New Design of the Silicone Rubber Composite Insulators Used in Electrical Transmission Lines
Hi Dear writer
Hope this email finds you well.
I have designed new silicone rubber insulators used in electrical transmission lines (( attached file)).
This design depends on the maximum benefit of the permanent movement of the air to clean and removes the surface deposits.
The design idea is creation nozzle between weather sheds to increase the velocity of the flowing air between the insulators weather sheds. Flow air permanently and
quickly on the insulator body can prevent aggregation deposits insulator on the surface.
What I need?
This research paper aims to discuss:
? The risks occurring in the outdoor insulators
? Explain the design insulator the movement of air around the insulator, and how to speed up the air in the nozzle, by using mathematical equations to analysis
of wind speed and see how to increase that speed in nozzle, graphics or any other things to convince the reader for this idea.
? The materials used in this work:-
(FRP rod) made from Epoxy resin is believed to give better performance, while polyester resin is a lower cost alternative.
The materials used in this work silicone elastometric compound to produce Weather sheds polymer or silicon alloy
Metal and fittings, end fittings transmit the mechanical load to the core. They shall be made of malleable cast iron or steel
? Field results obtained were performed on silicon rubber and FRP rod
Including Abstract and Graphical Abstract Image, because some journals needs to Graphical Abstract Image
Can you help me to choose the best title?
The Development of Silicone Rubber Composite Insulators in Electrical Transmission Lines
OR
New Design of the Silicone Rubber Composite Insulators Used in Electrical Transmission Lines
The new nozzle created
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Change the air speed in the nozzle
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New design of insulators
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New design of insulators
Table. Design parameters of silicone rubber composite insulators
No Parameters Value
1 Overall diameter, mm 135
2 Overall length, mm 900
3 Total no of weather sheds 18
4 Core diameter, mm 25
5 Spacing between weather sheds, mm 40
6 The inclination angle of the weather sheds 15°/10°
7 Total weight of silicone rubber insulator, Kg 4
8 Electromechanical Min. Failing to load, KN 90
Kindly focus on mathematical equations to prove change the air speed
All the best
Note: I used AutoCAD 2007 to draw. If you want the original figures I did by AutoCAD I will send it to you
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