针对柱上变压器的无人机绝缘喷涂技术研究OA
Drone Insulation Spraying for Pole-mounted Transformers
柱上变压器分接头处易发生金属裸露故障,对其进行绝缘喷涂可以提高供电的可靠性.基于无人机的带电绝缘喷涂系统能保证人身安全,提高作业效率,基于SolidWorks和ANSYS仿真平台,设计10 kV柱上变压器的绝缘喷涂方案,拟定喷涂参数.设定喷嘴喷涂压力范围为0.2~0.4 MPa、喷涂时间为1s,采用点射喷涂以优化喷涂效果.设置喷嘴扩散角度、喷涂角度和距离为变量进行仿真.研究结果表明:当喷嘴扩散角度30°、喷涂角度15°、喷嘴距设备距离0.65 m时,其喷涂覆盖率最佳.通过现场喷涂作业,验证了喷涂方案的仿真结果,喷涂后柱上变压器的关键部位得到了有效的绝缘保护,提高了电力设备供电的稳定性和安全性.
Insulating coating application to pole-mounted transformer tap changers prone to metal exposure faults can enhance the reliability of power supply,and the live insulating spraying system based on drones ensures personnel safety and improves operational efficiency.An insulation spraying scheme for 10 kV pole-mounted transformers was designed on SolidWorks and ANSYS simulation platforms,and spraying parameters were set.The nozzle spraying pressure range was set between 0.2-0.4 MPa,with spraying time in 1 second,and in application of point spraying to optimize the spraying effect.The nozzle diffusion angle,spraying angle,and distance were set as variables for simulation.The research results show that the best spraying coverage is achieved when the nozzle diffusion angle is 30°,the spraying angle is 15°,and the nozzle distance from the equipment is 0.65 m.The spraying scheme was validated through on-site spraying operations,confirming that the critical parts of the pole-mounted transformer received effective insulation protection after spraying,which enhances the stability and safety of the power supply.
韩俊康;郝思鹏;何嘉铭;李思源;荆启文
南京工程学院,江苏南京 211167南京工程学院,江苏南京 211167南京工程学院,江苏南京 211167南京工程学院,江苏南京 211167南京工程学院,江苏南京 211167
信息技术与安全科学
SolidWorksANSYS无人机喷涂10 kV柱上设备柱上变压器绝缘
SolidWorksANSYSdrone spraying10 kV pole-mounted equipmentpole-mounted transformer insulation
《机械制造与自动化》 2026 (2)
50-55,6
江苏省科技成果转化专项资金项目(BA2022105)
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