3240, similar to EPGC201, is made of electrical glass cloth impregnated with epoxy resin, formed by drying and hot pressing. This product has high mechanical and dielectric performance, good heat resistance and moisture resistance, stable dielectric performance after immersion in water, and good machinability. It is suitable for use as insulating structural components in motors and electrical equipment, and can be used in humid environments and transformer oil.
ISO
3240 Epoxy Glass Fabric Laminated Sheets |
||
Dimensions (LxW) |
1020*1220 |
MM |
1020*2040 |
MM |
|
1220*2470 |
MM |
|
Density |
1.70-2.00 |
g/cm3 |
Electric strength perpendicular to laminations (in oil, 90±2℃), 1 mm in thickness |
≥10.2 |
KV/mm |
Breakdown voltage parallel to laminations (in oil, 90±2℃) |
≥35 |
KV |
1 MHz dielectric constant |
≤5.5 |
- |
1 MHz dielectric loss factor |
≤0.04 |
- |
Water absorption rate, 2 mm in thickness |
13.5 |
mg |
Thermal resistance |
B |
CLASS |
Material: glass cloth, epoxy resin
Color & Logo: yellow, other colors are in accordance with your requirements
3240, similar to EPGC201, is made of electrical glass cloth impregnated with epoxy resin, formed by drying and hot pressing. This product has high mechanical and dielectric performance, good heat resistance and moisture resistance, stable dielectric performance after immersion in water, and good machinability. It is suitable for use as insulating structural components in motors and electrical equipment, and can be used in humid environments and transformer oil.
High insulation resistance: Suitable for high-voltage electrical equipment, transformers, insulating gaskets, etc.
High rigidity & impact resistance: Ideal for structural supports, motor slot wedges, switchgear partitions, etc.
Dimensional stability: Minimal deformation under temperature fluctuations, ensuring long-term precision.
Can be cut, drilled, and milled: Facilitates customization into insulating gaskets, gears, bearing housings, and other mechanical components.
High value for money: More affordable compared to specialty engineering plastics (e.g., PI, PTFE), making it suitable for large-scale applications.
To continuously enhance product competitiveness and meet customer demand for high-performance materials, our R&D team has achieved a breakthrough in the manufacturing process of 3240 epoxy resin laminates after six months of technical research. By optimizing resin formulations and improving hot-pressing parameters, we've now established stable mass-production capabilities for ultra-thin specifications including 0.15mm, 0.2mm, and 0.3mm. This product series currently offers customers more cost-effective solutions for premium insulation materials.