AI Data Center Potential Applications
From AI infrastructure and battery safety to sustainable buildings and next generation energy systems, tiisa® helps solve critical thermal challenges across a wide range of industries. These concept applications illustrate how advanced insulation materials can improve efficiency, enhance safety and enable more resilient, high performance systems.
Case A | AI Server Containers: Thermal Management in Ultra-High-Density Environments
The Challenge
Extreme Outdoor Heat is Devouring Your AI Computing Power and Energy!
AI containerized data centers operate under ultra-high rack density. Although equipped with liquid cooling and HVAC systems, being deployed outdoors turns their metal shells into "giant heat absorbers" under direct sunlight. This relentless external heat penetration not only disrupts the critical constant-temperature environment, but also forces the cooling systems to overwork—skyrocketing energy costs and becoming a silent killer of equipment lifespan.
tiisa® Superinsulation Paint
Applied directly to the container exterior, tiisa® Superinsulation Paint acts as a high performance thermal barrier that reduces solar heat gain before it enters the structure. By helping to maintain a more stable operating environment, it can reduce cooling loads, improve energy efficiency and lower operating costs.
Key Datapoints to Highlight
Solar Radiation Block Rate: 99%
Reduction in Cooling Energy Costs: 26%
Cooling Performance: -15°C ~ -25°C

Illustration of containers internal temperatures during summer

Scaled experiment illustrating the temperature changes between a model container with and without tiisa® applied to it
Case B | AI Server Containers: Preventing Fire Propagation and Cascade Failures
The Challenge
High density AI data centres often consist of multiple containers operating in close proximity. In the event of a fire, extreme heat can spread rapidly between adjacent modules, creating the risk of cascading failures and widespread infrastructure damage.
tiisa® Superinsulation Sheets
Integrated within container partitions and bulkheads, tiisa® Superinsulation Sheets provide high temperature thermal protection and fire resistance. By limiting heat transfer and isolating affected areas, they can help prevent the spread of fire between neighbouring modules and improve overall system resilience.
Key Datapoints to Highlight
Thermal Runaway Barriers: 60 mins at 1300°C
tiisa® Superinsulation Sheets: 1 mm thickness

Illustration image of TIISA® Superinsulation Sheet applied container leveraging exceptional fire-retardant and thermal insulation performance.
Case C | Lithium Ion Batteries: Ultra Thin Barriers for Thermal Runaway Mitigation
The Challenge
Lithium-ion battery packs face the constant threat of thermal runaway. When a single cell undergoes a thermal event, the resulting chain reaction releases intense heat that destabilizes adjacent cells, leading to severe cascading explosions.
Ultra Thin tiisa® Superinsulation Sheets
Engineered for cell to cell and module to module integration, tiisa® Superinsulation Sheets provide high thermal insulation performance within a minimal footprint. Their thin profile enables efficient packaging while helping to slow heat transfer and reduce the risk of thermal runaway propagation.
Key Datapoints to Highlight
Thermal Runaway Barriers: 30 Minutes at 1300°C

Illustration of Ultra-Thin tiisa® Superinsulation Sheets applied to Lithium Ion batteries preventing thermal runaway.


