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Amid increasingly stringent industrial safety standards, IOTA LSR 3663 A/B—a liquid foam silicone rubber that combines flame-retardant properties with eco-friendly characteristics—is becoming a focal point of market attention.
Using a room-temperature foaming process, this product forms medium-density foam that not only meets fire safety requirements but also excels in metrics such as density and elasticity, offering a new safe choice for the construction, transportation, and electronics sectors.
Safety Upgrade: Compliant Flame-Retardant Performance for Greater Assurance
The IOTA LSR 3663 series employs a specialized formulation, ensuring the finished product meets international safety standards for flame retardancy.
In high-risk fire scenarios, such as battery compartments in new energy vehicles or sealing strips in high-rise buildings, this material can effectively slow the spread of flames, buying critical time for evacuation and equipment protection.
Eco-Friendly Assurance: Low VOC Emissions for Cleaner Operations
During production, the material releases minimal volatile organic compounds (VOCs), safeguarding the health of operators.
Additionally, its curing agent reacts at room temperature when mixed with alkaline compounds, eliminating the need for high-temperature equipment. This reduces energy consumption and carbon emissions, aligning with global carbon neutrality goals.
Flexible Adaptability: Adjustable Density and Hardness for Customized Needs
The density, work time, and post-cure hardness of the IOTA LSR 3663 series can be tailored to meet specific client requirements.
For example, in aviation seat cushioning, a low-density formulation can be chosen to reduce weight, while in industrial equipment shock-absorbing pads, increased hardness can enhance support.
Currently, this material has been applied in projects such as shock-absorbing components for rail transit and heat dissipation pads for electronic devices. With its safety, eco-friendliness, and adaptability, it has become the "ideal material" for designers and engineers.