Lithium-ion battery fire blankets are designed specifically to manage the unique risks associated with battery fires, including extreme heat, thermal runaway, and the release of flames, smoke, and gases.
Unlike conventional fire blankets, these solutions are engineered for higher temperature resistance and are intended to contain and control lithium-ion battery incidents by isolating the source, limiting fire spread, and protecting surrounding assets and people.
Our range of lithium-ion fire blankets supports a variety of applications, from small device incidents through to large-scale containment scenarios.
Our range includes:
- Compact lithium-ion fire blankets
- Designed for smaller battery-powered devices such as laptops, power tools, e-bikes, and other portable equipment. Suitable for workshops, service environments, and charging areas.
- Mid-size containment blankets
- Ideal for larger equipment, battery storage units, and palletised goods, providing greater coverage and enhanced containment capability.
- Large-format and industrial blankets
- Engineered for high-risk environments, these blankets are designed to contain significant heat output and help manage fire spread across larger assets and storage areas.
- EV and mobility fire blankets
- Heavy-duty solutions developed for electric vehicles and mobility applications, designed to fully encapsulate a vehicle or battery system to help contain fire, heat, and smoke during an incident.
Key features:
- High-performance, heat-resistant materials designed for lithium-ion fire conditions
- Rapid deployment for immediate containment and control
- Designed to isolate the fire source and reduce spread to surrounding areas
- Supports management of heat, flame, and smoke during an incident
- Available in a range of sizes to suit different environments and risk profiles
- Lithium-ion fire blankets are primarily a containment solution. While they can assist in controlling an incident, they are most effective when used as part of a layered safety strategy alongside early detection and appropriate suppression systems.