High Temperature Composite Curing Heating Blankets (FGH & SXH)
BriskHeat FGH and SXH Series High-Temperature Composite Curing Blankets deliver accurate, uniform surface heat engineered specifically for advanced composite repair processes. Constructed with a 1-inch (25 mm) high-density fiberglass thermal core encased in heavy-duty Samox cloth, these flexible blankets maximize heat transfer while minimizing thermal loss to the ambient environment. Designed to conform tightly to complex structural curves, they provide the rapid response and steady, high-temperature distribution required for high-spec aerospace, wind energy, and advanced manufacturing composite cures.
Note: Temperature Controller is required for this product.
- High-Temperature Composite Compatibility: Specially designed to meet the rigorous cure profiles of modern high-temperature resin systems, thermoplastics, and polyamide composite matrix materials.
- Extreme Radius Flexibility: Highly pliable Samox cloth construction maintains optimal thermal contact and structural performance across tight contours, bending safely down to a 1-inch (25 mm) radius.
- Seamless Hot Bonder Integration: Fully compatible with BriskHeat ACR hot bonders.
Since 1949
Exposure Temperature:
- FGH series: 800°F (427°C)
- SXH series: 1100°F (593°C)
Power Density:
- FGH series: 7 W/in² (1.1 W/cm²)
- SXH series: 13 W/in² (2.0 W/cm²)
Voltage: 120 or 240 VAC
Dielectric Strength: Over 2000 volts
Nominal Thickness: 1 in (25.4 mm)
Power Cord: 6 ft (1.8 m) long fiberglass power cord with choice of power plug.
With CE approved plug
Advanced Composite Curing & Repair
Aerospace Structural Repairs
Wind Turbine Blade Restoration
Marine Craft Maintenance
Automotive and Motorsports
Sports Equipment Manufacturing
| FGH Series | SXH Series | ||||
| Width in (mm) | Length in (mm) | Total Watts | Width in (mm) | Length in (mm) | Total Watts |
| 6 (152) | 6 (152) | 255 | 6 (152) | 6 (152) | 468 |
| 6 (152) | 12 (305) | 504 | 6 (152) | 12 (305) | 936 |
| 6 (152) | 24 (610) | 1008 | 6 (152) | 24 (610) | 1872 |
| 8 (203) | 8 (203) | 448 | 8 (203) | 8 (203) | 832 |
| 10 (254) | 10 (254) | 700 | 10 (254) | 10 (254) | 1300 |
| 12 (305) | 12 (305) | 1008 | 12 (305) | 12 (305) | 1872 |
| 12 (305) | 24 (610) | 2016 | 12 (305) | 24 (610) | 3744* |
| 16 (406) | 16 (406) | 1792 | 16 (406) | 16 (406) | 3328 |
| 18 (457) | 18 (457) | 2268 | 18 (457) | 18 (457) | 4212* |
| 24 (610) | 24 (610) | 4032* | |||
Catalog/Specifications Sheet
Instruction Manuals
Design Checklists
Q: What are silicone rubber heating blankets used for?
A: Silicone rubber heating blankets are commonly used to:
- Prevent freezing of equipment and materials
- Maintain process temperatures
- Reduce the viscosity of oils, resins, adhesives, and other fluids
- Heat tanks, vessels, drums, pipes, and composite materials
- Support laboratory testing and research applications
Q: How do I select the right silicone rubber heating blanket?
A: Key factors include:
- Surface dimensions
- Material being heated
- Desired temperature
- Ambient conditions
- Available voltage
- Required wattage
- Control requirements
Q: Can silicone rubber heating blankets be customized?
A: Yes. Custom silicone rubber heating blankets can be manufactured in various sizes, shapes, voltages, wattages, and temperature ranges.
Q: Can silicone rubber heating blankets be used outdoors?
A: Silicone rubber heating blankets are moisture and chemical resistant, but you should always check the rating in the specifications of the product before using outdoors.
Q: Are silicone rubber heating blankets flexible?
A: Yes. Silicone rubber heating blankets are highly flexible and can conform to flat, curved, and irregular surfaces. This flexibility helps provide efficient heat transfer and even temperature distribution.
Q: How are silicone rubber heating blankets installed?
A: Installation methods vary by model and may include:
- Pressure-sensitive adhesive backing
- Spring systems
- Hook-and-loop fasteners
Q: Are silicone rubber heating blankets energy efficient?
A: Yes. Because they transfer heat directly to the target surface, silicone rubber heating blankets can be an energy-efficient heating solution compared to heating an entire room or enclosure.
Q: Can silicone rubber heating blankets be used for composite curing?
A: Yes. Silicone rubber heating blankets are widely used in composite repair and curing applications, providing controlled and uniform heat for aerospace, marine, automotive, and industrial composite processes.
Q: Is a control needed for this product?
A: Yes, you will need the use of a temperature control for this product unless the product states that it comes with a control.
Q: What’s the largest size blanket you can manufacture?
A: We currently manufacture blankets of any length with a maximum width of 4 feet (1.2 m).
Q: Can you change the setpoint on a high limit thermostat on SRX heaters?
A: No, the setpoints are designed to keep the blanket rated for hazardous area approvals. Any changes will void the approvals.
Q: How do I hold the heater in place until I can get the PSA cured?
A: We suggest using a high-heat adhesive tape to secure the heater to its vessel until the PSA has had time to properly cure. A good general guideline for curing is 200°F (93°C) for 20 minutes.
Q: Can I leave the tape on after the PSA is cured?
A: You may if it is rated for the temperatures you are wanting to achieve in your process.