Best quality Pultruded Profiles – EPGC Molded Electrical Insulation Profiles – D&F
Best quality Pultruded Profiles – EPGC Molded Electrical Insulation Profiles – D&F Detail:
The raw material of EPGC molded profiles is multi- layer epoxy glass cloth, which is molded under high temperature & higher pressure in special developed mould.
Based on users’ requirement we can do such electrical insulation profiles of EPGC201,EPGC202, EPGC203, EPGC204, EPGC306, EPGC308,etc. For the mechanical & electrical performances, please refer to those of EPGC sheets.
Based on users’ requirement we can do such profiles of EPGC201,EPGC202, EPGC203, EPGC204, EPGC306, EPGC308,etc. For the mechanical & electrical performances, please refer to those of EPGC sheets.
Application: These epoxy glass cloth molded profiles can be machined into different insulation structural parts based on users’drawings and technical requirements.
The following is our current specification for EPGC molded profiles. D&F can also customize the other EPGC profiles based on both sides’ negotiated requirements.
Product detail pictures:
Related Product Guide:
We insist over the principle of development of 'High top quality, Performance, Sincerity and Down-to-earth working approach' to supply you with exceptional services of processing for Best quality Pultruded Profiles – EPGC Molded Electrical Insulation Profiles – D&F , The product will supply to all over the world, such as: Moscow, Sheffield, Montreal, our qualify products have good reputation from the world as its most competive price and our most advantage of after-sale service to the clients.we hope we can provide a safe, environmental products and super service to our clients from all of the world and establish strategic partnership with them by our professional standards and unremitting efforts.
By Jenny from Chile - 2018.06.12 16:22
The company's products very well, we have purchased and cooperated many times, fair price and assured quality, in short, this is a trustworthy company!
By Nelly from UK - 2017.11.01 17:04