化电弧喷涂技术的研究应用现状
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。
参考词条