Description
Product Overview
The SpeedyFPV G10 fiberglass composite sheet panel is engineered from high‑grade G10 epoxy‑reinforced fiberglass, delivering a unique combination of strength, rigidity, and chemical resistance. Each panel measures 335 mm by 300 mm with a thickness of 10 mm, providing a substantial surface area for a wide range of industrial applications while maintaining a manageable weight. The material’s glossy finish on both sides not only enhances visual appeal but also offers a smooth, low‑friction surface that is easy to clean and resistant to moisture ingress. Precision machining tolerances ensure consistent dimensions across every sheet, allowing for reliable integration into assemblies, fixtures, and custom‑fabricated components. The panel’s robust construction makes it suitable for demanding environments where traditional metals might corrode or add unnecessary weight.
Usage
Designed for versatility, this G10 laminate excels in aerospace structures such as interior panels, brackets, and non‑conductive housings where weight savings are paramount. In the automotive sector, it serves as a durable substrate for dashboards, sensor mounts, and high‑performance interior components that must withstand temperature fluctuations and exposure to automotive fluids. Electronics manufacturers benefit from its excellent dielectric properties, using the sheet for printed circuit board (PCB) substrates, shielding enclosures, and heat‑dissipating plates. The panel’s resistance to solvents, oils, and chemicals also makes it a reliable choice for laboratory equipment, marine applications, and industrial tooling where exposure to harsh substances is common. Its easy machinability allows for CNC routing, drilling, and laser cutting, enabling rapid prototyping and low‑volume production runs.
Why Choose Us
SpeedyFPV’s commitment to quality begins with rigorous material selection and controlled manufacturing processes. Each G10 sheet undergoes multiple quality inspections, including dimensional verification, surface finish assessment, and mechanical testing to confirm tensile strength, flexural modulus, and impact resistance meet or exceed industry standards. Our state‑of‑the‑art curing ovens ensure uniform epoxy polymerization, eliminating internal stresses that could lead to warping or delamination over time. We provide comprehensive documentation, including material safety data sheets (MSDS) and test certificates, giving customers confidence in the product’s performance and compliance. In addition, our responsive technical support team assists with material selection, design optimization, and troubleshooting, offering guidance from concept through final implementation. With fast shipping and reliable inventory management, we help keep your production schedules on track.
Key Features
- Exceptional durability that resists impact, abrasion, and chemical exposure.
- Lightweight construction provides high strength‑to‑weight ratio for weight‑critical projects.
- Glossy dual‑sided finish delivers a professional appearance and easy cleaning.
- Precise 335 mm × 300 mm × 10 mm dimensions enable seamless integration into custom designs.
- Dedicated customer support and after‑sales service ensure successful application.
FAQ
What is the temperature range for this G10 sheet?
The sheet can operate continuously from -40 °C to +150 °C without loss of mechanical properties, making it suitable for most industrial and aerospace environments.
Can the panel be painted or coated?
Yes, the surface can be painted, anodized, or coated with compatible finishes. We recommend a primer designed for epoxy‑based composites to ensure adhesion.
Is the material electrically conductive?
No, G10 is a non‑conductive material with excellent dielectric strength, ideal for insulating applications in electronics and high‑voltage equipment.
How does the sheet perform in moisture‑rich environments?
The epoxy matrix provides low water absorption, and the glossy finish further protects against moisture ingress, allowing reliable performance in humid or marine settings.
What machining methods are recommended?
CNC routing, laser cutting, and conventional drilling work well. Use sharp carbide tools and moderate feed rates to achieve clean edges and avoid delamination.




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